An update on tests used for intraoperative monitoring of cognition during awake craniotomy.


Journal

Acta neurochirurgica
ISSN: 0942-0940
Titre abrégé: Acta Neurochir (Wien)
Pays: Austria
ID NLM: 0151000

Informations de publication

Date de publication:
07 May 2024
Historique:
received: 28 12 2023
accepted: 02 04 2024
medline: 7 5 2024
pubmed: 7 5 2024
entrez: 7 5 2024
Statut: epublish

Résumé

Mapping higher-order cognitive functions during awake brain surgery is important for cognitive preservation which is related to postoperative quality of life. A systematic review from 2018 about neuropsychological tests used during awake craniotomy made clear that until 2017 language was most often monitored and that the other cognitive domains were underexposed (Ruis, J Clin Exp Neuropsychol 40(10):1081-1104, 218). The field of awake craniotomy and cognitive monitoring is however developing rapidly. The aim of the current review is therefore, to investigate whether there is a change in the field towards incorporation of new tests and more complete mapping of (higher-order) cognitive functions. We replicated the systematic search of the study from 2018 in PubMed and Embase from February 2017 to November 2023, yielding 5130 potentially relevant articles. We used the artificial machine learning tool ASReview for screening and included 272 papers that gave a detailed description of the neuropsychological tests used during awake craniotomy. Comparable to the previous study of 2018, the majority of studies (90.4%) reported tests for assessing language functions (Ruis, J Clin Exp Neuropsychol 40(10):1081-1104, 218). Nevertheless, an increasing number of studies now also describe tests for monitoring visuospatial functions, social cognition, and executive functions. Language remains the most extensively tested cognitive domain. However, a broader range of tests are now implemented during awake craniotomy and there are (new developed) tests which received more attention. The rapid development in the field is reflected in the included studies in this review. Nevertheless, for some cognitive domains (e.g., executive functions and memory), there is still a need for developing tests that can be used during awake surgery.

Identifiants

pubmed: 38713405
doi: 10.1007/s00701-024-06062-6
pii: 10.1007/s00701-024-06062-6
doi:

Types de publication

Journal Article Systematic Review Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

204

Informations de copyright

© 2024. The Author(s).

Références

(2018) Mapping visuospatial and self-motion perception functions in the left parietal lobe. United States
(2018) Awake craniotomy for a cavernous angioma in the Broca’s area. United States
(2018) Method for temporal keyhole lobectomies in resection of low- and high-grade gliomas. United States
(2018) nTMS guidance of awake surgery for highly eloquent gliomas. United States
(2018) Awake craniotomy for right inferior lobule glioma. United States
(2018) Awake resection of a left operculo-insular low-grade glioma guided by cortico-subcortical mapping. United States
(2020) Eliciting smiles and laughter during intraoperative electric stimulation of the cingulum: surgical scenario. United States
(2020) Temporoinsular glioma resection under awake mapping: 2-dimensional operative video. United States
(2020) Awake craniotomy and resection of a left frontal high-grade glioma: 2-dimensional operative video. United States
Aabedi AA, Ahn E, Kakaizada S et al (2019) Assessment of wakefulness during awake craniotomy to predict intraoperative language performance. J Neurosurg 132(6):1930–1937
pubmed: 31151102 pmcid: 6885096 doi: 10.3171/2019.2.JNS183486
Abdelhameed E, Abdelghany MS, Abdelkhalek H, Elatrozy HIS (2021) Awake surgery for lesions near eloquent brain under scalp block and clinical monitoring: experience of single center with limited resources. Egypt J Neurol Psychiatr Neurosurg. https://doi.org/10.1186/s41983-021-00333-0
Alanzi AK, Hakmi S, Adeel S, Ghazzal SY (2023) Anesthesia for awake craniotomy: a case report. J Surg Case Rep 2023(9):rjad521
pubmed: 37724066 pmcid: 10505513 doi: 10.1093/jscr/rjad521
Alarcón G, Bird Pedersen M, Juárez-Torrejón N, Martín-López D, Ughratdar I, Selway RP, Valentín A (2019) The single word auditory comprehension (SWAC) test: A simple method to identify receptive language areas with electrical stimulation. Epilepsy Behav 90:266–272
pubmed: 30442560 doi: 10.1016/j.yebeh.2018.10.022
Albuquerque LAF, Macêdo Filho LJM, Borges FS, Pessoa FC, Diógenes GS, Rocha CJV, Almeida JP, Joaquim AF (2023) Awake craniotomy for diffuse low grade gliomas in a resource limited setting: Lessons learned with a consecutive series of 51 Surgeries. World Neurosurg S1878-8750(23):00879–00873
Almairac F, Isan P, Onno M et al (2023) Identifying subcortical connectivity during brain tumor surgery: a multimodal study. Brain Struct Funct 228(3–4):815–830
pubmed: 36840759 doi: 10.1007/s00429-023-02623-0
Altieri R, Raimondo S, Tiddia C et al (2019) Glioma surgery: From preservation of motor skills to conservation of cognitive functions. J Clin Neurosci 70:55–60
pubmed: 31537460 doi: 10.1016/j.jocn.2019.08.091
Arumalla K, Deora H (2021) Bone wax as an intra-cavitary fiducial for intra-operative magnetic resonance imaging guided resections of eloquent cortex glioma. Neurol India 69(2):311–314
pubmed: 33904441 doi: 10.4103/0028-3886.314541
Arya R, Roth C, Leach JL et al (2019) Neuropsychological outcomes after resection of cortical sites with visual naming associated electrocorticographic high-gamma modulation. Epilepsy Res 151:17–23
pubmed: 30721879 doi: 10.1016/j.eplepsyres.2019.01.011
Assem M, Hart MG, Coelho P et al (2023) High gamma activity distinguishes frontal cognitive control regions from adjacent cortical networks. Cortex 159:286–298
pubmed: 36645968 pmcid: 9946792 doi: 10.1016/j.cortex.2022.12.007
Aubrun S, Poisson I, Barberis M, Draou C, Toure M, Madadaki C, Froelich S, Gayat E, Mandonnet E (2020) The challenge of overcoming the language barrier for brain tumor awake surgery in migrants: a feasibility study in five patient cases. Acta Neurochir (Wien) 162(2):389–395
pubmed: 31650333 doi: 10.1007/s00701-019-04101-1
Austermuehle A, Cocjin J, Reynolds R, Agrawal S, Sepeta L, Gaillard WD, Zaghloul KA, Inati S, Theodore WH (2017) Language functional MRI and direct cortical stimulation in epilepsy preoperative planning. Ann Neurol 81(4):526–537
pubmed: 28220524 pmcid: 5401636 doi: 10.1002/ana.24899
Avramescu-Murphy M, Hattingen E, Forster M-T, Oszvald A, Anti S, Frisch S, Russ MO, Jurcoane A (2017) Post-surgical language reorganization occurs in tumors of the dominant and non-dominant hemisphere. Clin Neuroradiol 27(3):299–309
pubmed: 26733421 doi: 10.1007/s00062-015-0496-6
Bährend I, Muench MR, Schneider H, Moshourab R, Dreyer FR, Vajkoczy P, Picht T, Faust K (2020) Incidence and linguistic quality of speech errors: a comparison of preoperative transcranial magnetic stimulation and intraoperative direct cortex stimulation. J Neurosurg 134(5):1409–1418
pubmed: 32470943 doi: 10.3171/2020.3.JNS193085
Barbagallo GMV, Morrone A, Certo F (2018) Intraoperative computed tomography and awake craniotomy: a useful and safe combination in brain surgery. World Neurosurg 119:e159–e166
pubmed: 30031198 doi: 10.1016/j.wneu.2018.07.078
Barberis M, Poisson I, Facque V, Letrange S, Prevost-Tarabon C, Houdart E, Froelich S, Levy R, Mandonnet E (2022) Group-level stability but individual variability of neurocognitive status after awake resections of right frontal IDH-mutated glioma. Sci Rep 12(1):6126
pubmed: 35413966 pmcid: 9005659 doi: 10.1038/s41598-022-08702-2
Baron-Cohen S, Wheelwright S, Hill J, Raste Y, Plumb I (2001) The “reading the mind in the eyes” test revised version: a study with normal adults, and adults with Asperger syndrome or high-functioning autism. Child Psychol Psychiatry 42(2):241–251
doi: 10.1111/1469-7610.00715
Barone F, Alberio N, Iacopino DG, Giammalva GR, D’arrigo C, Tagnese W, Graziano F, Cicero S, Maugeri R (2018) Brain mapping as helpful tool in brain glioma surgical treatment—toward the “perfect surgery”? Brain Sci. https://doi.org/10.3390/brainsci8110192
Bass DI, Shurtleff H, Warner M et al (2020) Awake mapping of the auditory cortex during tumor resection in an aspiring musical performer: A case report. Pediatr Neurosurg 55(6):351–358
pubmed: 33260181 doi: 10.1159/000509328
Baurès R, Fourteau M, Thébault S, Gazard C, Pasquio L, Meneghini G, Perrin J, Rosito M, Durand J-B, Roux F-E (2021) Time-to-contact perception in the brain. J Neurosci Res 99(2):455–466
pubmed: 33070400 doi: 10.1002/jnr.24740
Baurès R, Oberfeld D, Tournier I, Hecht H, Cavallo V (2014) Arrival-time judgments on multiple-lane streets: The failure to ignore irrelevant traffic. Accid Anal Prev 65:72–84
pubmed: 24445138 doi: 10.1016/j.aap.2013.12.013
Becker D, Neher P, Jungk C et al (2022) Comparison of diffusion signal models for fiber tractography in eloquent glioma surgery-determination of accuracy under awake craniotomy conditions. World Neurosurg 158:e429–e440
pubmed: 34767992 doi: 10.1016/j.wneu.2021.11.006
Benke T, Kuen E, Schwarz M, Walser G (2013) Proper name retrieval in temporal lobe epilepsy: Naming of famous faces and landmarks. Epilepsy Behav 27(2):371–377
pubmed: 23542541 doi: 10.1016/j.yebeh.2013.02.013
Bennett SJ, Baures R, Hecht H, Benguigui N (2010) Eye movements influence estimation of time-to-contact in prediction motion. Exp Brain Res 206(4):399–407
pubmed: 20862463 doi: 10.1007/s00221-010-2416-y
Bennett C, González M, Tapia G, Riveros R, Torres F, Loyola N, Veloz A, Chabert S (2022) Cortical mapping in glioma surgery: correlation of fMRI and direct electrical stimulation with Human Connectome Project parcellations. Neurosurg Focus 53(6):E2
pubmed: 36455268 doi: 10.3171/2022.9.FOCUS2283
Benyaich Z, Hajhouji F, Laghmari M, Ghannane H, Aniba K, Lmejjati M, Ait Benali S (2020) Awake craniotomy with functional mapping for glioma resection in a limited-resource-setting: preliminary experience from a lower-middle income country. World Neurosurg 139:200–207
pubmed: 32311556 doi: 10.1016/j.wneu.2020.04.039
Bermúdez G, Quiñones I, Carrasco A, Gil-Robles S, Amoruso L, Mandonnet E, Carreiras M, Catalán G, Pomposo I (2023) A novel cognitive neurosurgery approach for supramaximal resection of non-dominant precuneal gliomas: a case report. Acta Neurochir (Wien) 165(10):2747–2754
pubmed: 37597007 doi: 10.1007/s00701-023-05755-8
Berro DH, Herbet G, Duffau H (2021) New insights into the anatomo-functional architecture of the right sagittal stratum and its surrounding pathways: an axonal electrostimulation mapping study. Brain Struct Funct 226(2):425–441
pubmed: 33389045 doi: 10.1007/s00429-020-02186-4
Bijanki KR, Manns JR, Inman CS et al (2019) Cingulum stimulation enhances positive affect and anxiolysis to facilitate awake craniotomy. J Clin Invest 129(3):1152–1166
pubmed: 30589643 pmcid: 6391096 doi: 10.1172/JCI120110
Bonifazi S, Passamonti C, Vecchioni S, Trignani R, Martorano PP, Durazzi V, Lattanzi S, Mancini F, Ricciuti RA (2020) Cognitive and linguistic outcomes after awake craniotomy in patients with high-grade gliomas. Clin Neurol Neurosurg 198:106089
pubmed: 32738586 doi: 10.1016/j.clineuro.2020.106089
Boyer A, Stengel C, Bonnetblanc F, Dali M, Duffau H, Rheault F, Descoteaux M, Guiraud D, Valero-Cabre A, Mandonnet E (2021) Patterns of axono-cortical evoked potentials: an electrophysiological signature unique to each white matter functional site? Acta Neurochir (Wien) 163(11):3121–3130
pubmed: 33433683 doi: 10.1007/s00701-020-04656-4
Brosnan H, McLean M, Abramowicz AE (2022) anesthetic selection for an awake craniotomy for a glioma with Wernicke’s aphasia: a case report. Cureus 14(3):e23181
pubmed: 35444894 pmcid: 9010008
Brown DA, Hanalioglu S, Chaichana K, Duffau H (2020) Transcorticosubcortical approach for left posterior mediobasal temporal region gliomas: a case series and anatomic review of relevant white matter tracts. World Neurosurg 139:e737–e747
pubmed: 32360919 doi: 10.1016/j.wneu.2020.04.147
Buklina SB, Zhukov VY, Goryainov SA, Batalov AI, Afandiev RM, Maryashev SA, Vologdina YO, Bykanov AE (2021) Conduction aphasia in patients with glioma in the left hemisphere. Zh Vopr Neirokhir Im N N Burdenko 85(4):29–40
pubmed: 34463448 doi: 10.17116/neiro20218504129
Burks JD, Bonney PA, Conner AK, Glenn CA, Briggs RG, Battiste JD, McCoy T, O’Donoghue DL, Wu DH, Sughrue ME (2017) A method for safely resecting anterior butterfly gliomas: the surgical anatomy of the default mode network and the relevance of its preservation. J Neurosurg 126(6):1795–1811
pubmed: 27636183 doi: 10.3171/2016.5.JNS153006
Caffo M, Cardali SM, Raffa G, Caruso G, Barresi V, Ricciardo G, Gorgoglione N, Granata F, Germanò A (2020) The value of preoperative planning based on navigated transcranical magnetic stimulation for surgical treatment of brain metastases located in the perisylvian area. World Neurosurg 134:e442–e452
pubmed: 31655240 doi: 10.1016/j.wneu.2019.10.090
Chan H-M, Loh WN-H, Yeo TT, Teo K (2019) Awake craniotomy and excision of a diffuse low-grade glioma in a multilingual patient: Neuropsychology and language. World Neurosurg 128:91–97
pubmed: 31059854 doi: 10.1016/j.wneu.2019.04.181
Chang W-H, Pei Y-C, Wei K-C, Chao Y-P, Chen M-H, Yeh H-A, Jaw F-S, Chen P-Y (2018) Intraoperative linguistic performance during awake brain surgery predicts postoperative linguistic deficits. J Neurooncol 139(1):215–223
pubmed: 29637508 pmcid: 6061224 doi: 10.1007/s11060-018-2863-z
Chen P-A, Chen Y-C, Wei K-C, Chen K-T (2020) Awake craniotomy for a left pan-hippocampal diffuse low-grade glioma in a deaf and mute patient using sign language. World Neurosurg 134:629–634.e1
pubmed: 31790835 doi: 10.1016/j.wneu.2019.11.129
Chen X, Sun J, Jiang W, Zhu Z, Chen S, Tan G, Wang Z (2022) Awake craniotomy for removal of gliomas in eloquent areas: An analysis of 21 cases. Brain Res Bull 181:30–35
pubmed: 34990734 doi: 10.1016/j.brainresbull.2021.12.017
Chernoff BL, Sims MH, Smith SO, Pilcher WH, Mahon BZ (2019) Direct electrical stimulation of the left frontal aslant tract disrupts sentence planning without affecting articulation. Cogn Neuropsychol 36(3–4):178–192
pubmed: 31210568 pmcid: 6744286 doi: 10.1080/02643294.2019.1619544
Chernoff BL, Teghipco A, Garcea FE et al (2020) Reorganized language network connectivity after left arcuate fasciculus resection: A case study. Cortex 123:173–184
pubmed: 31812105 doi: 10.1016/j.cortex.2019.07.022
Coello AF, Moritz-Gasser S, Martino J, Martinoni M, Matsuda R, Duffau H (2013) Selection of intraoperative tasks for awake mapping based on relationships between tumor location and functional networks: A review. JNS 119(6):1380–1394
doi: 10.3171/2013.6.JNS122470
Conti Nibali M, Leonetti A, Puglisi G et al (2020) Preserving visual functions during gliomas resection: feasibility and efficacy of a novel intraoperative task for awake brain surgery. Front Oncol 10:1485
pubmed: 32983985 pmcid: 7492569 doi: 10.3389/fonc.2020.01485
Corrivetti F, de Schotten MT, Poisson I, Froelich S, Descoteaux M, Rheault F, Mandonnet E (2019) Dissociating motor-speech from lexico-semantic systems in the left frontal lobe: insight from a series of 17 awake intraoperative mappings in glioma patients. Brain Struct Funct 224(3):1151–1165
pubmed: 30637492 doi: 10.1007/s00429-019-01827-7
Cuisenier P, Testud B, Minotti L et al (2020) Relationship between direct cortical stimulation and induced high-frequency activity for language mapping during SEEG recording. J Neurosurg 134(3):1251–1261
pubmed: 32330883
De Witt Hamer PC, Robles SG, Zwinderman AH, Duffau H, Berger MS (2012) Impact of intraoperative stimulation brain mapping on glioma surgery outcome: a meta-analysis. JCO 30(20):2559–2565
doi: 10.1200/JCO.2011.38.4818
Delion M, Klinger E, Bernard F, Aubin G, Minassian AT, Menei P (2020) immersing patients in a virtual reality environment for brain mapping during awake surgery: safety study. World Neurosurg 134:e937–e943
pubmed: 31734424 doi: 10.1016/j.wneu.2019.11.047
Domingo RA, Vivas-Buitrago T, De Biase G, Middlebrooks EH, Bechtle PS, Sabsevitz DS, Quiñones-Hinojosa A, Tatum WO (2021) Intraoperative seizure detection during active resection of glioblastoma through a novel hollow circular electrocorticography array. Oper Neurosurg (Hagerstown) 21(2):E147–E152
pubmed: 33885817 doi: 10.1093/ons/opab110
Domingo RA, Vivas-Buitrago T, Sabsevitz DS, Middlebrooks EH, Quinones-Hinojosa A (2020) Awake craniotomy with cortical and subcortical speech mapping for supramarginal cavernoma resection. World Neurosurg 141:260
pubmed: 32585378 doi: 10.1016/j.wneu.2020.06.094
Donders-Kamphuis M, Vincent A, Schouten J, Smits M, Docter-Kerkhof C, Dirven C, Kloet A, Nandoe Tewarie R, Satoer D (2022) Feasibility of awake brain surgery in glioblastoma patients with severe aphasia: Five case illustrations. Aphasiology. https://doi.org/10.1080/02687038.2022.2137773
D’Onofrio G, Icolaro N, Fazzari E et al (2023) Real-time neuropsychological testing (RTNT) and music listening during glioblastoma excision in awake surgery: a case report. J Clin Med. https://doi.org/10.3390/jcm12186086
Drosos E, Maye H, Youshani AS, Ehsan S, Burnand C, D’Urso PI (2022) Awake brain surgery for autistic patients: Is it possible? Surg Neurol Int 13:543
pubmed: 36447890 pmcid: 9699865 doi: 10.25259/SNI_719_2022
Duffau H (2009) Surgery of low-grade gliomas: towards a ‘functional neurooncology’. Curr Opin Oncol 21(6):543–549
pubmed: 19606033 doi: 10.1097/CCO.0b013e3283305996
Duffau H (2021) New philosophy, clinical pearls, and methods for intraoperative cognition mapping and monitoring “à la carte” in brain tumor patients. Neurosurgery 88(5):919–930
pubmed: 33463689 doi: 10.1093/neuros/nyaa363
Duffau H (2021) Awake surgery for left posterior insular low-grade glioma through the parietorolandic operculum: the need to preserve the functional connectivity. A case series. Front Surg 8:824003
pubmed: 35096960 doi: 10.3389/fsurg.2021.824003
Duffau H (2022) Awake mapping with transopercular approach in right insular-centered low-grade gliomas improves neurological outcomes and return to work. Neurosurgery 91(1):182–190
pubmed: 35445665 doi: 10.1227/neu.0000000000001966
Dziedzic TA, Bala A, Podgórska A, Piwowarska J, Marchel A (2021) Awake intraoperative mapping to identify cortical regions related to music performance: Technical note. J Clin Neurosci 83:64–67
pubmed: 33317886 doi: 10.1016/j.jocn.2020.11.027
Erez Y, Assem M, Coelho P et al (2021) Intraoperative mapping of executive function using electrocorticography for patients with low-grade gliomas. Acta Neurochir (Wien) 163(5):1299–1309
pubmed: 33222010 doi: 10.1007/s00701-020-04646-6
Fang S, Liang Y, Li L, Wang L, Fan X, Wang Y, Jiang T (2021) Tumor location-based classification of surgery-related language impairments in patients with glioma. J Neurooncol 155(2):143–152
pubmed: 34599481 doi: 10.1007/s11060-021-03858-9
Fang S, Liang J, Qian T, Wang Y, Liu X, Fan X, Li S, Wang Y, Jiang T (2017) anatomic location of tumor predicts the accuracy of motor function localization in diffuse lower-grade gliomas involving the hand knob area. AJNR Am J Neuroradiol 38(10):1990–1997
pubmed: 28838912 pmcid: 7963633 doi: 10.3174/ajnr.A5342
Fernández L, Velásquez C, García Porrero JA, de Lucas EM, Martino J (2020) Heschl’s gyrus fiber intersection area: a new insight on the connectivity of the auditory-language hub. Neurosurg Focus 48(2):E7
pubmed: 32006945 doi: 10.3171/2019.11.FOCUS19778
Ferpozzi V, Fornia L, Montagna M et al (2018) Broca’s area as a pre-articulatory phonetic encoder: gating the motor program. Front Hum Neurosci 12:64
pubmed: 29520225 pmcid: 5826965 doi: 10.3389/fnhum.2018.00064
Fornia L, Ferpozzi V, Montagna M et al (2018) Functional characterization of the left ventrolateral premotor cortex in humans: a direct electrophysiological approach. Cereb Cortex 28(1):167–183
pubmed: 27920095 doi: 10.1093/cercor/bhw365
Fornia L, Puglisi G, Leonetti A, Bello L, Berti A, Cerri G, Garbarini F (2020) Direct electrical stimulation of the premotor cortex shuts down awareness of voluntary actions. Nat Commun 11(1):705
pubmed: 32019940 pmcid: 7000749 doi: 10.1038/s41467-020-14517-4
Fornia L, Rossi M, Rabuffetti M et al (2020) direct electrical stimulation of premotor areas: different effects on hand muscle activity during object manipulation. Cereb Cortex 30(1):391–405
pubmed: 31504261 doi: 10.1093/cercor/bhz139
Fornia L, Rossi M, Rabuffetti M et al (2022) Motor impairment evoked by direct electrical stimulation of human parietal cortex during object manipulation. Neuroimage 248:118839
pubmed: 34963652 doi: 10.1016/j.neuroimage.2021.118839
Forseth KJ, Kadipasaoglu CM, Conner CR, Hickok G, Knight RT, Tandon N (2018) A lexical semantic hub for heteromodal naming in middle fusiform gyrus. Brain 141(7):2112–2126
pubmed: 29860298 pmcid: 6365955 doi: 10.1093/brain/awy120
Frati A, Pesce A, Palmieri M, Iasanzaniro M, Familiari P, Angelini A, Salvati M, Rocco M, Raco A (2019) Hypnosis-aided awake surgery for the management of intrinsic brain tumors versus standard awake-asleep-awake protocol: a preliminary, promising experience. World Neurosurg 121:e882–e891
pubmed: 30315969 doi: 10.1016/j.wneu.2018.10.004
Freigang S, Fresnoza S, Mahdy Ali K, Zaar K, Jehna M, Reishofer G, Rammel K, Studencnik F, Ischebeck A, von Campe G (2020) Impact of priming on effectiveness of TMS in detecting language-eloquent brain areas in tumor patients. J Neurol Surg A Cent Eur Neurosurg 81(2):111–129
pubmed: 31935783 doi: 10.1055/s-0039-1698382
Fujii K, Hirano S, Kurozumi K, Date I (2023) A Case of High-Grade Glioma in an Eloquent Area Treated with Awake Craniotomy in an 85-year-old Patient. Acta Med Okayama 77(3):335–340
pubmed: 37357636
Gasa-Roqué A, Rofes A, Simó M, Juncadella M, Rico Pons I, Camins A, Gabarrós A, Rodríguez-Fornells A, Sierpowska J (2023) Understanding language and cognition after brain surgery - Tumour grade, fine-grained assessment tools and, most of all, individualized approach. J Neuropsychol
Gasa-Roqué A, Rofes A, Simó M, Juncadella M, Rico Pons I, Camins A, Gabarrós A, Rodríguez-Fornells A, Sierpowska J (2023) Understanding language and cognition after brain surgery – Tumour grade, fine-grained assessment tools and, most of all, individualized approach. J Neuropsychol jnp.12343
Gerritsen JKW, Klimek M, Dirven CMF, Hoop EO, Wagemakers M, Rutten GJM, Kloet A, Hallaert GG, Vincent AJPE (2020) The SAFE-trial: Safe surgery for glioblastoma multiforme: Awake craniotomy versus surgery under general anesthesia. Study protocol for a multicenter prospective randomized controlled trial. Contemp Clin Trials 88:105876
pubmed: 31676314 doi: 10.1016/j.cct.2019.105876
Gerritsen JKW, Zwarthoed RH, Kilgallon JL et al (2022) Effect of awake craniotomy in glioblastoma in eloquent areas (GLIOMAP): a propensity score-matched analysis of an international, multicentre, cohort study. Lancet Oncol 23(6):802–817
pubmed: 35569489 doi: 10.1016/S1470-2045(22)00213-3
Giamouriadis A, Lavrador JP, Bhangoo R, Ashkan K, Vergani F (2020) How many patients require brain mapping in an adult neuro-oncology service? Neurosurg Rev 43(2):729–738
pubmed: 31104183 doi: 10.1007/s10143-019-01112-5
Gobbo M, De Pellegrin S, Bonaudo C, Semenza C, Della Puppa A, Salillas E (2021) Two dissociable semantic mechanisms predict naming errors and their responsive brain sites in awake surgery. DO80 revisited. Neuropsychologia 151:107727
pubmed: 33338472 doi: 10.1016/j.neuropsychologia.2020.107727
Gomez-Andres A, Cunillera T, Rico I, Naval-Baudin P, Camins A, Fernandez-Coello A, Gabarrós A, Rodriguez-Fornells A (2022) The role of the anterior insular cortex in self-monitoring: A novel study protocol with electrical stimulation mapping and functional magnetic resonance imaging. Cortex 157:231–244
pubmed: 36347086 doi: 10.1016/j.cortex.2022.09.008
Gonen T, Gazit T, Korn A, Kirschner A, Perry D, Hendler T, Ram Z (2017) Intra-operative multi-site stimulation: Expanding methodology for cortical brain mapping of language functions. PLoS One 12(7):e0180740
pubmed: 28700619 pmcid: 5507257 doi: 10.1371/journal.pone.0180740
Goryaynov SA, Buklina SB, Khapov IV et al (2022) 5-ALA-guided tumor resection during awake speech mapping in gliomas located in eloquent speech areas: Single-center experience. Front Oncol 12:940951
pubmed: 36212421 pmcid: 9538677 doi: 10.3389/fonc.2022.940951
Guarracino I, Ius T, Pauletto G, Maieron M, D’Agostini S, Skrap M, Tomasino B (2022) Incidental low grade glioma in young female: An indolent lesion? A case report and a literature review. Clin Neurol Neurosurg 223:107520
pubmed: 36410126 doi: 10.1016/j.clineuro.2022.107520
Hadidchi S, Surento W, Lerner A, Liu C-SJ, Gibbs WN, Kim PE, Shiroishi MS (2019) Headache and brain tumor. Neuroimaging Clin N Am 29(2):291–300
pubmed: 30926118 doi: 10.1016/j.nic.2019.01.008
Håkansson Eklund J, Holmström IK, Kumlin T, Kaminsky E, Skoglund K, Höglander J, Sundler AJ, Condén E, Summer Meranius M (2019) “Same same or different?” A review of reviews of person-centered and patient-centered care. Pat Educ Couns 102(1):3–11
doi: 10.1016/j.pec.2018.08.029
Hamberger MJ, Schevon CA, Seidel WT, McKhann GM 2nd, Morrison C (2019) Cortical naming sites and increasing age in adults with refractory epilepsy: More might be less. Epilepsia 60(8):1619–1626
pubmed: 31251399 pmcid: 6687550 doi: 10.1111/epi.16097
Hameed NUF, Zhao Z, Zhang J et al (2021) A novel intraoperative brain mapping integrated task-presentation platform. Oper Neurosurg (Hagerstown) 20(5):477–483
pubmed: 33548926 doi: 10.1093/ons/opaa476
Hameed NUF, Zhu Y, Qiu T, Wu J (2018) Awake brain mapping in dominant side insular glioma surgery: 2-dimensional operative video. Oper Neurosurg (Hagerstown) 15(4):477
pubmed: 29471530 doi: 10.1093/ons/opx299
Hamer RP, Jain S, Teo C, Loh WN-H, Chan H-M, Yeo TT, Teo K (2020) Optimizing the onco-functional balance in supratentorial brain tumour surgery: A single institution’s initial experience with intraoperative cortico-subcortical mapping and monitoring in Singapore. J Clin Neurosci 79:224–230
pubmed: 33070901 doi: 10.1016/j.jocn.2020.07.027
Hendi K, Rahmani M, Larijani A, Ajam Zibadi H, Raminfard S, Shariat Moharari R, Gerganov V, Alimohamadi M (2022) Changes in cognitive functioning after surgical resection of language-related, eloquent-area, high-grade gliomas under awake craniotomy. Cogn Behav Neurol 35(2):130–139
pubmed: 35486526 doi: 10.1097/WNN.0000000000000307
Herbet G (2021) Should complex cognitive functions be mapped with direct electrostimulation in wide-awake surgery? A network perspective. Front Neurol 12:635439
pubmed: 33912124 pmcid: 8072013 doi: 10.3389/fneur.2021.635439
Herbet G, Moritz-Gasser S, Duffau H (2018) Electrical stimulation of the dorsolateral prefrontal cortex impairs semantic cognition. Neurology 90(12):e1077–e1084
pubmed: 29444964 doi: 10.1212/WNL.0000000000005174
Herbet G, Moritz-Gasser S, Lemaitre A-L, Almairac F, Duffau H (2019) Functional compensation of the left inferior longitudinal fasciculus for picture naming. Cogn Neuropsychol 36(3–4):140–157
pubmed: 29879863 doi: 10.1080/02643294.2018.1477749
Herbet G, Rigaux-Viodé O, Moritz-Gasser S (2017) Peri- and intraoperative cognitive and language assessment for surgical resection in brain eloquent structures. Neurochirurgie 63(3):135–141
pubmed: 28506481 doi: 10.1016/j.neuchi.2016.10.011
Hosoya T, Yonezawa H, Matsuoka A et al (2022) Combination of asleep and awake craniotomy as a novel strategy for resection in patients with butterfly glioblastoma: Two case reports. Surg Neurol Int 13:492
pubmed: 36447874 pmcid: 9699851 doi: 10.25259/SNI_543_2022
Ichinose T, Kinoshita M, Nakajima R, Tanaka S, Nakada M (2023) Recovery of visual field after awake stimulation mapping of the optic pathway in glioma patients. Brain Topogr 36(1):87–98
pubmed: 36327063 doi: 10.1007/s10548-022-00922-z
van Ierschot F, Bastiaanse R, Miceli G (2018) Evaluating spelling in glioma patients undergoing awake surgery: a systematic review. Neuropsychol Rev 28(4):470–495
pubmed: 30578451 doi: 10.1007/s11065-018-9391-7
Iijima K, Motomura K, Chalise L, Hirano M, Natsume A, Wakabayashi T (2017) Efficacy of the transtemporal approach with awake brain mapping to reach the dominant posteromedial temporal lesions. Acta Neurochir (Wien) 159(1):177–184
pubmed: 27888341 doi: 10.1007/s00701-016-3035-6
Ille S, Engel L, Albers L, Schroeder A, Kelm A, Meyer B, Krieg SM (2019) Functional reorganization of cortical language function in glioma patients—a preliminary study. Front Oncol 9:446
pubmed: 31231608 pmcid: 6558431 doi: 10.3389/fonc.2019.00446
Ille S, Schroeder A, Albers L, Kelm A, Droese D, Meyer B, Krieg SM (2021) Non-invasive mapping for effective preoperative guidance to approach highly language-eloquent gliomas-a large scale comparative cohort study using a new classification for language eloquence. Cancers (Basel). https://doi.org/10.3390/cancers13020207
Ishikawa T, Muragaki Y, Maruyama T, Abe K, Kawamata T (2017) Roles of the Wada test and functional magnetic resonance imaging in identifying the language-dominant hemisphere among patients with gliomas located near speech areas. Neurol Med Chir (Tokyo) 57(1):28–34
pubmed: 27980284 doi: 10.2176/nmc.oa.2016-0042
Ius T, Mazzucchi E, Tomasino B, Pauletto G, Sabatino G, Della Pepa GM, La Rocca G, Battistella C, Olivi A, Skrap M (2021) Multimodal integrated approaches in low grade glioma surgery. Sci Rep 11(1):9964
pubmed: 33976246 pmcid: 8113473 doi: 10.1038/s41598-021-87924-2
Izutsu N, Kinoshita M, Yanagisawa T, Nakanishi K, Sakai M, Kishima H (2017) Preservation of motor function after resection of lower-grade glioma at the precentral gyrus and prediction by presurgical functional magnetic resonance imaging and magnetoencephalography. World Neurosurg 107:1045.e5–1045.e8
pubmed: 28826712 doi: 10.1016/j.wneu.2017.07.152
Jain S, Chan H-M, Yeo TT, Teo K (2019) Language mapping of Hindi and English in a bilingual patient during resection of a right frontal glioma. World Neurosurg 125:106–110
pubmed: 30735861 doi: 10.1016/j.wneu.2019.01.153
Jensdottir M, Beniaminov S, Jakola AS, Persson O, Norrelgen F, Hylin S, Fletcher-Sandersjöö A, Bartek JJ (2022) Standardized reporting of adverse events and functional status from the first 5 years of awake surgery for gliomas: a population-based single-institution consecutive series. Acta Neurochir (Wien) 164(8):1995–2008
pubmed: 35420374 doi: 10.1007/s00701-022-05191-0
Jung J, Lavrador J-P, Patel S, Giamouriadis A, Lam J, Bhangoo R, Ashkan K, Vergani F (2019) First United Kingdom experience of navigated transcranial magnetic stimulation in preoperative mapping of brain tumors. World Neurosurg 122:e1578–e1587
pubmed: 30476661 doi: 10.1016/j.wneu.2018.11.114
Kanaya K, Mitsuhashi T, Kiuchi T, Kobayashi S (2021) the efficacy of intraoperative passive language mapping for glioma surgery: a case report. Front Neurol 12:652401
pubmed: 34408717 pmcid: 8364957 doi: 10.3389/fneur.2021.652401
Koay JM, Blackmon KE, Middlebrooks EH, Quinones-Hinojosa A, Chaichana KL, Feyissa AM, Grewal SS, Sabsevitz DS (2022) Examining the role of the uncinate fasciculus in proper noun naming: awake brain tumor resections and stereo EEG targeted electrical stimulation multiple case study. Neurocase 28(5):439–447
pubmed: 36548912 doi: 10.1080/13554794.2022.2160261
Koike T, Tanaka S, Kin T et al (2022) accurate preoperative identification of motor speech area as termination of arcuate fasciculus depicted by Q-ball imaging tractography. World Neurosurg 164:e764–e771
pubmed: 35595046 doi: 10.1016/j.wneu.2022.05.041
Korkar GH, Isnard J, Montavont A, Catenoix H, Rheims S, Guénot M (2021) Awake craniotomy for epilepsy surgery on eloquent speech areas: a single-centre experience. Epileptic Disord 23(2):347–356
pubmed: 33926856 doi: 10.1684/epd.2021.1275
Krainik A, Lehericy S, Duffau H et al (2001) Role of the supplementary motor area in motor deficit following medial frontal lobe surgery. Neurology 57(5):871–878
pubmed: 11552019 doi: 10.1212/WNL.57.5.871
Lau R, Malhotra AK, McAndrews MP, Kongkham P (2023) Subcortical language localization using sign language and awake craniotomy for dominant posterior temporal glioma resection in a hearing-impaired patient. Acta Neurochir (Wien) 165(6):1665–1669
pubmed: 37079109 doi: 10.1007/s00701-023-05586-7
Le Lann F, Cristante J, De Schlichting E, Quehan R, Réhault E, Lotterie J-A, Roux F-E (2022) Variability of intraoperative electrostimulation parameters in conscious individuals: language fasciculi. World Neurosurg 164:e194–e202
pubmed: 35472645 doi: 10.1016/j.wneu.2022.04.066
Leal RTM, Barcellos BM, Landeiro JA (2018) Technical aspects of awake craniotomy with mapping for brain tumors in a limited resource setting. World Neurosurg 113:67–72
pubmed: 29452315 doi: 10.1016/j.wneu.2018.02.013
Lechowicz-Głogowska B, Uryga A, Weiser A, Salomon-Tuchowska B, Burzyńska M, Fortuna W, Kasprowicz M, Tabakow P (2022) Awake craniotomy with dexmedetomidine during resection of brain tumours located in eloquent regions. Anaesthesiol Intensive Ther 54(5):347–356
pubmed: 36734444 pmcid: 10156559 doi: 10.5114/ait.2022.123151
Lee AT, Faltermeier C, Morshed RA et al (2020) The impact of high functional connectivity network hub resection on language task performance in adult low- and high-grade glioma. J Neurosurg 134(3):1102–1112
pubmed: 32244221 pmcid: 8011942
Lee DK, Fedorenko E, Simon MV, Curry WT, Nahed BV, Cahill DP, Williams ZM (2018, 1877) Neural encoding and production of functional morphemes in the posterior temporal lobe. Nat Commun 9(1)
Lemée J-M, Berro DH, Bernard F, Chinier E, Leiber L-M, Menei P, Ter Minassian A (2019) Resting-state functional magnetic resonance imaging versus task-based activity for language mapping and correlation with perioperative cortical mapping. Brain Behav 9(10):e01362
pubmed: 31568681 pmcid: 6790308 doi: 10.1002/brb3.1362
Leonard MK, Lucas B, Blau S, Corina DP, Chang EF (2020) Cortical encoding of manual articulatory and linguistic features in american sign language. Curr Biol 30(22):4342–4351.e3
pubmed: 32888480 pmcid: 7674262 doi: 10.1016/j.cub.2020.08.048
Leote J, Loução R, Viegas C, Lauterbach M, Perez-Hick A, Monteiro J, Nunes RG, Ferreira HA (2020) Impact of navigated task-specific fMRI on direct cortical stimulation. J Neurol Surg A Cent Eur Neurosurg 81(6):555–564
pubmed: 32610351 doi: 10.1055/s-0040-1712496
Li Y-C, Chiu H-Y, Lin Y-J, Chen K-T, Hsu P-W, Huang Y-C, Chen P-Y, Wei K-C (2021) The merits of awake craniotomy for glioblastoma in the left hemispheric eloquent area: one institution experience. Clin Neurol Neurosurg 200:106343
pubmed: 33158628 doi: 10.1016/j.clineuro.2020.106343
Li Q, Dong JW, Del Ferraro G, Petrovich Brennan N, Peck KK, Tabar V, Makse HA, Holodny AI (2019) functional translocation of broca’s area in a low-grade left frontal glioma: graph theory reveals the novel. Adaptive Network Connectivity. Front Neurol 10:702
pubmed: 31333562
Li S, Mu Y, Rao Y et al (2023) Preoperative individual-target transcranial magnetic stimulation demonstrates an effect comparable to intraoperative direct electrical stimulation in language-eloquent glioma mapping and improves postsurgical outcome: A retrospective fiber-tracking and electromagnetic simulation study. Front Oncol 13:1089787
pubmed: 36816968 pmcid: 9936080 doi: 10.3389/fonc.2023.1089787
Lima GLO, Dezamis E, Corns R, Rigaux-Viode O, Moritz-Gasser S, Roux A, Duffau H, Pallud J (2017) Surgical resection of incidental diffuse gliomas involving eloquent brain areas. Rationale, functional, epileptological and oncological outcomes. Neurochirurgie 63(3):250–258
pubmed: 28161011 doi: 10.1016/j.neuchi.2016.08.007
Liouta E, Komaitis S, Koutsarnakis C, Katsaros V, Papadopoulos K, Drosos E, Kalyvas A, George S (2021) Dissociation between visuospatial neglect assessment tasks and its neuroanatomical substrates: a case report. Neurocase 27(5):419–424
pubmed: 35038975 doi: 10.1080/13554794.2021.1984538
Liu X, Kinoshita M, Shinohara H, Hori O, Ozaki N, Nakada M (2020) Does the superior fronto-occipital fascicle exist in the human brain? Fiber dissection and brain functional mapping in 90 patients with gliomas. Neuroimage Clin 25:102192
pubmed: 32014826 pmcid: 6997620 doi: 10.1016/j.nicl.2020.102192
Louppe E, Moritz-Gasser S, Duffau H (2021) Language recovery through a two-stage awake surgery in an aphasic patient with a voluminous left fronto-temporo-insular glioma: case report. Acta Neurochir (Wien) 163(11):3115–3119
pubmed: 34275021 doi: 10.1007/s00701-021-04932-x
de Macêdo Filho LJM, Aguiar GCM, Pessoa FC, Diógenes GS, Borges FS, Joaquim AF, de Albuquerque LAF (2020) Intraparenchymal epidermoid cyst close to broca area-awake craniotomy and gross total resection. World Neurosurg 141:367–372
pubmed: 32593769 doi: 10.1016/j.wneu.2020.06.135
Mackel CE, Orrego-Gonzalez EE, Vega RA (2023) Awake craniotomy and intraoperative musical performance for brain tumor surgery: case report and literature review. Brain Tumor Res Treat 11(2):145–152
pubmed: 37151157 pmcid: 10172011 doi: 10.14791/btrt.2023.0002
Maesawa S, Nakatsubo D, Fujii M, Iijima K, Kato S, Ishizaki T, Shibata M, Wakabayashi T (2018) Application of awake surgery for epilepsy in clinical practice. Neurol Med Chir (Tokyo) 58(10):442–452
pubmed: 30249918 doi: 10.2176/nmc.oa.2018-0122
Magill ST, Han SJ, Li J, Berger MS (2018) Resection of primary motor cortex tumors: feasibility and surgical outcomes. J Neurosurg 129(4):961–972
pubmed: 29219753 doi: 10.3171/2017.5.JNS163045
Maknojia S, Tam F, Das S, Schweizer T, Graham SJ (2019) Visualization of brain shift corrected functional magnetic resonance imaging data for intraoperative brain mapping. World Neurosurg X 2:100021
pubmed: 31218295 pmcid: 6580887 doi: 10.1016/j.wnsx.2019.100021
Mandonnet E (2019) transopercular resection of IDH-mutated insular glioma: a critical appraisal of an initial experience. World Neurosurg 132:e563–e576
pubmed: 31442644 doi: 10.1016/j.wneu.2019.08.071
Mandonnet E (2021) Should complex cognitive functions be mapped with direct electrostimulation in wide-awake surgery? A commentary. Front Neurol 12:721038
pubmed: 34512531 pmcid: 8426436 doi: 10.3389/fneur.2021.721038
Mandonnet E, Cerliani L, Siuda-Krzywicka K, Poisson I, Zhi N, Volle E, de Schotten MT (2017) A network-level approach of cognitive flexibility impairment after surgery of a right temporo-parietal glioma. Neurochirurgie 63(4):308–313
pubmed: 28882599 doi: 10.1016/j.neuchi.2017.03.003
Mandonnet E, Herbet G (2021) Intraoperative mapping of cognitive networks: which tasks for which locations. Springer Cham. https://doi.org/10.1007/978-3-030-75071-8
doi: 10.1007/978-3-030-75071-8
Mandonnet E, Herbet G, Duffau H (2020) Letter: introducing new tasks for intraoperative mapping in awake glioma surgery: clearing the line between patient care and scientific research. Neurosurgery 86(2):E256–E257
pubmed: 31853547 doi: 10.1093/neuros/nyz447
Mandonnet E, Herbet G, Moritz-Gasser S, Poisson I, Rheault F, Duffau H (2019) Electrically induced verbal perseveration: A striatal deafferentation model. Neurology 92(6):e613–e621
pubmed: 30626651 doi: 10.1212/WNL.0000000000006880
Mandonnet E, Margulies D, Stengel C, Dali M, Rheault F, Toba MN, Bonnetblanc F, Valero-Cabre A (2020) “I do not feel my hand where I see it”: causal mapping of visuo-proprioceptive integration network in a surgical glioma patient. Acta Neurochir (Wien) 162(8):1949–1955
pubmed: 32405668 doi: 10.1007/s00701-020-04399-2
Mandonnet E, Vincent M, Valero-Cabré A, Facque V, Barberis M, Bonnetblanc F, Rheault F, Volle E, Descoteaux M, Margulies DS (2020) Network-level causal analysis of set-shifting during trail making test part B: A multimodal analysis of a glioma surgery case. Cortex 132:238–249
pubmed: 33007639 doi: 10.1016/j.cortex.2020.08.021
Marenco-Hillembrand L, Suarez-Meade P, Sabsevitz DS, Leone BJ, Chaichana KL (2020) Awake craniotomy in a patient with previously diagnosed post-traumatic stress disorder. World Neurosurg 139:7–11
pubmed: 32278819 doi: 10.1016/j.wneu.2020.03.194
Martino J, Velasquez C, Vázquez-Bourgon J, de Lucas EM, Gomez E (2017) Cross-modal recruitment of auditory and orofacial areas during sign language in a deaf subject. World Neurosurg 105:1033.e1–1033.e5
pubmed: 28602887 doi: 10.1016/j.wneu.2017.05.170
Mato D, Velasquez C, Gómez E, Marco de Lucas E, Martino J (2021) Predicting the extent of resection in low-grade glioma by using intratumoral tractography to detect eloquent fascicles within the tumor. Neurosurgery 88(2):E190–E202
pubmed: 33313812 doi: 10.1093/neuros/nyaa463
Matsuda R, Tamura K, Nishimura F, Nakagawa I, Motoyama Y (2019) Subcortical calculation mapping during parietal glioma surgery in the dominant hemisphere: a case report. World Neurosurg 121:205–210
pubmed: 30326305 doi: 10.1016/j.wneu.2018.10.046
Mauler J, Neuner I, Neuloh G, Fimm B, Boers F, Wiesmann M, Clusmann H, Langen K-J, Shah NJ (2017) Dissociated crossed speech areas in a tumour patient. Case Rep Neurol 9(2):131–136
pubmed: 28626411 pmcid: 5471772 doi: 10.1159/000475882
McAuliffe N, Nicholson S, Rigamonti A, Hare GMT, Cusimano M, Garavaglia M, Pshonyak I, Das S (2018) Awake craniotomy using dexmedetomidine and scalp blocks: a retrospective cohort study. Can J Anaesth 65(10):1129–1137
pubmed: 29978278 doi: 10.1007/s12630-018-1178-z
Minkin K, Gabrovski K, Karazapryanov P, Milenova Y, Sirakov S, Karakostov V, Romanski K, Dimova P (2021) Awake epilepsy surgery in patients with focal cortical dysplasia. World Neurosurg 151:e257–e264
pubmed: 33872840 doi: 10.1016/j.wneu.2021.04.021
Moher D, Liberati A, Tetzlaff J, Altman DG, for the PRISMA Group (2009) Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement. BMJ 339(jul21 1):b2535–b2535
pubmed: 19622551 pmcid: 2714657 doi: 10.1136/bmj.b2535
Moiyadi A, Shetty P (2017) Early experience with combining awake craniotomy and intraoperative navigable ultrasound for resection of eloquent region gliomas. J Neurol Surg A Cent Eur Neurosurg 78(2):105–112
pubmed: 27367358
Monticelli M, Zeppa P, Altieri R et al (2020) Exploring the anatomy of negative motor areas (NMAs): Findings in awake surgery. J Clin Neurosci 73:219–223
pubmed: 32001111 doi: 10.1016/j.jocn.2020.01.049
Morsy AA, Ismail AM, Nasr YM, Waly SH, Abdelhameed EA (2021) Predictors of stimulation-induced seizures during perirolandic glioma resection using intraoperative mapping techniques. Surg Neurol Int 12:117
pubmed: 33880222 pmcid: 8053429 doi: 10.25259/SNI_873_2020
Motomura K, Chalise L, Ohka F et al (2019) Neurocognitive and functional outcomes in patients with diffuse frontal lower-grade gliomas undergoing intraoperative awake brain mapping. J Neurosurg 132(6):1683–1691
pubmed: 31100731 doi: 10.3171/2019.3.JNS19211
Motomura K, Chalise L, Ohka F et al (2021) Impact of the extent of resection on the survival of patients with grade II and III gliomas using awake brain mapping. J Neurooncol 153(2):361–372
pubmed: 34009509 doi: 10.1007/s11060-021-03776-w
Motomura K, Chalise L, Ohka F, Aoki K, Tanahashi K, Hirano M, Nishikawa T, Wakabayashi T, Natsume A (2018) Supratotal resection of diffuse frontal lower grade gliomas with awake brain mapping, preserving motor, language, and neurocognitive functions. World Neurosurg 119:30–39
pubmed: 30075269 doi: 10.1016/j.wneu.2018.07.193
Motomura K, Kawamura A, Ohka F, Aoki K, Nishikawa T, Yamaguchi J, Kibe Y, Shimizu H, Maeda S, Saito R (2023) Predictive factors of post-operative apathy in patients with diffuse frontal gliomas undergoing awake brain mapping. J Neuropsychol jnp.12345
Motomura K, Natsume A, Iijima K, Kuramitsu S, Fujii M, Yamamoto T, Maesawa S, Sugiura J, Wakabayashi T (2017) Surgical benefits of combined awake craniotomy and intraoperative magnetic resonance imaging for gliomas associated with eloquent areas. J Neurosurg 127(4):790–797
pubmed: 28059650 doi: 10.3171/2016.9.JNS16152
Motomura K, Takeuchi H, Nojima I, Aoki K, Chalise L, Iijima K, Wakabayashi T, Natsume A (2020) Navigated repetitive transcranial magnetic stimulation as preoperative assessment in patients with brain tumors. Sci Rep 10(1):9044
pubmed: 32493943 pmcid: 7270124 doi: 10.1038/s41598-020-65944-8
Motomura K, Terasawa Y, Natsume A, Iijima K, Chalise L, Sugiura J, Yamamoto H, Koyama K, Wakabayashi T, Umeda S (2019) Anterior insular cortex stimulation and its effects on emotion recognition. Brain Struct Funct 224(6):2167–2181
pubmed: 31168738 doi: 10.1007/s00429-019-01895-9
Muir M, Patel R, Traylor J et al (2022) Validation of Non-invasive language mapping modalities for eloquent tumor resection: a pilot study. Front Neurosci 16:833073
pubmed: 35299624 pmcid: 8923233 doi: 10.3389/fnins.2022.833073
Nakada M, Nakajima R, Okita H, Nakade Y, Yuno T, Tanaka S, Kinoshita M (2021) Awake surgery for right frontal lobe glioma can preserve visuospatial cognition and spatial working memory. J Neurooncol 151(2):221–230
pubmed: 33136234 doi: 10.1007/s11060-020-03656-9
Nakae S, Kumon M, Kojima D, Higashiguchi S, Ohba S, Kuriyama N, Sato Y, Inamoto Y, Mukaino M, Hirose Y (2022) Transsylvian and trans-Heschl’s gyrus approach for a left posterior insular lesion and functional analyses of the left Heschl’s gyrus: illustrative case. J Neurosurg Case Lessons 3(5):CASE21622
pubmed: 36130565 pmcid: 9379753 doi: 10.3171/CASE21622
Nakai Y, Jeong J-W, Brown EC, Rothermel R, Kojima K, Kambara T, Shah A, Mittal S, Sood S, Asano E (2017) Three- and four-dimensional mapping of speech and language in patients with epilepsy. Brain 140(5):1351–1370
pubmed: 28334963 pmcid: 5405238 doi: 10.1093/brain/awx051
Nakajima R, Kinoshita M, Miyashita K, Okita H, Genda R, Yahata T, Hayashi Y, Nakada M (2017) Damage of the right dorsal superior longitudinal fascicle by awake surgery for glioma causes persistent visuospatial dysfunction. Sci Rep 7(1):17158
pubmed: 29215071 pmcid: 5719443 doi: 10.1038/s41598-017-17461-4
Nakajima R, Kinoshita M, Nakada M (2020) Motor functional reorganization is triggered by tumor infiltration into the primary motor area and repeated surgery. Front Hum Neurosci 14:327
pubmed: 32922279 pmcid: 7457049 doi: 10.3389/fnhum.2020.00327
Nakajima R, Kinoshita M, Okita H, Liu Z, Nakada M (2021) Preserving right pre-motor and posterior prefrontal cortices contribute to maintaining overall basic emotion. Front Hum Neurosci 15:612890
pubmed: 33664659 pmcid: 7920969 doi: 10.3389/fnhum.2021.612890
Nakajima R, Kinoshita M, Okita H, Nakada M (2022) Quality of life following awake surgery depends on ability of executive function, verbal fluency, and movement. J Neurooncol 156(1):173–183
pubmed: 34800211 doi: 10.1007/s11060-021-03904-6
Nakajima R, Kinoshita M, Okita H, Yahata T, Matsui M, Nakada M (2018) Neural networks mediating high-level mentalizing in patients with right cerebral hemispheric gliomas. Front Behav Neurosci 12:33
pubmed: 29559899 pmcid: 5845682 doi: 10.3389/fnbeh.2018.00033
Nakajima R, Kinoshita M, Okita H, Yahata T, Nakada M (2019) Glioma surgery under awake condition can lead to good independence and functional outcome excluding deep sensation and visuospatial cognition. Neurooncol Pract 6(5):354–363
pubmed: 31555450
Nakajima R, Yordanova YN, Duffau H, Herbet G (2018) Neuropsychological evidence for the crucial role of the right arcuate fasciculus in the face-based mentalizing network: A disconnection analysis. Neuropsychologia 115:179–187
pubmed: 29360518 doi: 10.1016/j.neuropsychologia.2018.01.024
Navarro-Main B, Jiménez-Roldán L, González Leon P, Castaño-León AM, Lagares A, Pérez-Nuñez Á (2020) Neuropsychological management of the awake patient surgery: A protocol based on 3-year experience with glial tumors. Neurocirugia (Astur : Engl Ed) 31(6):279–288
pubmed: 32317143 doi: 10.1016/j.neucir.2020.02.005
Ng S, Herbet G, Lemaitre A-L, Moritz-Gasser S, Duffau H (2021) Disrupting self-evaluative processing with electrostimulation mapping during awake brain surgery. Sci Rep 11(1):9386
pubmed: 33931714 pmcid: 8087680 doi: 10.1038/s41598-021-88916-y
Ng S, Herbet G, Moritz-Gasser S, Duffau H (2020) return to work following surgery for incidental diffuse low-grade glioma: a prospective series with 74 patients. Neurosurgery 87(4):720–729
pubmed: 31813972 doi: 10.1093/neuros/nyz513
Ng S, Valdes PA, Moritz-Gasser S, Lemaitre A-L, Duffau H, Herbet G (2023) Intraoperative functional remapping unveils evolving patterns of cortical plasticity. Brain 146(7):3088–3100
pubmed: 37029961 doi: 10.1093/brain/awad116
Nomura S, Inoue T, Imoto H, Sadahiro H, Sugimoto K, Maruta Y, Ishihara H, Suzuki M (2021) A focal brain-cooling device as an alternative to electrical stimulation for language mapping during awake craniotomy: patient series. J Neurosurg Case Lessons 2(2):CASE21131
pubmed: 35854858 pmcid: 9265174 doi: 10.3171/CASE21131
Oblitas López S, Bocanegra-Becerra JE, Castillo-Huerta NM, Ludeña-Esquivel A, Becerra Zegarra A (2023) Awake craniotomy for resection of diffuse astrocytoma during pregnancy: a case report. Cureus 15(5):e39016
pubmed: 37378163 pmcid: 10292019
Oelschlägel M, Meyer T, Morgenstern U et al (2020) Mapping of language and motor function during awake neurosurgery with intraoperative optical imaging. Neurosurg Focus 48(2):E3
pubmed: 32006940 doi: 10.3171/2019.11.FOCUS19759
Ogawa H, Kamada K, Kapeller C, Prueckl R, Takeuchi F, Hiroshima S, Anei R, Guger C (2017) Clinical impact and implication of real-time oscillation analysis for language mapping. World Neurosurg 97:123–131
pubmed: 27686506 doi: 10.1016/j.wneu.2016.09.071
Okanishi T, Fujimoto A, Nishimura M, Niimi K, Kanai S, Enoki H (2018) Resective surgery for double epileptic foci overlapping anterior and posterior language areas: a case of epilepsy with tuberous sclerosis complex. Front Neurol 9:343
pubmed: 29867747 pmcid: 5967225 doi: 10.3389/fneur.2018.00343
Ookawa S, Enatsu R, Kanno A et al (2017) frontal fibers connecting the superior frontal gyrus to Broca area: a corticocortical evoked potential study. World Neurosurg 107:239–248
pubmed: 28797973 doi: 10.1016/j.wneu.2017.07.166
Pallud J, Dezamis E (2017) Functional and oncological outcomes following awake surgical resection using intraoperative cortico-subcortical functional mapping for supratentorial gliomas located in eloquent areas. Neurochirurgie 63(3):208–218
pubmed: 28161013 doi: 10.1016/j.neuchi.2016.08.003
Pallud J, Zanello M, Kuchcinski G, Roux A, Muto J, Mellerio C, Dezamis E, Oppenheim C (2018) Individual variability of the human cerebral cortex identified using intraoperative mapping. World Neurosurg 109:e313–e317
pubmed: 28989049 doi: 10.1016/j.wneu.2017.09.170
Pallud J, Zanello M, Moiraghi A et al (2021) Surgery of insular diffuse gliomas-part 1: transcortical awake resection is safe and independently improves overall survival. Neurosurgery 89(4):565–578
pubmed: 34383938 doi: 10.1093/neuros/nyab254
Papagno C, Comi A, Riva M, Bizzi A, Vernice M, Casarotti A, Fava E, Bello L (2017) Mapping the brain network of the phonological loop. Hum Brain Mapp 38(6):3011–3024
pubmed: 28321956 pmcid: 6866778 doi: 10.1002/hbm.23569
Papatzalas C, Fountas K, Kapsalaki E, Papathanasiou I (2022) The use of standardized intraoperative language tests in awake craniotomies: a scoping review. Neuropsychol Rev 32(1):20–50
pubmed: 33786797 doi: 10.1007/s11065-021-09492-6
Pascual JSG, Omar AT 2nd, Gaddi MJS, Iglesias RJO, Ignacio KHD, Jose GRB, Berger MS, Legaspi GD (2021) Awake craniotomy in low-resource settings: findings from a retrospective cohort in the Philippines. World Neurosurg 145:500–507.e1
pubmed: 33091650 doi: 10.1016/j.wneu.2020.10.070
Pasquini L, Peck KK, Jenabi M, Holodny A (2023) Functional MRI in neuro-oncology: state of the art and future directions. Radiology 308(3):e222028
pubmed: 37668519 doi: 10.1148/radiol.222028
Pelletier J-B, Moiraghi A, Zanello M et al (2021) Is function-based resection using intraoperative awake brain mapping feasible and safe for solitary brain metastases within eloquent areas? Neurosurg Rev 44(6):3399–3410
pubmed: 33661423 doi: 10.1007/s10143-021-01504-6
Pham L, Harris T, Varosanec M, Morgan V, Kosa P, Bielekova B (2021) Smartphone-based symbol-digit modalities test reliably captures brain damage in multiple sclerosis. npj Digit Med 4(1):36
Piai V, Vos SH, Idelberger R, Gans P, Doorduin J, Ter Laan M (2019) Awake surgery for a violin player: monitoring motor and music performance, A case report. Arch Clin Neuropsychol 34(1):132–137
pubmed: 29490011 doi: 10.1093/arclin/acy009
Picart T, Herbet G, Moritz-Gasser S, Duffau H (2019) Iterative surgical resections of diffuse glioma with awake mapping: how to deal with cortical plasticity and connectomal constraints? Neurosurgery 85(1):105–116
pubmed: 30010996 doi: 10.1093/neuros/nyy218
Piccininni C, Gainotti G, Carlesimo GA, Luzzi S, Papagno C, Trojano L, Ferrara A, Marra C, Quaranta D (2020) Naming famous people through face and voice: a normative study. Neurol Sci 41(7):1859–1864
pubmed: 32086684 doi: 10.1007/s10072-020-04272-1
Prat-Acín R, Galeano-Senabre I, López-Ruiz P, Ayuso-Sacido A, Espert-Tortajada R (2021) Intraoperative brain mapping of language, cognitive functions, and social cognition in awake surgery of low-grade gliomas located in the right non-dominant hemisphere. Clin Neurol Neurosurg 200:106363
pubmed: 33203593 doi: 10.1016/j.clineuro.2020.106363
Prat-Acín R, Galeano-Senabre I, López-Ruiz P, García-Sánchez D, Ayuso-Sacido A, Espert-Tortajada R (2021) Intraoperative brain mapping during awake surgery in symptomatic supratentorial cavernomas. Neurocirugia (Astur : Engl Ed) 32(5):217–223
pubmed: 34493402 doi: 10.1016/j.neucir.2020.07.004
Pronin IN, Sharaev MG, Melnikova-Pitskhelauri TV et al (2022) Machine learning for resting state fMRI-based preoperative mapping: comparison with task-based fMRI and direct cortical stimulation. Zh Vopr Neirokhir Im N N Burdenko 86(4):25–32
pubmed: 35942834 doi: 10.17116/neiro20228604125
Puglisi G, Howells H, Sciortino T et al (2019) Frontal pathways in cognitive control: direct evidence from intraoperative stimulation and diffusion tractography. Brain 142:2451–2465
pubmed: 31347684 pmcid: 6658848
Rand D (2018) Proprioception deficits in chronic stroke—Upper extremity function and daily living. PLoS ONE 13(3):e0195043
pubmed: 29601594 pmcid: 5877860 doi: 10.1371/journal.pone.0195043
Ratiu I, Virden TB, Baylow H, Flint M, Esfandiarei M (2018) Executive function and quality of life in individuals with Marfan syndrome. Qual Life Res 27(8):2057–2065
pubmed: 29671248 doi: 10.1007/s11136-018-1859-7
Razak A, Sloan G, Sebastian J, Ehsan S, Karabatsou K (2020) Awake craniotomy in the COVID-19 era - technical tips and feasibility. J Clin Neurosci 82(Pt A):49–51
pubmed: 33317738 pmcid: 7590811 doi: 10.1016/j.jocn.2020.10.048
Rech F, Duffau H, Pinelli C, Masson A, Roublot P, Billy-Jacques A, Brissart H, Civit T (2017) Intraoperative identification of the negative motor network during awake surgery to prevent deficit following brain resection in premotor regions. Neurochirurgie 63(3):235–242
pubmed: 28161012 doi: 10.1016/j.neuchi.2016.08.006
Rech F, Herbet G, Gaudeau Y, Mézières S, Moureau J-M, Moritz-Gasser S, Duffau H (2019) A probabilistic map of negative motor areas of the upper limb and face: a brain stimulation study. Brain 142(4):952–965
pubmed: 30753319 pmcid: 6439333 doi: 10.1093/brain/awz021
Reitz SC, Behrens M, Lortz I, Conradi N, Rauch M, Filipski K, Voss M, Kell C, Czabanka M, Forster M-T (2022) Neurocognitive outcome and seizure freedom after awake surgery of gliomas. Front Oncol 12:815733
pubmed: 35463387 pmcid: 9023117 doi: 10.3389/fonc.2022.815733
Riva M, Wilson SM, Cai R, Castellano A, Jordan KM, Henry RG, Gorno Tempini ML, Berger MS, Chang EF (2023) Evaluating syntactic comprehension during awake intraoperative cortical stimulation mapping. J Neurosurg 138(5):1403–1410
pubmed: 36208435
Rivera-Rivera PA, Rios-Lago M, Sanchez-Casarrubios S et al (2017) Cortical plasticity catalyzed by prehabilitation enables extensive resection of brain tumors in eloquent areas. J Neurosurg 126(4):1323–1333
pubmed: 27203145 doi: 10.3171/2016.2.JNS152485
Rojas PH, Sivaraju A, Quraishi IH, Vanderlind M, Rofes A, Połczynska-Bletsos MM, Spencer DD, Hirsch LJ, Benjamin CFA (2021) Electrical cortical stimulation can impair production of the alphabet without impairing counting. Epilepsy Behav Rep 15:100433
pubmed: 33778464 pmcid: 7985277 doi: 10.1016/j.ebr.2021.100433
Rolland A, Herbet G, Duffau H (2018) Awake surgery for gliomas within the right inferior parietal lobule: new insights into the functional connectivity gained from stimulation mapping and surgical implications. World Neurosurg 112:e393–e406
pubmed: 29355798 doi: 10.1016/j.wneu.2018.01.053
Rosengarth K, Pai D, Dodoo-Schittko F et al (2021) A novel language paradigm for intraoperative language mapping: feasibility and evaluation. J Clin Med. https://doi.org/10.3390/jcm10040655
Rossi M, Fornia L, Puglisi G et al (2018) Assessment of the praxis circuit in glioma surgery to reduce the incidence of postoperative and long-term apraxia: a new intraoperative test. J Neurosurg 130(1):17–27
pubmed: 29473778 doi: 10.3171/2017.7.JNS17357
Rossi M, Gay L, Conti Nibali M et al (2021) Challenging giant insular gliomas with brain mapping: evaluation of neurosurgical, neurological, neuropsychological, and quality of life results in a large mono-institutional series. Front Oncol. https://doi.org/10.3389/fonc.2021.629166
Rossi M, Puglisi G, Conti Nibali M, Viganò L, Sciortino T, Gay L, Leonetti A, Zito P, Riva M, Bello L (2022) Asleep or awake motor mapping for resection of perirolandic glioma in the nondominant hemisphere? Development and validation of a multimodal score to tailor the surgical strategy. J Neurosurg 136(1):16–29
pubmed: 34144525 doi: 10.3171/2020.11.JNS202715
Roux A, Dezamis E, Trancart B, Pallud J (2020) How I do it: trans-cortical approach for insular diffuse glioma. Acta Neurochir (Wien) 162(12):3025–3030
pubmed: 32856105 doi: 10.1007/s00701-020-04553-w
Roux F-E, Djidjeli I, Quéhan R, Réhault E, Giussani C, Durand J-B (2019) Intraoperative electrostimulation for awake brain mapping: how many positive interference responses are required for reliability? J Neurosurg:1–11
Roux F-E, Durand J-B, Djidjeli I, Moyse E, Giussani C (2017) Variability of intraoperative electrostimulation parameters in conscious individuals: language cortex. J Neurosurg 126(5):1641–1652
pubmed: 27419823 doi: 10.3171/2016.4.JNS152434
Roux A, Lemaitre A-L, Deverdun J, Ng S, Duffau H, Herbet G (2021) Combining Electrostimulation With Fiber Tracking to Stratify the Inferior Fronto-Occipital Fasciculus. Front Neurosci 15:683348
pubmed: 34093122 pmcid: 8172990 doi: 10.3389/fnins.2021.683348
Ruis C (2018) Monitoring cognition during awake brain surgery in adults: A systematic review. J Clin Exp Neuropsychol 40(10):1081–1104
pubmed: 30067443 doi: 10.1080/13803395.2018.1469602
Ruis C, Robe PA, Dijkerman HC (2023) Preserving the ability to discriminate between left and right; A case study. J Neuropsychol jnp.12348
Ruis C, Smits A, Robe P, Dijkerman C, van Zandvoort M (2019) “I had lost the sense of direction on my left body part”, proprioception and awake brain surgery: A case report. Cortex 121:482–484
pubmed: 31378373 doi: 10.1016/j.cortex.2019.07.001
Rutten G-JM, Landers MJF, De Baene W, Meijerink T, van der Hek S, Verheul JHB (2021) Executive functional deficits during electrical stimulation of the right frontal aslant tract. Brain Imaging Behav 15(5):2731–2735
pubmed: 33462780 pmcid: 8500906 doi: 10.1007/s11682-020-00439-8
Sabsevitz DS, Middlebrooks EH, Tatum W, Grewal SS, Wharen R, Ritaccio AL (2020) Examining the function of the visual word form area with stereo EEG electrical stimulation: A case report of pure alexia. Cortex 129:112–118
pubmed: 32442776 doi: 10.1016/j.cortex.2020.04.012
de Sain AM, van Zandvoort MJE, Mantione MHM, Huenges Wajer IMC, Willems PWA, Robe PA, Ruis C (2023) A timeline of cognitive functioning in glioma patients who undergo awake brain tumor surgery: a response to Mahajan et al. and their letter to the editor. Acta Neurochir (Wien) 165(9):2501–2502
pubmed: 37351674 doi: 10.1007/s00701-023-05689-1
Saito T, Muragaki Y, Tamura M, Maruyama T, Nitta M, Tsuzuki S, Fukuchi S, Ohashi M, Kawamata T (2020) Awake craniotomy with transcortical motor evoked potential monitoring for resection of gliomas in the precentral gyrus: Utility for predicting motor function. J Neurosurg 132(4):987–997
doi: 10.3171/2018.11.JNS182609
Saito T, Muragaki Y, Tamura M, Maruyama T, Nitta M, Tsuzuki S, Fukui A, Kawamata T (2020) Correlation between localization of supratentorial glioma to the precentral gyrus and difficulty in identification of the motor area during awake craniotomy. J Neurosurg 134(5):1490–1499
pubmed: 32357342 doi: 10.3171/2020.2.JNS193471
Saito T, Muragaki Y, Tamura M, Maruyama T, Nitta M, Tsuzuki S, Fukui A, Koriyama S, Kawamata T (2022) Monitoring cortico-cortical evoked potentials using only two 6-strand strip electrodes for gliomas extending to the dominant side of frontal operculum during one-step tumor removal surgery. World Neurosurg 165:e732–e742
pubmed: 35798294 doi: 10.1016/j.wneu.2022.06.141
Saito T, Muragaki Y, Tamura M, Maruyama T, Nitta M, Tsuzuki S, Ohashi M, Fukui A, Kawamata T (2022) Awake craniotomy with transcortical motor evoked potential monitoring for resection of gliomas within or close to motor-related areas: validation of utility for predicting motor function. J Neurosurg 136(4):1052–1061
pubmed: 34560661 doi: 10.3171/2021.3.JNS21374
Sanada T, Kapeller C, Jordan M, Grünwald J, Mitsuhashi T, Ogawa H, Anei R, Guger C (2021) Multi-modal mapping of the face selective ventral temporal cortex-a group study with clinical implications for ECS, ECoG, and fMRI. Front Hum Neurosci 15:616591
pubmed: 33828468 pmcid: 8020907 doi: 10.3389/fnhum.2021.616591
Sandoval-Bonilla BA, Palmini A, Paglioli E et al (2022) Extended resection for seizure control of pure motor strip focal cortical dysplasia during awake craniotomy: illustrative case. J Neurosurg Case Lessons 3(10):CASE21605
pubmed: 36130534 pmcid: 9379631 doi: 10.3171/CASE21605
Sangrador-Deitos MV, Uribe-Pacheco R, Balcázar-Padrón JC, Díaz-Bello S, Núñez-Velasco S (2022) Awake surgery with visual pathway mapping in low grade glioma surgery. Cureus 14(2):e22135
pubmed: 35308657 pmcid: 8918372
Sanmillan JL, Fernández-Coello A, Fernández-Conejero I, Plans G, Gabarrós A (2017) Functional approach using intraoperative brain mapping and neurophysiological monitoring for the surgical treatment of brain metastases in the central region. J Neurosurg 126(3):698–707
pubmed: 27128588 doi: 10.3171/2016.2.JNS152855
Sanmillan JL, Lopez-Ojeda P, Fernández-Conejero I, Fernández-Coello A, Plans G, Ali-Ciurana Y, Gabarrós A (2018) Treatment of cavernous malformations in supratentorial eloquent areas: experience after 10 years of patient-tailored surgical protocol. Acta Neurochir 160(10):1963–1974
pubmed: 30091050 doi: 10.1007/s00701-018-3644-3
Sauvageot S, Boetto J, Duffau H (2023) Surgical, functional, and oncological considerations regarding awake resection for giant diffuse lower-grade glioma of more than 100 cm3. J Neurosurg 139(4):934–943
pubmed: 36964732
Scerrati A, Mongardi L, Cavallo MA, Labanti S, Simioni V, Ricciardi L, De Bonis P (2021) Awake surgery for skills preservation during a sensory area tumor resection in a clarinet player. Acta Neurol Belg 121(5):1235–1239
pubmed: 32372400 doi: 10.1007/s13760-020-01368-5
van de Schoot R, de Bruin J, Schram R et al (2021) An open source machine learning framework for efficient and transparent systematic reviews. Nat Mach Intell 3(2):125–133
doi: 10.1038/s42256-020-00287-7
Sellier A, Moritz-Gasser S, Lemaitre A-L, Herbet G, Duffau H (2020) Presence of a translator in the operating theater for awake mapping in foreign patients with low-grade glioma: a surgical experience based on 18 different native languages. J Neurosurg:1–9
Semenza C, Salillas E, De Pallegrin S, Della Puppa A (2017) Balancing the 2 hemispheres in simple calculation: evidence from direct cortical electrostimulation. Cereb Cortex 27(10):4806–4814
pubmed: 27664964
Senova S, Lefaucheur J-P, Brugières P et al (2021) Case report: multimodal functional and structural evaluation combining pre-operative nTMS mapping and neuroimaging with intraoperative CT-scan and brain shift correction for brain tumor surgical resection. Front Human Neurosci. https://doi.org/10.3389/fnhum.2021.646268
Serrano-Castro PJ, Ros-López B, Fernández-Sánchez VE et al (2020) Neuroplasticity and epilepsy surgery in brain eloquent areas: case report. Front Neurol 11:698
pubmed: 32849188 pmcid: 7403440 doi: 10.3389/fneur.2020.00698
Shah HA, Ablyazova F, Alrez A, Wernicke AG, Vojnic M, Silverstein JW, Yaffe B, D’Amico RS (2023) Intraoperative awake language mapping correlates to preoperative connectomics imaging: An instructive case. Clin Neurol Neurosurg 229:107751
pubmed: 37149972 doi: 10.1016/j.clineuro.2023.107751
Sierpowska J, Fernandez-Coello A, Gomez-Andres A, Camins À, Castañer S, Juncadella M, Gabarrós A, Rodríguez-Fornells A (2018) Involvement of the middle frontal gyrus in language switching as revealed by electrical stimulation mapping and functional magnetic resonance imaging in bilingual brain tumor patients. Cortex 99:78–92
pubmed: 29197227 doi: 10.1016/j.cortex.2017.10.017
Sierpowska J, Gabarrós A, Fernández-Coello A, Camins À, Castañer S, Juncadella M, François C, Rodríguez-Fornells A (2019) White-matter pathways and semantic processing: intrasurgical and lesion-symptom mapping evidence. Neuroimage Clin 22:101704
pubmed: 30743137 pmcid: 6370559 doi: 10.1016/j.nicl.2019.101704
Simone L, Fornia L, Viganò L et al (2020) Large scale networks for human hand-object interaction: Functionally distinct roles for two premotor regions identified intraoperatively. NeuroImage 204:116215
pubmed: 31557544 doi: 10.1016/j.neuroimage.2019.116215
Sitnikov AR, Grigoryan YA, Mishnyakova LP (2018) Awake craniotomy without sedation in treatment of patients with lesional epilepsy. Surg Neurol Intl. https://doi.org/10.4103/sni.sni_24_18
Smirnov AS, Melnikova-Pitskhelauri TV, Sharaev MG et al (2020) Resting-state fMRI in preoperative non-invasive mapping in patients with left hemisphere glioma. Zh Vopr Neirokhir Im N N Burdenko 84(4):17–25
pubmed: 32759923 doi: 10.17116/neiro20208404117
Smith KM, Alden EC, Simpson HD, Brinkmann BH, Gregg NM, Miller KJ, Lundstrom BN (2022) Multimodal approach leads to seizure-freedom in a case of highly refractory drug-resistant focal epilepsy. Epi Beh Rep. https://doi.org/10.1016/j.ebr.2022.100570
Sollmann N, Kelm A, Ille S, Schröder A, Zimmer C, Ringel F, Meyer B, Krieg SM (2018) Setup presentation and clinical outcome analysis of treating highly language-eloquent gliomas via preoperative navigated transcranial magnetic stimulation and tractography. Neurosurg Focus 44(6):E2
pubmed: 29852769 doi: 10.3171/2018.3.FOCUS1838
Soloukey S, Vincent AJPE, Satoer DD et al (2019) Functional ultrasound (fUS) during awake brain surgery: the clinical potential of intra-operative functional and vascular brain mapping. Front Neurosci 13:1384
pubmed: 31998060 doi: 10.3389/fnins.2019.01384
Sonoda M, Rothermel R, Carlson A, Jeong J-W, Lee M-H, Hayashi T, Luat AF, Sood S, Asano E (2022) Naming-related spectral responses predict neuropsychological outcome after epilepsy surgery. Brain 145(2):517–530
pubmed: 35313351 pmcid: 9014727 doi: 10.1093/brain/awab318
Southwell DG, Birk HS, Han SJ, Li J, Sall JW, Berger MS (2018) Resection of gliomas deemed inoperable by neurosurgeons based on preoperative imaging studies. J Neurosurg 129(3):567–575
pubmed: 29125414 doi: 10.3171/2017.5.JNS17166
Starowicz-Filip A, Prochwicz K, Myszka A, Krzyżewski R, Stachura K, Chrobak AA, Rajtar-Zembaty AM, Bętkowska-Korpała B, Kwinta B (2022) Subjective experience, cognitive functioning and trauma level of patients undergoing awake craniotomy due to brain tumor - Preliminary study. Appl Neuropsychol Adult 29(5):983–992
pubmed: 33096001 doi: 10.1080/23279095.2020.1831500
Steininger K, Kahl KH, Konietzko I et al (2022) Intraoperative radiotherapy during awake craniotomies: preliminary results of a single-center case series. Neurosurg Rev 45(6):3657–3663
pubmed: 35881316 pmcid: 9663365 doi: 10.1007/s10143-022-01838-9
Šteňo A, Hollý V, Mendel P et al (2018) Navigated 3D–ultrasound versus conventional neuronavigation during awake resections of eloquent low-grade gliomas: a comparative study at a single institution. Acta Neurochir 160(2):331–342
pubmed: 29150795 doi: 10.1007/s00701-017-3377-8
Suarez-Meade P, Marenco-Hillembrand L, Sabsevitz D, Okromelidze L, Blake Perdikis BS, Sherman WJ, Quinones-Hinojosa A, Middlebrooks EH, Chaichana KL (2022) Surgical resection of gliomas in the dominant inferior frontal gyrus: Consecutive case series and anatomy review of Broca’s area. Clin Neurol Neurosurg 223:107512
pubmed: 36435069 doi: 10.1016/j.clineuro.2022.107512
Surbeck W, Hildebrandt G, Duffau H (2015) The evolution of brain surgery on awake patients. Acta Neurochir 157(1):77–84
pubmed: 25352088 doi: 10.1007/s00701-014-2249-8
Szelényi A, Bello L, Duffau H, Fava E, Feigl GC, Galanda M, Neuloh G, Signorelli F, Sala F (2010) Intraoperative electrical stimulation in awake craniotomy: methodological aspects of current practice. FOC 28(2):E7
doi: 10.3171/2009.12.FOCUS09237
Takahashi Y, Enatsu R, Kanno A, Imataka S, Komura S, Tamada T, Sakashita K, Chiba R, Saito T, Mikuni N (2022) Comparison of thresholds between bipolar and monopolar electrical cortical stimulation. Neurol Med Chir (Tokyo) 62(6):294–299
pubmed: 35466117 doi: 10.2176/jns-nmc.2021-0389
Tamai S, Kinoshita M, Nakajima R, Okita H, Nakada M (2022) Two different subcortical language networks supporting distinct Japanese orthographies: morphograms and phonograms. Brain Struct Funct 227(3):1145–1154
pubmed: 35032197 doi: 10.1007/s00429-022-02454-5
Tamás V, Sebestyén G, Nagy SA, Horváth PZ, Mérei Á, Tomaiuolo F, Raffa G, Germanó AF, Büki A (2021) Provocation and prediction of visual peripersonal neglect-like symptoms in preoperative planning and during awake brain surgery. Acta Neurochir (Wien) 163(7):1941–1947
pubmed: 33821318 doi: 10.1007/s00701-021-04822-2
Tamura M, Kurihara H, Saito T, Nitta M, Maruyama T, Tsuzuki S, Fukui A, Koriyama S, Kawamata T, Muragaki Y (2022) Combining pre-operative diffusion tensor images and intraoperative magnetic resonance images in the navigation is useful for detecting white matter tracts during glioma surgery. Front Neurol. https://doi.org/10.3389/fneur.2021.805952
Tamura M, Sato I, Maruyama T et al (2019) Integrated datasets of normalized brain with functional localization using intra-operative electrical stimulation. Int J Comput Assist Radiol Surg 14(12):2109–2122
pubmed: 30955195 doi: 10.1007/s11548-019-01957-7
Tate MC (2015) Surgery for Gliomas. In: Raizer J, Parsa A (eds) Current understanding and treatment of gliomas. Springer International Publishing, Cham, pp 31–47
doi: 10.1007/978-3-319-12048-5_3
Tomasino B, Guarracino I, Ius T, Budai R, Skrap M (2022) Real-time neuropsychological testing of sensorimotor cognition during awake surgery in precentral and postsomatosensory areas. World Neurosurg 164:e599–e610
pubmed: 35577201 doi: 10.1016/j.wneu.2022.05.018
Tomasino B, Guarracino I, Ius T, Maieron M, Skrap M (2021) Real-time neuropsychological testing protocol for left temporal brain tumor surgery: a technical note and case report. Front Human Neurosci. https://doi.org/10.3389/fnhum.2021.760569
Tomasino B, Guarracino I, Ius T, Skrap M (2023) Continuous real-time neuropsychological testing during resection phase in left and right prefrontal brain tumors. Curr Oncol 30(2):2007–2020
pubmed: 36826117 pmcid: 9955514 doi: 10.3390/curroncol30020156
Tomasino B, Guarracino I, Pauletto G et al (2022) Performing real time neuropsychological testing during awake craniotomy: are dexmedetomidine or propofol the same? A preliminary report. J Neurooncol 160(3):707–716
pubmed: 36374400 doi: 10.1007/s11060-022-04191-5
Trevisi G, Eickhoff SB, Chowdhury F, Jha A, Rodionov R, Nowell M, Miserocchi A, McEvoy AW, Nachev P, Diehl B (2018) Probabilistic electrical stimulation mapping of human medial frontal cortex. Cortex 109:336–346
pubmed: 30057247 pmcid: 6259584 doi: 10.1016/j.cortex.2018.06.015
Tuleasca C, Leroy H-A, Strachowski O, Derre B, Maurage C-A, Peciu-Florianu I, Reyns N (2023) Combined use of intraoperative MRI and awake tailored microsurgical resection to respect functional neural networks: preliminary experience. Swiss Med Wkly 153:40072
pubmed: 37192405 doi: 10.57187/smw.2023.40072
Vanacôr C, Duffau H (2018) Analysis of legal, cultural, and socioeconomic parameters in low-grade glioma management: variability across countries and implications for awake surgery. World Neurosurg 120:47–53
pubmed: 30170145 doi: 10.1016/j.wneu.2018.08.155
Varjacic A, Mantini D, Demeyere N, Gillebert CR (2018) Neural signatures of trail making test performance: evidence from lesion-mapping and neuroimaging studies. Neuropsychologia 115:78–87
pubmed: 29596856 pmcid: 6018614 doi: 10.1016/j.neuropsychologia.2018.03.031
Verst SM, de Aguiar PHP, Joaquim MAS, Vieira VG, Sucena ABC, Maldaun MVC (2019) Monopolar 250-500 Hz language mapping: results of 41 patients. Clin Neurophysiol Pract 4:1–8
pubmed: 30619979 doi: 10.1016/j.cnp.2018.11.002
Verst SM, Melo MND, Caivano AS, Fonseca US, Mathias LR, Alves TV (2020) Awake surgery versus VEP in tumors of visual pathway: case report. Interdiscip Neurosurg Adv Tech Case Manage. https://doi.org/10.1016/j.inat.2020.100675
Viganò L, Fornia L, Rossi M et al (2019) Anatomo-functional characterisation of the human “hand-knob”: a direct electrophysiological study. Cortex 113:239–254
pubmed: 30708312 doi: 10.1016/j.cortex.2018.12.011
Viganò L, Howells H, Fornia L, Rossi M, Conti Nibali M, Puglisi G, Leonetti A, Simone L, Bello L, Cerri G (2021) Negative motor responses to direct electrical stimulation: Behavioral assessment hides different effects on muscles. Cortex 137:194–204
pubmed: 33640851 doi: 10.1016/j.cortex.2021.01.005
Vigren P, Eriksson M, Gauffin H, Duffau H, Milos P, Eek T, Dizdar N (2023) Awake craniotomy in epilepsy surgery includes previously inoperable patients with preserved efficiency and safety. Int J Neurosci 1–11
Wakamatsu K, Ishiai S, Aihara N, Kurokawa S, Kimura Y, Mikuni N (2023) Prediction of early postoperative language function by quantitative evaluation with visual and auditory naming tasks during awake craniotomy for brain tumor resection: significance of auditory naming task. Neurol Med Chir (Tokyo) 63(5):191–199
pubmed: 36858633 doi: 10.2176/jns-nmc.2022-0319
Wang Y, Guo S, Wang N et al (2023) The clinical and neurocognitive functional changes with awake brain mapping for gliomas invading eloquent areas: Institutional experience and the utility of the Montreal cognitive assessment. Front Oncol 13:1086118
pubmed: 36910631 pmcid: 9992726 doi: 10.3389/fonc.2023.1086118
Wang Y, Hays MA, Coogan C, Kang JY, Flinker A, Arya R, Korzeniewska A, Crone NE (2021) Spatial-temporal functional mapping combined with cortico-cortical evoked potentials in predicting cortical stimulation results. Front Human Neurosci. https://doi.org/10.3389/fnhum.2021.661976
Wang Y-C, Lee C-C, Takami H, Shen S, Chen K-T, Wei K-C, Wu M-H, Worrell G, Chen P-Y (2019) Awake craniotomies for epileptic gliomas: intraoperative and postoperative seizure control and prognostic factors. J Neurooncol 142(3):577–586
pubmed: 30805752 doi: 10.1007/s11060-019-03131-0
Wang Z, Nayfeh T, Tetzlaff J, O’Blenis P, Murad MH (2020) Error rates of human reviewers during abstract screening in systematic reviews. PLoS ONE 15(1):e0227742
pubmed: 31935267 pmcid: 6959565 doi: 10.1371/journal.pone.0227742
Wang AT, Pillai P, Guran E, Carter H, Minasian T, Lenart J, Vandse R (2020) Anesthetic management of awake craniotomy for resection of the language and motor cortex vascular malformations. World Neurosurg 143:e136–e148
pubmed: 32736129 doi: 10.1016/j.wneu.2020.07.050
Witt ST, Laird AR, Meyerand ME (2008) Functional neuroimaging correlates of finger-tapping task variations: An ALE meta-analysis. NeuroImage 42(1):343–356
pubmed: 18511305 doi: 10.1016/j.neuroimage.2008.04.025
Woolnough O, Snyder KM, Morse CW, McCarty MJ, Lhatoo SD, Tandon N (2022) Intraoperative localization and preservation of reading in ventral occipitotemporal cortex. J Neurosurg 137(6):1610–1617
pubmed: 35395633 doi: 10.3171/2022.2.JNS22170
Wu Z, Xie T, Yao L, Zhang D, Sheng X, Farina D, Chen L, Mao Y, Zhu X (2017) Electrocorticographic temporal alteration mapping: a clinical technique for mapping the motor cortex with movement-related cortical potentials. Front Neurosci 11:326
pubmed: 28659752 pmcid: 5466988 doi: 10.3389/fnins.2017.00326
Yamao Y, Suzuki K, Kunieda T et al (2017) Clinical impact of intraoperative CCEP monitoring in evaluating the dorsal language white matter pathway. Hum Brain Mapp 38(4):1977–1991
pubmed: 28112455 pmcid: 6866855 doi: 10.1002/hbm.23498
Yao S, Yang R, Du C, Jiang C, Wang Y, Peng C, Bai H (2023) Maximal safe resection of diffuse lower grade gliomas primarily within central lobe using cortical/subcortical direct electrical stimulation under awake craniotomy. Front Oncol 13:1089139
pubmed: 36895476 pmcid: 9990258 doi: 10.3389/fonc.2023.1089139
Yi W, Xu S, Li X, Ma X (2019) Technique of localizing the central sulcus under awake anesthesia for treatment of gliomas in or near motor areas. Turk Neurosurg 29(3):323–327
pubmed: 29694662
Yordanova YN, Cochereau J, Duffau H, Herbet G (2019) Combining resting state functional MRI with intraoperative cortical stimulation to map the mentalizing network. Neuroimage 186:628–636
pubmed: 30500423 doi: 10.1016/j.neuroimage.2018.11.046
Yordanova YN, Duffau H, Herbet G (2017) Neural pathways subserving face-based mentalizing. Brain Struct Funct 222(7):3087–3105
pubmed: 28243761 doi: 10.1007/s00429-017-1388-0
Young JJ, Coulehan K, Fields MC, Yoo JY, Marcuse LV, Jette N, Panov F, Ghatan S, Bender HA (2018) Language mapping using electrocorticography versus stereoelectroencephalography: A case series. Epilepsy Behav 84:148–151
pubmed: 29803145 pmcid: 8252889 doi: 10.1016/j.yebeh.2018.04.032
Zanello M, Wager M, Corns R et al (2017) Resection of cavernous angioma located in eloquent areas using functional cortical and subcortical mapping under awake conditions. Outcomes in a 50-case multicentre series. Neurochirurgie 63(3):219–226
pubmed: 28502568 doi: 10.1016/j.neuchi.2016.08.008
Zaytseva Y, Korsakova N, Gurovich IYa, Heinz A, Rapp MA (2014) Luria revisited: complex motor phenomena in first episode schizophrenia and schizophrenia spectrum disorders. Psychiatr Res 220(1–2):145–151
Zele T, Velnar T, Koritnik B, Bosnjak R, Markovic-Bozic J (2023) Awake craniotomy for operative treatment of brain gliomas - experience from University Medical Centre Ljubljana. Radiol Oncol 57(2):191–200
pubmed: 36653903 pmcid: 10286893 doi: 10.2478/raon-2022-0052
Zhou X, Wen J, Yu T et al (2021) Clinical application of intraoperative trial-free online-based language mapping for patients with refractory epilepsy. Epilepsy Behav 116:107496
pubmed: 33582498 doi: 10.1016/j.yebeh.2020.107496
Zhou T, Yu T, Li Z, Zhou X, Wen J, Li X (2021) Functional mapping of language-related areas from natural, narrative speech during awake craniotomy surgery. Neuroimage 245:118720
pubmed: 34774771 doi: 10.1016/j.neuroimage.2021.118720
Zhou Y, Zhao Z, Zhang J, Hameed NUF, Zhu F, Feng R, Zhang X, Lu J, Wu J (2021) Electrical stimulation-induced speech-related negative motor responses in the lateral frontal cortex. J Neurosurg 1–9
Zhukov VY, Goryaynov SA, Buklina SB et al (2018) Intraoperative mapping of long association fibers in surgery of gliomas of the speech-dominant frontal lobe. Zh Vopr Neirokhir Im N N Burdenko 82(5):5–20
pubmed: 30412152 doi: 10.17116/neiro2018820515
Zigiotto L, Annicchiarico L, Corsini F et al (2020) Effects of supra-total resection in neurocognitive and oncological outcome of high-grade gliomas comparing asleep and awake surgery. J Neurooncol 148(1):97–108
pubmed: 32303975 doi: 10.1007/s11060-020-03494-9
Zigiotto L, Vavassori L, Annicchiarico L, Corsini F, Avesani P, Rozzanigo U, Sarubbo S, Papagno C (2022) Segregated circuits for phonemic and semantic fluency: a novel patient-tailored disconnection study. Neuroimage Clin 36:103149
pubmed: 35970113 pmcid: 9400120 doi: 10.1016/j.nicl.2022.103149
Zolotova АS, Evstigneyev МS, Yashin КS et al (2022) Combination of multimodal MRI, neuronavigation, and awake craniotomy in removing tumors of eloquent areas. Sovrem Tekhnologii Med 14(2):59–65
pubmed: 37065426 doi: 10.17691/stm2022.14.2.06

Auteurs

Beleke de Zwart (B)

Experimental Psychology, Helmholtz Institution, Utrecht University, Utrecht, The Netherlands. b.dezwart@uu.nl.

Carla Ruis (C)

Experimental Psychology, Helmholtz Institution, Utrecht University, Utrecht, The Netherlands.
Department of Neurology and Neurosurgery, University Medical Center Utrecht, Utrecht, The Netherlands.

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