Presurgical Executive Functioning in Low-Grade Glioma Patients Cannot Be Topographically Mapped.

executive functions frontoparietal network low-grade glioma superior longitudinal fasciculus tractography

Journal

Cancers
ISSN: 2072-6694
Titre abrégé: Cancers (Basel)
Pays: Switzerland
ID NLM: 101526829

Informations de publication

Date de publication:
28 Jan 2023
Historique:
received: 18 11 2022
revised: 18 01 2023
accepted: 24 01 2023
entrez: 11 2 2023
pubmed: 12 2 2023
medline: 12 2 2023
Statut: epublish

Résumé

Executive dysfunctions have a high prevalence in low-grade glioma patients and may be the result of structural disconnections of particular subcortical tracts and/or networks. However, little research has focused on preoperative low-grade glioma patients. The frontotemporoparietal network has been closely linked to executive functions and is substantiated by the superior longitudinal fasciculus. The aim of this study was to investigate their role in executive functions in low-grade glioma patients. Patients from two neurological centers were included with IDH-mutated low-grade gliomas. The sets of preoperative predictors were (i) distance between the tumor and superior longitudinal fasciculus, (ii) structural integrity of the superior longitudinal fasciculus, (iii) overlap between tumor and cortical networks, and (iv) white matter disconnection of the same networks. Linear regression and random forest analyses were performed. The group of 156 patients demonstrated significantly lower performance than normative samples and had a higher prevalence of executive impairments. However, both regression and random forest analyses did not demonstrate significant results, meaning that neither structural, cortical network overlap, nor network disconnection predictors explained executive performance. Overall, our null results indicate that there is no straightforward topographical explanation of executive performance in low-grade glioma patients. We extensively discuss possible explanations, including plasticity-induced network-level equipotentiality. Finally, we stress the need for the development of novel methods to unveil the complex and interacting mechanisms that cause executive deficits in low-grade glioma patients.

Identifiants

pubmed: 36765764
pii: cancers15030807
doi: 10.3390/cancers15030807
pmc: PMC9913560
pii:
doi:

Types de publication

Journal Article

Langues

eng

Déclaration de conflit d'intérêts

The authors declare no conflicts of interest.

Références

PLoS One. 2017 Aug 22;12(8):e0182795
pubmed: 28829841
Brain Imaging Behav. 2022 Jun;16(3):1026-1039
pubmed: 34716878
Brain Imaging Behav. 2020 Dec;14(6):2817-2830
pubmed: 31468374
Neuroimage. 2009 Oct 1;47(4):1460-8
pubmed: 19463959
Hum Brain Mapp. 2017 Jun;38(6):3011-3024
pubmed: 28321956
J Neurosurg. 2022 Mar 4;:1-9
pubmed: 35245898
Cortex. 2020 Nov;132:238-249
pubmed: 33007639
Neurotherapeutics. 2007 Jul;4(3):316-29
pubmed: 17599699
Nat Rev Clin Oncol. 2018 Feb;15(2):112-125
pubmed: 29158591
Acta Neurochir (Wien). 2016 Feb;158(2):305-12
pubmed: 26711285
J Neurooncol. 2019 Jan;141(1):167-182
pubmed: 30446902
Front Hum Neurosci. 2022 Dec 15;16:1050605
pubmed: 36590069
J Neurooncol. 2017 Aug;134(1):9-18
pubmed: 28567586
Cortex. 2015 Feb;63:27-41
pubmed: 25241396
Neuropsychologia. 2010 May;48(6):1716-24
pubmed: 20188115
Assessment. 2020 Mar;27(2):373-383
pubmed: 28895436
Hum Brain Mapp. 2015 Feb;36(2):549-65
pubmed: 25271132
Neurochirurgie. 2017 Sep;63(4):308-313
pubmed: 28882599
Neuropsychopharmacology. 2010 Jan;35(1):70-85
pubmed: 19657332
Acta Neurochir (Wien). 2022 Jan;164(1):177-191
pubmed: 34674026
Neuroimage. 2018 Oct 1;179:403-413
pubmed: 29929005
Brain Struct Funct. 2016 Apr;221(3):1751-66
pubmed: 25682261
Neuron. 2016 Jun 15;90(6):1151-1153
pubmed: 27311080
J Clin Neurosci. 2021 Jun;88:259-267
pubmed: 33992194
J Neurooncol. 2018 Dec;140(3):485-496
pubmed: 30377935
Annu Rev Psychol. 2013;64:135-68
pubmed: 23020641
Proc Natl Acad Sci U S A. 2012 Sep 4;109(36):14681-6
pubmed: 22908286
Nat Commun. 2017 Nov 7;8(1):1349
pubmed: 29116093
Neuron. 2007 Mar 15;53(6):905-18
pubmed: 17359924
Trends Cogn Sci. 2008 Mar;12(3):99-105
pubmed: 18262825
Cogn Psychol. 2000 Aug;41(1):49-100
pubmed: 10945922
Neuroscience. 2016 Dec 17;339:12-21
pubmed: 27687802
Brain. 2012 Apr;135(Pt 4):1154-64
pubmed: 22396393
J Neurosurg. 2016 Oct;125(4):1024-1032
pubmed: 26894458
J Comp Neurol. 1984 Sep 1;228(1):105-16
pubmed: 6480903
Brain Struct Funct. 2020 Nov;225(8):2415-2429
pubmed: 32813155
J Neurosurg. 2012 Dec;117(6):1039-52
pubmed: 23039150
Brain Struct Funct. 2016 May;221(4):2075-92
pubmed: 25782434
J Neurosci. 2009 Apr 8;29(14):4392-407
pubmed: 19357267
Nat Neurosci. 2011 May 29;14(7):830-2
pubmed: 21623362
Front Neuroinform. 2014 Feb 21;8:8
pubmed: 24600385
Neuroimage. 2017 Feb 1;146:367-375
pubmed: 27639357
Lancet Neurol. 2005 Aug;4(8):476-86
pubmed: 16033690
J Neurooncol. 2019 Nov;145(2):265-276
pubmed: 31552588
Rev Neurol (Paris). 2008 May;164 Suppl 3:S119-27
pubmed: 18675037
Neurosci Lett. 2020 Nov 1;738:135349
pubmed: 32889005
Neurosci Biobehav Rev. 2017 Apr;75:53-64
pubmed: 28104411
Hum Brain Mapp. 2017 Mar;38(3):1692-1701
pubmed: 28045225
Nat Rev Neurol. 2019 Jul;15(7):405-417
pubmed: 31227792
Stroke. 2015 Oct;46(10):2755-61
pubmed: 26382176
Brain Sci. 2021 Jul 07;11(7):
pubmed: 34356131
Hum Brain Mapp. 2012 Mar;33(3):639-51
pubmed: 21391280
J Neurosurg. 2019 Nov 15;:1-12
pubmed: 31731264
Neurosurg Clin N Am. 2011 Apr;22(2):253-68, ix
pubmed: 21435575
Tijdschr Gerontol Geriatr. 2008 Apr;39(2):64-76
pubmed: 18500167
Nat Neurosci. 2011 Sep 18;14(10):1245-6
pubmed: 21926985
Neural Plast. 2017;2017:3530723
pubmed: 28845308
Neuroimage. 2012 Oct 1;62(4):2222-31
pubmed: 22366334
Brain Struct Funct. 2020 Nov;225(8):2387-2402
pubmed: 32816112
Molecules. 2020 Oct 16;25(20):
pubmed: 33081223
Eur J Neurosci. 2019 Dec;50(12):3921-3933
pubmed: 31370107
Cereb Cortex. 2005 Jun;15(6):854-69
pubmed: 15590909
Cereb Cortex. 2009 Apr;19(4):777-85
pubmed: 18669591
Curr Dir Psychol Sci. 2012 Feb;21(1):8-14
pubmed: 22773897
J Pers Med. 2022 Apr 06;12(4):
pubmed: 35455703
Acta Neurochir (Wien). 2012 Apr;154(4):569-74
pubmed: 22278663
Neuroimage. 2006 Jul 1;31(3):1116-28
pubmed: 16545965
Front Neuroanat. 2018 Nov 06;12:94
pubmed: 30459566
Ann Neurol. 2010 Dec;68(6):855-64
pubmed: 21194155
Neuroimage. 2019 Jan 15;185:1-11
pubmed: 30317017
Neurosurg Focus. 2020 Feb 1;48(2):E6
pubmed: 32006950
Brain Plast. 2016 Dec 21;2(1):99-113
pubmed: 29765851
J Neurosurg Sci. 2017 Dec;61(6):612-630
pubmed: 28263047
Radiol Res Pract. 2016;2016:7671854
pubmed: 27190647
J Clin Epidemiol. 2014 Aug;67(8):850-7
pubmed: 24831050
J Neurophysiol. 2011 Sep;106(3):1125-65
pubmed: 21653723
Neurosurgery. 2021 Feb 16;88(3):627-636
pubmed: 33289507
Brain Struct Funct. 2015 Jul;220(4):1983-95
pubmed: 24744151
PLoS One. 2016 Jan 11;11(1):e0144200
pubmed: 26751577
Neuroimage. 2011 Jun 1;56(3):992-1000
pubmed: 21414413
Brain Struct Funct. 2013 Jan;218(1):105-21
pubmed: 22422148
Brain. 2014 Sep;137(Pt 9):2522-31
pubmed: 24974384

Auteurs

Maud J F Landers (MJF)

Department of Neurosurgery, Elisabeth-Tweesteden Hospital Tilburg, 5022 GC Tilburg, The Netherlands.
Department of Cognitive Neuropsychology, Tilburg University, 5037 AB Tilburg, The Netherlands.

Lars Smolders (L)

Department of Neurosurgery, Elisabeth-Tweesteden Hospital Tilburg, 5022 GC Tilburg, The Netherlands.
Department of Mathematics and Computer Science, Eindhoven University of Technology, 5600 MB Eindhoven, The Netherlands.

Geert-Jan M Rutten (GM)

Department of Neurosurgery, Elisabeth-Tweesteden Hospital Tilburg, 5022 GC Tilburg, The Netherlands.

Margriet M Sitskoorn (MM)

Department of Cognitive Neuropsychology, Tilburg University, 5037 AB Tilburg, The Netherlands.

Emmanuel Mandonnet (E)

Hôpitaux de Paris, University of Paris, 75006 Paris, France.
Service of Neurosurgery, Lariboisière Hospital, 75010 Paris, France.

Wouter De Baene (W)

Department of Cognitive Neuropsychology, Tilburg University, 5037 AB Tilburg, The Netherlands.

Classifications MeSH