Wada test results contribute to the prediction of change in verbal learning and verbal memory function after temporal lobe epilepsy surgery.


Journal

Scientific reports
ISSN: 2045-2322
Titre abrégé: Sci Rep
Pays: England
ID NLM: 101563288

Informations de publication

Date de publication:
26 05 2021
Historique:
received: 15 01 2021
accepted: 07 05 2021
entrez: 27 5 2021
pubmed: 28 5 2021
medline: 30 10 2021
Statut: epublish

Résumé

In recent years, the clinical usefulness of the Wada test (WT) has been debated among researchers in the field. Therefore, we aimed to assess its contribution to the prediction of change in verbal learning and verbal memory function after epilepsy surgery. Data from 56 patients with temporal lobe epilepsy who underwent WT and subsequent surgery were analyzed retrospectively. Additionally, a standard neuropsychological assessment evaluating attentional, learning and memory, visuospatial, language, and executive function was performed both before and 12 months after surgery. Hierarchical linear regression analyses were used to determine the incremental value of WT results over socio-demographic, clinical, and neuropsychological characteristics in predicting postsurgical change in patients' verbal learning and verbal memory function. The incorporation of WT results significantly improved the prediction models of postsurgical change in verbal learning (∆R

Identifiants

pubmed: 34040075
doi: 10.1038/s41598-021-90376-3
pii: 10.1038/s41598-021-90376-3
pmc: PMC8154896
doi:

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

10979

Références

Wada, J. A new method of determining the side of cerebral speech dominance: a preliminary report on the intracarotid injection of sodium amytal in man. Igaku To Seibutsugaku 14, 221–222 (1949).
Milner, B. Study of short-term memory after intracarotid injection of sodium amytal. Trans. Am. Neurol. Assoc. 87, 224–226 (1962).
Chelune, G. J. Hippocampal adequacy versus functional reserve: predicting memory functions following temporal lobectomy. Arch. Clin. Neuropsychol. 10(5), 413–432 (1995).
pubmed: 14588901 doi: 10.1093/arclin/10.5.413
van Emde Boas, W. & Juhn, A. Wada and the sodium amytal test in the first (and last?) 50 years. J. Hist. Neurosci. 8(3), 286–292 (1999).
pubmed: 11624159 doi: 10.1076/jhin.8.3.286.1819
Helmstaedter, C. Neuropsychological aspects of epilepsy surgery. Epilepsy Behav. 5, 45–55 (2004).
doi: 10.1016/j.yebeh.2003.11.006
Helmstaedter, C. Temporal lobe resection—does the prospect of seizure freedom outweigh the cognitive risks?. Nat. Clin. Pract. Neurol. 4(2), 66–67 (2008).
pubmed: 17955042 doi: 10.1038/ncpneuro0657
Langfitt, J. et al. Worsening of quality of life after epilepsy surgery: effect of seizures and memory decline. Neurology 68(23), 1988–1994 (2007).
pubmed: 17548548 doi: 10.1212/01.wnl.0000264000.11511.30
Seiam, A.-H.R., Dhaliwal, H. & Wiebe, S. Determinants of quality of life after epilepsy surgery: systematic review and evidence summary. Epilepsy Behav. 21(4), 441–445 (2011).
pubmed: 21697015 doi: 10.1016/j.yebeh.2011.05.005
Pauli, C. et al. Predictors of meaningful improvement in quality of life after temporal lobe epilepsy surgery: a prospective study. Epilepsia 58(5), 755–763 (2017).
pubmed: 28332703 doi: 10.1111/epi.13721
Conradi, N. et al., Assessing cognitive change and quality of life 12 months after epilepsy surgery—development and application of reliable change indices and standardized regression-based change norms for a neuropsychological test battery in the German language. Front. Psychol. 11, 582836 (2020).
Baxendale, S. & Thompson, P. Red flags in epilepsy surgery: identifying the patients who pay a high cognitive price for an unsuccessful surgical outcome. Epilepsy Behav. 78, 269–272 (2018).
pubmed: 29117924 doi: 10.1016/j.yebeh.2017.08.003
Barr, W. B. Memory decline following epilepsy surgery: can we predict who will pay the price?. Epilepsy Curr. 20(1), 22–24 (2020).
pubmed: 31876174 doi: 10.1177/1535759719895270
Baxendale, S. The impact of epilepsy surgery on cognition and behavior. Epilepsy Behav. 12(4), 592–599 (2008).
pubmed: 18299253 doi: 10.1016/j.yebeh.2007.12.015
Sherman, E. M. et al. Neuropsychological outcomes after epilepsy surgery: systematic review and pooled estimates. Epilepsia 52(5), 857–869 (2011).
pubmed: 21426331 doi: 10.1111/j.1528-1167.2011.03022.x
Ljunggren, S. et al. Predicting verbal memory decline following temporal lobe resection for epilepsy. Acta Neurol. Scand. 140(5), 312–319 (2019).
pubmed: 31273754 doi: 10.1111/ane.13146
Baxendale, S. et al. Predicting memory decline following epilepsy surgery: a multivariate approach. Epilepsia 47(11), 1887–1894 (2006).
pubmed: 17116029 doi: 10.1111/j.1528-1167.2006.00810.x
Cohen-Gadol, A. A. et al. Intracarotid Amytal memory test and hippocampal magnetic resonance imaging volumetry: validity of the Wada test as an indicator of hippocampal integrity among candidates for epilepsy surgery. J. Neurosurg. 101(6), 926 (2004).
pubmed: 15597752 doi: 10.3171/jns.2004.101.6.0926
Stroup, E. et al. Predicting verbal memory decline following anterior temporal lobectomy (ATL). Neurology 60(8), 1266–1273 (2003).
pubmed: 12707428 doi: 10.1212/01.WNL.0000058765.33878.0D
Baxendale, S. et al. The role of the intracarotid amobarbital procedure in predicting verbal memory decline after temporal lobe resection. Epilepsia 48(3), 546–552 (2007).
pubmed: 17346250 doi: 10.1111/j.1528-1167.2006.00940.x
Andelman, F. et al. Predictive value of Wada memory scores on postoperative learning and memory abilities in patients with intractable epilepsy. J. Neurosurg.: JNS 104(1), 20 (2006).
doi: 10.3171/jns.2006.104.1.20
Bell, B. D. et al. Intracarotid amobarbital procedure and prediction of postoperative memory in patients with left temporal lobe epilepsy and hippocampal sclerosis. Epilepsia 41(8), 992–997 (2000).
pubmed: 10961626 doi: 10.1111/j.1528-1157.2000.tb00284.x
Chiaravalloti, N. D. & Glosser, G. Material-specific memory changes after anterior temporal lobectomy as predicted by the intracarotid amobarbital test. Epilepsia 42(7), 902–911 (2001).
pubmed: 11488891 doi: 10.1046/j.1528-1157.2001.02500.x
Uijl, S. G. et al. The intracarotid amobarbital or Wada test: unilateral or bilateral?. Acta Neurol. Scand. 119(3), 199–206 (2009).
pubmed: 18684215 doi: 10.1111/j.1600-0404.2008.01079.x
Lineweaver, T. T. et al. Evaluating the contributions of state-of-the-art assessment techniques to predicting memory outcome after unilateral anterior temporal lobectomy. Epilepsia 47(11), 1895–1903 (2006).
pubmed: 17116030 doi: 10.1111/j.1528-1167.2006.00807.x
Sharan, A. et al. Intracarotid amobarbital procedure for epilepsy surgery. Epilepsy Behav. 20(2), 209–213 (2011).
pubmed: 21190900 doi: 10.1016/j.yebeh.2010.11.013
Parra-Díaz, P. & García-Casares, N. Memory assessment in patients with temporal lobe epilepsy to predict memory impairment after surgery: a systematic review. Neurología (English Edition) 34(9), 596–606 (2019).
doi: 10.1016/j.nrleng.2017.02.011
Szaflarski, J. P. Is fMRI ready to replace IAP? Wait, wait,… we are not there yet!. Epilepsy Curr. 20(Suppl 6), 6S-8S (2020).
pubmed: 33012192 pmcid: 7726729 doi: 10.1177/1535759720948113
Elshorst, N. et al. Postoperative memory prediction in left temporal lobe epilepsy: the Wada test is of no added value to preoperative neuropsychological assessment and MRI. Epilepsy Behav. 16(2), 335–340 (2009).
pubmed: 19751990 doi: 10.1016/j.yebeh.2009.08.003
Rathore, C. et al. Memory outcome following left anterior temporal lobectomy in patients with a failed Wada test. Epilepsy Behav. 44, 207–212 (2015).
pubmed: 25768711 doi: 10.1016/j.yebeh.2015.02.011
Loddenkemper, T. et al. Repeated intracarotid amobarbital tests. Epilepsia 48(3), 553–558 (2007).
pubmed: 17319921 doi: 10.1111/j.1528-1167.2007.00982.x
Loddenkemper, T. Quo vadis Wada?. Epilepsy Behav.: E&B 13(1), 1–2 (2008).
doi: 10.1016/j.yebeh.2008.04.002
Haag, A. et al. The Wada test in Austrian, Dutch, German, and Swiss epilepsy centers from 2000 to 2005: a review of 1421 procedures. Epilepsy Behav. 13(1), 83–89 (2008).
pubmed: 18358786 doi: 10.1016/j.yebeh.2008.02.012
Baxendale, S., Thompson, P. J. & Duncan, J. S. The role of the Wada test in the surgical treatment of temporal lobe epilepsy: an international survey. Epilepsia 49(4), 715–720 (2008).
pubmed: 18366477 doi: 10.1111/j.1528-1167.2007.01515_1.x
Vogt, V. L. et al. Current standards of neuropsychological assessment in epilepsy surgery centers across Europe. Epilepsia 58(3), 343–355 (2017).
pubmed: 28067423 doi: 10.1111/epi.13646
Bauer, P. R. et al. Can fMRI safely replace the Wada test for preoperative assessment of language lateralisation? A meta-analysis and systematic review. J. Neurol. Neurosurg. Psychiatry 85(5), 581–588 (2014).
pubmed: 23986313 doi: 10.1136/jnnp-2013-305659
Massot-Tarrús, A., White, K. & Mirsattari, S. M. Comparing the Wada test and functional MRI for the presurgical evaluation of memory in temporal lobe epilepsy. Curr. Neurol. Neurosci. Rep. 19(6), 31 (2019).
pubmed: 31044310 doi: 10.1007/s11910-019-0945-8
Brückner, K. Standard der neuropsychologischen Testung in der prächirurgischen Epilepsiediagnostik. Z. Epileptol. 25(4), 259–263 (2012).
doi: 10.1007/s10309-012-0271-5
Conradi, N. et al. Factorial validity of a neuropsychological test battery and its ability to discern temporal lobe epilepsy from frontal lobe epilepsy—a retrospective study. Seizure 74, 81–88 (2020).
pubmed: 31855714 doi: 10.1016/j.seizure.2019.11.012
Rosenow, F. et al. Revised version of quality guidelines for presurgical epilepsy evaluation and surgical epilepsy therapy issued by the Austrian, German, and Swiss working group on presurgical epilepsy diagnosis and operative epilepsy treatment. Epilepsia 57(8), 1215–1220 (2016).
pubmed: 27354263 doi: 10.1111/epi.13449
Berg, A. T. et al. Revised terminology and concepts for organization of seizures and epilepsies: report of the ILAE Commission on Classification and Terminology, 2005–2009. Epilepsia 51(4), 676–685 (2010).
pubmed: 20196795 doi: 10.1111/j.1528-1167.2010.02522.x
Engel, J. Jr. Report of the ILAE classification core group. Epilepsia 47(9), 1558–1568 (2006).
pubmed: 16981873 doi: 10.1111/j.1528-1167.2006.00215.x
Fisher, R. S. et al. Operational classification of seizure types by the international league against epilepsy: position paper of the ILAE commission for classification and terminology. Epilepsia 58(4), 522–530 (2017).
pubmed: 28276060 doi: 10.1111/epi.13670
Scheffer, I. E. et al. ILAE classification of the epilepsies: position paper of the ILAE commission for classification and terminology. Epilepsia 58(4), 512–521 (2017).
pubmed: 28276062 pmcid: 5386840 doi: 10.1111/epi.13709
Lüders, H. et al. Classification of paroxysmal events and the four-dimensional epilepsy classification system. Epileptic Disord. 21(1), 1–29 (2019).
pubmed: 30782582
Lüders, H. et al. Critique of the 2017 epileptic seizure and epilepsy classifications. Epilepsia 60(6), 1032–1039 (2019).
pubmed: 30924146
Rosenow, F. et al. Could the 2017 ILAE and the four-dimensional epilepsy classifications be merged to a new “Integrated Epilepsy Classification”?. Seizure 78, 31–37 (2020).
pubmed: 32155575 doi: 10.1016/j.seizure.2020.02.018
Engel Jr, J., Outcome with respect to epileptic seizures. In Surgical Treatment of the Epilepsies 609–621 (1993).
Conradi, N. et al. Advantages of methohexital over amobarbital in determining hemispheric language and memory lateralization in the Wada test—a retrospective study. Epilepsy Behav. 113, 107551 (2020).
pubmed: 33246234 doi: 10.1016/j.yebeh.2020.107551
Molz, C. et al. Wechsler Intelligenztest für Erwachsene WIE. Deutschsprachige Bearbeitung und Adaptation des WAIS-III von David Wechsler. Psychol. Rundsch. 61, 229–230 (2010).
doi: 10.1026/0033-3042/a000042
Lehrl, S. Mehrfachwahl-Wortschatz-Intelligenztest: MWT-B (Spitta, Balingen, 1999).
Oldfield, R. C. The assessment and analysis of handedness: the Edinburgh inventory. Neuropsychologia 9(1), 97–113 (1971).
pubmed: 5146491 doi: 10.1016/0028-3932(71)90067-4
Helmstaedter, C., Lendt, M. & Lux, S. Verbaler Lern-und Merkfähigkeitstest (VLMT) Beltz. Göttingen, Germany (2001).
Springer, J. A. et al. Language dominance in neurologically normal and epilepsy subjects: a functional MRI study. Brain 122(11), 2033–2046 (1999).
pubmed: 10545389 doi: 10.1093/brain/122.11.2033
Kovac, S. et al. Memory performance is related to language dominance as determined by the intracarotid amobarbital procedure. Epilepsy Behav. 16(1), 145–149 (2009).
pubmed: 19682954 doi: 10.1016/j.yebeh.2009.07.020
Weber, B. et al. Material-specific memory processing is related to language dominance. Neuroimage 37(2), 611–617 (2007).
pubmed: 17574870 doi: 10.1016/j.neuroimage.2007.05.022
Schmid, E. et al. Diagnostic accuracy of functional magnetic resonance imaging, Wada test, magnetoencephalography, and functional transcranial Doppler sonography for memory and language outcome after epilepsy surgery: a systematic review. Epilepsia 59(12), 2305–2317 (2018).
pubmed: 30374948 doi: 10.1111/epi.14588
Helmstaedter, C. Cognitive outcomes of different surgical approaches in temporal lobe epilepsy. Epileptic Disord. 15(3), 221–239 (2013).
pubmed: 23899718 doi: 10.1684/epd.2013.0587
Rosenow, F. et al. Personalized translational epilepsy research—Novel approaches and future perspectives: part I: clinical and network analysis approaches. Epilepsy Behav. 76, 13–18 (2017).
pubmed: 28917501 doi: 10.1016/j.yebeh.2017.06.041

Auteurs

Nadine Conradi (N)

Department of Neurology, Epilepsy Center Frankfurt Rhine-Main, University Hospital Frankfurt and Goethe University, Schleusenweg 2-16, 60528, Frankfurt am Main, Germany. Nadine.Conradi@kgu.de.
LOEWE Center for Personalized Translational Epilepsy Research (CePTER), Goethe University, Frankfurt am Main, Germany. Nadine.Conradi@kgu.de.

Friederike Rosenberg (F)

Department of Neurology, Epilepsy Center Frankfurt Rhine-Main, University Hospital Frankfurt and Goethe University, Schleusenweg 2-16, 60528, Frankfurt am Main, Germany.

Susanne Knake (S)

LOEWE Center for Personalized Translational Epilepsy Research (CePTER), Goethe University, Frankfurt am Main, Germany.
Department of Neurology, Epilepsy Center Hessen, Philipps-University Marburg, Marburg, Germany.

Louise Biermann (L)

Department of Neurology, Epilepsy Center Hessen, Philipps-University Marburg, Marburg, Germany.

Anja Haag (A)

Department of Neurology, Epilepsy Center Hessen, Philipps-University Marburg, Marburg, Germany.

Iris Gorny (I)

Department of Neurology, Epilepsy Center Hessen, Philipps-University Marburg, Marburg, Germany.

Anke Hermsen (A)

Department of Neurology, Epilepsy Center Frankfurt Rhine-Main, University Hospital Frankfurt and Goethe University, Schleusenweg 2-16, 60528, Frankfurt am Main, Germany.
LOEWE Center for Personalized Translational Epilepsy Research (CePTER), Goethe University, Frankfurt am Main, Germany.

Viola von Podewils (V)

Department of Neurology, University Medicine Greifswald, Greifswald, Germany.

Marion Behrens (M)

Department of Neurology, University Hospital Frankfurt and Goethe University, Frankfurt am Main, Germany.

Marianna Gurschi (M)

Department of Neuroradiology, Philipps-University Marburg, Marburg, Germany.

Richard du Mesnil de Rochemont (R)

Institute of Neuroradiology, University Hospital Frankfurt and Goethe University, Frankfurt am Main, Germany.

Katja Menzler (K)

Department of Neurology, Epilepsy Center Hessen, Philipps-University Marburg, Marburg, Germany.

Sebastian Bauer (S)

Department of Neurology, Epilepsy Center Frankfurt Rhine-Main, University Hospital Frankfurt and Goethe University, Schleusenweg 2-16, 60528, Frankfurt am Main, Germany.
LOEWE Center for Personalized Translational Epilepsy Research (CePTER), Goethe University, Frankfurt am Main, Germany.

Susanne Schubert-Bast (S)

Department of Neurology, Epilepsy Center Frankfurt Rhine-Main, University Hospital Frankfurt and Goethe University, Schleusenweg 2-16, 60528, Frankfurt am Main, Germany.
LOEWE Center for Personalized Translational Epilepsy Research (CePTER), Goethe University, Frankfurt am Main, Germany.
Department of Neuropediatrics, University Hospital Frankfurt and Goethe University, Frankfurt am Main, Germany.

Christopher Nimsky (C)

Department of Neurosurgery, Philipps-University Marburg, Marburg, Germany.

Jürgen Konczalla (J)

Department of Neurosurgery, University Hospital Frankfurt and Goethe University, Frankfurt am Main, Germany.

Felix Rosenow (F)

Department of Neurology, Epilepsy Center Frankfurt Rhine-Main, University Hospital Frankfurt and Goethe University, Schleusenweg 2-16, 60528, Frankfurt am Main, Germany.
LOEWE Center for Personalized Translational Epilepsy Research (CePTER), Goethe University, Frankfurt am Main, Germany.

Adam Strzelczyk (A)

Department of Neurology, Epilepsy Center Frankfurt Rhine-Main, University Hospital Frankfurt and Goethe University, Schleusenweg 2-16, 60528, Frankfurt am Main, Germany.
LOEWE Center for Personalized Translational Epilepsy Research (CePTER), Goethe University, Frankfurt am Main, Germany.
Department of Neurology, Epilepsy Center Hessen, Philipps-University Marburg, Marburg, Germany.

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