Metabolic phenotyping of hand automatisms in mesial temporal lobe epilepsy

Celiker Uslu S, Yuksel B, Tekin B, Sariahmetoglu H, Atakli D. Cognitive impairment and drug responsiveness in mesial temporal lobe epilepsy. Epilepsy Behav E&B. 2019;90:162–7.

Article  Google Scholar 

Marks WJ, Laxer KD. Semiology of temporal lobe seizures: value in lateralizing the seizure focus. Epilepsia. 1998;39:721–6.

PubMed  Article  Google Scholar 

Kotagal P. Significance of dystonic posturing with unilateral automatisms. Arch Neurol. 1999;56:912–3.

CAS  PubMed  Article  Google Scholar 

Rémi J, Wagner P, O’Dwyer R, Silva Cunha JP, Vollmar C, Krotofil I, et al. Ictal head turning in frontal and temporal lobe epilepsy. Epilepsia. 2011;52:1447–51.

PubMed  Article  Google Scholar 

Aupy J, Noviawaty I, Krishnan B, Suwankpakdee P, Bulacio J, Gonzalez-Martinez J, et al. Insulo-opercular cortex generates oroalimentary automatisms in temporal seizures. Epilepsia. 2018;59:583–94.

PubMed  Article  Google Scholar 

Wang Y, Wang X, Mo JJ, Sang L, Zhao BT, Zhang C, et al. Symptomatogenic zone and network of oroalimentary automatisms in mesial temporal lobe epilepsy. Epilepsia. 2019;60:1150–9.

PubMed  Google Scholar 

Williamson PD, Thadani VM, French JA, Darcey TM, Mattson RH, Spencer SS, et al. Medial temporal lobe epilepsy: videotape analysis of objective clinical seizure characteristics. Epilepsia. 1998;39:1182–8.

CAS  PubMed  Article  Google Scholar 

Fogarasi A, Tuxhorn I, Janszky J, Janszky I, Rásonyi G, Kelemen A, et al. Age-dependent seizure semiology in temporal lobe epilepsy. Epilepsia. 2007;48:1697–702.

PubMed  Article  Google Scholar 

Lüders H, Acharya J, Baumgartner C, Benbadis S, Bleasel A, Burgess R, et al. Semiological seizure classification. Epilepsia. 1998;39:1006–13.

PubMed  Article  Google Scholar 

Noachtar S, Peters AS. Semiology of epileptic seizures: a critical review. Epilepsy Behav E&B. 2009;15:2–9.

Article  Google Scholar 

Kotagal P, Lüders H, Morris HH, Dinner DS, Wyllie E, Godoy J, et al. Dystonic posturing in complex partial seizures of temporal lobe onset: a new lateralizing sign. Neurology. 1989;39:196–201.

CAS  PubMed  Article  Google Scholar 

Silva Cunha JP, Rémi J, Vollmar C, Fernandes JM, Gonzalez-Victores JA, Noachtar S. Upper limb automatisms differ quantitatively in temporal and frontal lobe epilepsies. Epilepsy Behav E&B. 2013;27:404–8.

Article  Google Scholar 

Williamson PD, Spencer SS. Clinical and EEG features of complex partial seizures of extratemporal origin. Epilepsia. 1986;27:S46-63.

PubMed  Article  Google Scholar 

Sarikaya I. PET studies in epilepsy. Am J Nucl Med Mol Imaging. 2015;5:416–30.

CAS  PubMed  PubMed Central  Google Scholar 

Guedj E, McGonigal A, Vaugier L, Mundler O, Bartolomei F. Metabolic brain PET pattern underlying hyperkinetic seizures. Epilepsy Res. 2012;101:237–45.

PubMed  Article  Google Scholar 

Montaz-Rosset MS, Scholly J, Voulleminot P, Severac F, Hirsch E, Valenti-Hirsch MP, et al. Comparison of functional deficit zone defined by FDG PET to the epileptogenic zones described in stereo-electroencephalograph in drug-resistant epileptic patients treated by surgery. Clin Nucl Med. 2019;44:526–31.

PubMed  Article  Google Scholar 

Zhao B, Seguin C, Ai L, Sun T, Hu W, Zhang C, et al. Aberrant metabolic patterns networks in insular epilepsy. Front Neurol. 2020;11:605256.

PubMed  PubMed Central  Article  Google Scholar 

Wieser HG, Blume WT, Fish D, Goldensohn E, Hufnagel A, King D, et al. ILAE Commission Report. Proposal for a new classification of outcome with respect to epileptic seizures following epilepsy surgery. Epilepsia. 2001;42:282–6.

CAS  PubMed  Article  Google Scholar 

Mo JJ, Hu WH, Zhang C, Wang X, Liu C, Zhao BT, et al. Value of stereo-electroencephalogram in reoperation of patients with pharmacoresistant epilepsy: a single center, retrospective study. Br J Neurosurg. 2018;32:663–70.

PubMed  Article  Google Scholar 

Mo J, Liu Z, Sun K, Ma Y, Hu W, Zhang C, et al. Automated detection of hippocampal sclerosis using clinically empirical and radiomics features. Epilepsia. 2019;60:2519–29.

PubMed  Article  Google Scholar 

Mo J, Wei W, Liu Z, Zhang J, Ma Y, Sang L, et al. Neuroimaging phenotyping and assessment of structural-metabolic-electrophysiological alterations in the temporal neocortex of focal cortical dysplasia IIIa. J Magn Reson Imaging JMRI. 2021;54:925–35.

PubMed  Article  Google Scholar 

Mo J, Zhao B, Adler S, Zhang J, Shao X, Ma Y, et al. Quantitative assessment of structural and functional changes in temporal lobe epilepsy with hippocampal sclerosis. Quant Imaging Med Surg. 2021;11:1782–95.

PubMed  PubMed Central  Article  Google Scholar 

Mo J, Zhang J, Hu W, Luo F, Zhang K. Whole-brain morphological alterations associated with trigeminal neuralgia. J Headache Pain. 2021;22:95.

PubMed  PubMed Central  Article  Google Scholar 

Zhang H, Mo J, Jiang H, Li Z, Hu W, Zhang C, et al. Deep learning model for the automated detection and histopathological prediction of meningioma. Neuroinformatics. 2021;19:393–402.

PubMed  Article  Google Scholar 

Friston KJ, Frith CD, Liddle PF, Dolan RJ, Lammertsma AA, Frackowiak RS. The relationship between global and local changes in PET scans. J Cereb Blood Flow Metabol Off J Int Soc Cereb Blood Flow Metabol. 1990;10:458–66.

CAS  Article  Google Scholar 

Gonzalez-Escamilla G, Lange C, Teipel S, Buchert R, Grothe MJ. PETPVE12: an SPM toolbox for partial volume effects correction in brain PET—application to amyloid imaging with AV45-PET. Neuroimage. 2017;147:669–77.

PubMed  Article  Google Scholar 

Mo JJ, Zhang JG, Li WL, Chen C, Zhou NJ, Hu WH, et al. Clinical value of machine learning in the automated detection of focal cortical dysplasia using quantitative multimodal surface-based features. Front Neurosci. 2018;12:1008.

PubMed  Article  Google Scholar 

Wang Y, Wang X, Sang L, Zhang C, Zhao BT, Mo JJ, et al. Network of ictal head version in mesial temporal lobe epilepsy. Brain Behav. 2020;10:e01820.

PubMed  PubMed Central  Google Scholar 

Rolls ET, Huang CC, Lin CP, Feng J, Joliot M. Automated anatomical labelling atlas 3. Neuroimage. 2020;206: 116189.

PubMed  Article  Google Scholar 

Galovic M, van Dooren VQH, Postma TS, Vos SB, Caciagli L, Borzì G, et al. Progressive cortical thinning in patients with focal epilepsy. JAMA Neurol. 2019;76:1230–9.

PubMed  PubMed Central  Article  Google Scholar 

Dupont S, Samson Y, Nguyen-Michel VH, Zavanone C, Navarro V, Baulac M, et al. Lateralizing value of semiology in medial temporal lobe epilepsy. Acta Neurol Scand. 2015;132:401–9.

CAS  PubMed  Article  Google Scholar 

Chassoux F, Artiges E, Semah F, Laurent A, Landré E, Turak B, et al. F-FDG-PET patterns of surgical success and failure in mesial temporal lobe epilepsy. Neurology. 2017;88:1045–53.

CAS  PubMed  Article  Google Scholar 

Guedj E, Aubert S, McGonigal A, Mundler O, Bartolomei F. Déjà-vu in temporal lobe epilepsy: metabolic pattern of cortical involvement in patients with normal brain MRI. Neuropsychologia. 2010;48:2174–81.

PubMed  Article  Google Scholar 

Chassoux F, Semah F, Bouilleret V, Landre E, Devaux B, Turak B, et al. Metabolic changes and electro-clinical patterns in mesio-temporal lobe epilepsy: a correlative study. Brain J Neurol. 2004;127:164–74.

Article  Google Scholar 

Salanova V, Morris HH, Van Ness P, Kotagal P, Wyllie E, Lüders H. Frontal lobe seizures: electroclinical syndromes. Epilepsia. 1995;36:16–24.

CAS  PubMed  Article  Google Scholar 

Khasiyev F, Tezer FI, Saygi S. Lower limb automatism in surgically treated temporal lobe epilepsy patients: clinical and electrophysiological features. J Clin Neurosci Off J Neurosurg Soc Australas. 2019;69:51–4.

Google Scholar 

Lim SH, Dinner DS, Pillay PK, Lüders H, Morris HH, Klem G, et al. Functional anatomy of the human supplementary sensorimotor area: results of extraoperative electrical stimulation. Electroencephalogr Clin Neurophysiol. 1994;91:179–93.

CAS  PubMed  Article  Google Scholar 

Cona G, Semenza C. Supplementary motor area as key structure for domain-general sequence processing: a unified account. Neurosci Biobehav Rev. 2017;72:28–42.

PubMed  Article  Google Scholar 

Laich E, Kuzniecky R, Mountz J, Liu HG, Gilliam F, Bebin M, et al. Supplementary sensorimotor area epilepsy. Seizure localization, cortical propagation and subcortical activation pathways using ictal SPECT. Brain J Neurol. 1997;120:855–64.

Article  Google Scholar 

Luppino G, Matelli M, Rizzolatti G. Cortico-cortical connections of two electrophysiologically identified arm representations in the mesial agranular frontal cortex. Exp Brain Res. 1990;82:214–8.

CAS  PubMed  Article  Google Scholar 

Rouiller EM, Babalian A, Kazennikov O, Moret V, Yu XH, Wiesendanger M. Transcallosal connections of the distal forelimb representations of the primary and supplementary motor cortical areas in macaque monkeys. Exp Brain Res. 1994;102:227–43.

CAS  PubMed  Article  Google Scholar 

Procyk E, Wilson CR, Stoll FM, Faraut MC, Petrides M, Amiez C. Midcingulate motor map and feedback detection: converging data from humans and monkeys. Cereb Cortex (New York, 1991). 2016;26:467–76.

Google Scholar 

Dum RP, Strick PL. The origin of corticospinal projections from the premotor areas in the frontal lobe. J Neurosci Off J Soc Neurosci. 1991;11:667–89.

CAS  Article  Googl

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