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Research progress on clinical application of transcranial magnetic stimulation in epilepsy |
WANG Linxiao ZHANG Qing ZHOU Xianju |
Laboratory of Neurological Diseases, Changzhou Second People′s Hospital Affiliated to Nanjing Medical University, Jiangsu Province, Changzhou 213003, China |
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Abstract Epilepsy is one of the common diseases of the central nervous system, which seriously endangers human health. About 30% of patients with epilepsy can not be effectively controled through the treatment of existing anti-epileptic drugs, so neuromodulation methods such as vagus nerve stimulation, deep brain stimulation and transcranial magnetic stimulation have become the focus of attention. Based on the multiple advantages of non-invasive, painless, effective, and convenient operation, transcranial magnetic stimulation is gradually applied to the diagnosis and treatment of patients with epilepsy. This article reviews the content of transcranial magnetic stimulation in the diagnosis and treatment of epilepsy, summarizes its latest research progress, and points out its shortcomings and defects, and develops an optimized and personalized transcranial magnetic stimulation solution for the diagnosis and treatment of epilepsy in the future.
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[1] Sadr SS,Javanbakht J,Javidan AN,et al. Descriptive epidemiology:prevalence,incidence,sociodemographic factors,socioeconomic domains,and quality of life of epilepsy:an update and systematic review [J]. Arch Med Sci,2018,14(4):717-724.
[2] Brodie MJ. Pharmacological Treatment of Drug-Resistant Epilepsy in Adults:a Practical Guide [J]. Curr Neurol Neurosci Rep,2016,16(9):82.
[3] Habib S,Hamid U,Jamil A,et al. Transcranial Magnetic Stimulation as a Therapeutic Option for Neurologic and Psychiatric Illnesses [J]. Cureus,2018,10(10):e3456.
[4] Valero-Cabre A,Amengual JL,Stengel C,et al. Transcranial magnetic stimulation in basic and clinical neuroscience:A comprehensive review of fundamental principles and novel insights [J]. Neurosci Biobehav Rev,2017, 83:381-404.
[5] Sueri C,Gasparini S,Balestrini S,et al. Diagnostic Biomarkers of Epilepsy [J]. Curr Pharm Biotechnol,2018,19(6):440-450.
[6] de Goede AA,Ter Braack EM,van Putten M. Single and paired pulse transcranial magnetic stimulation in drug naive epilepsy [J]. Clin Neurophysiol,2016,127(9):3140-3155.
[7] de Goede AA,ter Braack EM,van Putten M. Accurate Coil Positioning is Important for Single and Paired Pulse TMS on the Subject Level [J]. Brain Topogr,2018, 31(6):917-930.
[8] Goldsworthy MR,Hordacre B,Ridding MC. Minimum number of trials required for within- and between-session reliability of TMS measures of corticospinal excitability [J]. Neuroscience,2016,320:205-209.
[9] Bauer PR,de Goede AA,Stern WM,et al. Long-interval intracortical inhibition as biomarker for epilepsy:a transcranial magnetic stimulation study [J]. Brain,2018,141(2):409-421.
[10] Kimiskidis VK,Tsimpiris A,Ryvlin P,et al. TMS combined with EEG in genetic generalized epilepsy:A phase II diagnostic accuracy study [J]. Clin Neurophysiol,2017,128(2):367-381.
[11] Hallett M,Di Iorio R,Rossini PM,et al. Contribution of transcranial magnetic stimulation to assessment of brain connectivity and networks [J]. Clin Neurophysiol,2017, 128(11):2125-2139.
[12] Shafi MM,Whitfield-Gabrieli S,Chu CJ,et al. A Multimodal Imaging- and Stimulation-based Method of Evaluating Connectivity-related Brain Excitability in Patients with Epilepsy [J]. J Vis Exp,2016(117).doi:10.3791/53727.
[13] Kaye HL,Gersner R,Boes AD,et al. Persistent uncrossed corticospinal connections in patients with intractable focal epilepsy [J]. Epilepsy Behav,2017,75:66-71.
[14] Allen CH,Kluger BM,and Buard I. Safety of Transcranial Magnetic Stimulation in Children: A Systematic Review of the Literature [J]. Pediatr Neurol,2017,68:3-17.
[15] Koudijs SM,Leijten FS,Ramsey NF,et al. Lateralization of motor innervation in children with intractable focal epilepsy-a TMS and fMRI study [J]. Epilepsy Res,2010, 90(1/2):140-150.
[16] Babajani-Feremi A,Narayana S,Rezaie R,et al. Language mapping using high gamma electrocorticography,fMRI,and TMS versus electrocortical stimulation [J]. Clin Neurophysiol,2016,127(3):1822-1836.
[17] de Graaf TA,van den Hurk J,Duecker F,et al. Where Are the fMRI Correlates of Phosphene Perception? [J]. Front Neurosci,2018,12:883.
[18] Cooper YA,Pianka ST,Alotaibi NM,et al. Repetitive transcranial magnetic stimulation for the treatment of drug-resistant epilepsy:A systematic review and individual participant data meta-analysis of real-world evidence [J]. Epilepsia Open,2018,3(1):55-65.
[19] Ebert U,Ziemann U. Altered seizure susceptibility after high-frequency transcranial magnetic stimulation in rats [J]. Neurosci Lett,1999,273(3):155-158.
[20] Lin CY,Li K,Franic L,et al. Frequency-dependent effects of contralateral repetitive transcranial magnetic stimulation on penicillin-induced seizures [J]. Brain Res,2014,1581:103-116.
[21] Rotenberg A,Bae EH,Takeoka M,et al. Repetitive transcranial magnetic stimulation in the treatment of epilepsia partialis continua [J]. Epilepsy Behav,2009,14(1):253-257.
[22] 王顺先,许可.不同强度低频重复经颅磁刺激预处理对癫痫大鼠痫性发作的影响[J].中华临床医师杂志,2013,7(9):3884-3887.
[23] Sun W,Mao W,Meng X,et al. Low-frequency repetitive transcranial magnetic stimulation for the treatment of refractory partial epilepsy:a controlled clinical study [J]. Epilepsia,2012,53(10):1782-1789.
[24] Pereira LS,Muller VT,da Mota Gomes M,et al. Safety of repetitive transcranial magnetic stimulation in patients with epilepsy:A systematic review [J]. Epilepsy Behav,2016,57(Pt A):167-176.
[25] Joo EY,Han SJ,Chung SH,et al. Antiepileptic effects of low-frequency repetitive transcranial magnetic stimulation by different stimulation durations and locations [J]. Clin Neurophysiol,2007,118(3):702-708.
[26] Lefaucheur JP,Andre-Obadia N,Antal A,et al. Evidence-based guidelines on the therapeutic use of repetitive transcranial magnetic stimulation (rTMS) [J]. Clin Neurophysiol,2014,125(11):2150-2206.
[27] Gersner R,Dhamne SC,Zangen A,et al. Bursts of high-frequency repetitive transcranial magnetic stimulation (rTMS),together with lorazepam,suppress seizures in a rat kainate status epilepticus model [J]. Epilepsy Behav,2016,62:136-139.
[28] Cantello R,Rossi S,Varrasi C,et al. Slow repetitive TMS for drug-resistant epilepsy:clinical and EEG findings of a placebo-controlled trial [J]. Epilepsia,2007,48(2):366-374. |
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