{"title":"单脉冲经颅诱发电位在神经和精神科临床实践中的应用:叙述性综述。","authors":"Hilla Fogel, Noa Zifman, Mark Hallett","doi":"10.3390/neurolint16060106","DOIUrl":null,"url":null,"abstract":"<p><p><i>Background:</i> The utility of single-pulse TMS (transcranial magnetic stimulation)-evoked EEG (electroencephalograph) potentials (TEPs) has been extensively studied in the past three decades. TEPs have been shown to provide insights into features of cortical excitability and connectivity, reflecting mechanisms of excitatory/inhibitory balance, in various neurological and psychiatric conditions. In the present study, we sought to review and summarize the most studied neurological and psychiatric clinical indications utilizing single-pulse TEP and describe its promise as an informative novel tool for the evaluation of brain physiology. <i>Methods:</i> A thorough search of PubMed, Embase, and Google Scholar for original research utilizing single-pulse TMS-EEG and the measurement of TEP was conducted. Our review focused on the indications and outcomes most clinically relevant, commonly studied, and well-supported scientifically. <i>Results:</i> We included a total of 55 publications and summarized them by clinical application. We categorized these publications into seven sub-sections: healthy aging, Alzheimer's disease (AD), disorders of consciousness (DOCs), stroke rehabilitation and recovery, major depressive disorder (MDD), Parkinson's disease (PD), as well as prediction and monitoring of treatment response. <i>Conclusions:</i> TEP is a useful measurement of mechanisms underlying neuronal networks. It may be utilized in several clinical applications. Its most prominent uses include monitoring of consciousness levels in DOCs, monitoring and prediction of treatment response in MDD, and diagnosis of AD. Additional applications including the monitoring of stroke rehabilitation and recovery, as well as a diagnostic aid for PD, have also shown encouraging results but require further evidence from randomized controlled trials (RCTs).</p>","PeriodicalId":19130,"journal":{"name":"Neurology International","volume":"16 6","pages":"1421-1437"},"PeriodicalIF":3.2000,"publicationDate":"2024-11-11","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Utilization of Single-Pulse Transcranial-Evoked Potentials in Neurological and Psychiatric Clinical Practice: A Narrative Review.\",\"authors\":\"Hilla Fogel, Noa Zifman, Mark Hallett\",\"doi\":\"10.3390/neurolint16060106\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p><i>Background:</i> The utility of single-pulse TMS (transcranial magnetic stimulation)-evoked EEG (electroencephalograph) potentials (TEPs) has been extensively studied in the past three decades. TEPs have been shown to provide insights into features of cortical excitability and connectivity, reflecting mechanisms of excitatory/inhibitory balance, in various neurological and psychiatric conditions. In the present study, we sought to review and summarize the most studied neurological and psychiatric clinical indications utilizing single-pulse TEP and describe its promise as an informative novel tool for the evaluation of brain physiology. <i>Methods:</i> A thorough search of PubMed, Embase, and Google Scholar for original research utilizing single-pulse TMS-EEG and the measurement of TEP was conducted. Our review focused on the indications and outcomes most clinically relevant, commonly studied, and well-supported scientifically. <i>Results:</i> We included a total of 55 publications and summarized them by clinical application. We categorized these publications into seven sub-sections: healthy aging, Alzheimer's disease (AD), disorders of consciousness (DOCs), stroke rehabilitation and recovery, major depressive disorder (MDD), Parkinson's disease (PD), as well as prediction and monitoring of treatment response. <i>Conclusions:</i> TEP is a useful measurement of mechanisms underlying neuronal networks. It may be utilized in several clinical applications. Its most prominent uses include monitoring of consciousness levels in DOCs, monitoring and prediction of treatment response in MDD, and diagnosis of AD. 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引用次数: 0
摘要
背景:在过去的三十年里,人们对单脉冲 TMS(经颅磁刺激)诱发的脑电图电位(TEPs)的效用进行了广泛的研究。研究表明,TEPs 可以帮助人们深入了解大脑皮层的兴奋性和连通性特征,反映出各种神经和精神疾病的兴奋/抑制平衡机制。在本研究中,我们试图回顾和总结利用单脉冲 TEP 研究最多的神经和精神疾病临床适应症,并描述其作为评估大脑生理学的信息新工具的前景。研究方法在 PubMed、Embase 和 Google Scholar 上对利用单脉冲 TMS-EEG 和 TEP 测量的原始研究进行了全面搜索。我们的综述重点关注与临床最相关、研究最普遍、科学依据最充分的适应症和结果。结果:我们共收录了 55 篇出版物,并按临床应用进行了总结。我们将这些出版物分为七个小部分:健康老龄化、阿尔茨海默病 (AD)、意识障碍 (DOC)、中风康复和恢复、重度抑郁障碍 (MDD)、帕金森病 (PD),以及治疗反应的预测和监测。结论TEP 是对神经元网络基础机制的有效测量。它可用于多种临床应用。其最突出的用途包括监测 DOC 的意识水平、监测和预测 MDD 的治疗反应以及诊断 AD。其他应用包括监测中风康复和恢复,以及辅助诊断帕金森病,这些应用也取得了令人鼓舞的结果,但还需要随机对照试验(RCT)的进一步证明。
Utilization of Single-Pulse Transcranial-Evoked Potentials in Neurological and Psychiatric Clinical Practice: A Narrative Review.
Background: The utility of single-pulse TMS (transcranial magnetic stimulation)-evoked EEG (electroencephalograph) potentials (TEPs) has been extensively studied in the past three decades. TEPs have been shown to provide insights into features of cortical excitability and connectivity, reflecting mechanisms of excitatory/inhibitory balance, in various neurological and psychiatric conditions. In the present study, we sought to review and summarize the most studied neurological and psychiatric clinical indications utilizing single-pulse TEP and describe its promise as an informative novel tool for the evaluation of brain physiology. Methods: A thorough search of PubMed, Embase, and Google Scholar for original research utilizing single-pulse TMS-EEG and the measurement of TEP was conducted. Our review focused on the indications and outcomes most clinically relevant, commonly studied, and well-supported scientifically. Results: We included a total of 55 publications and summarized them by clinical application. We categorized these publications into seven sub-sections: healthy aging, Alzheimer's disease (AD), disorders of consciousness (DOCs), stroke rehabilitation and recovery, major depressive disorder (MDD), Parkinson's disease (PD), as well as prediction and monitoring of treatment response. Conclusions: TEP is a useful measurement of mechanisms underlying neuronal networks. It may be utilized in several clinical applications. Its most prominent uses include monitoring of consciousness levels in DOCs, monitoring and prediction of treatment response in MDD, and diagnosis of AD. Additional applications including the monitoring of stroke rehabilitation and recovery, as well as a diagnostic aid for PD, have also shown encouraging results but require further evidence from randomized controlled trials (RCTs).