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个体化神经调控治疗癫痫的挑战与融合式未来OA

Personalized neuromodulation in epilepsy:navigating challenges toward a convergent future

中文摘要英文摘要

癫痫治疗中,约三分之一的患者最终发展为药物难治性癫痫,而常规切除性手术的临床应用常受各种因素的严格限制.近年来,神经调控技术逐渐进入临床,为这类患者带来了新的治疗希望,但疗效仍远未臻理想.当前神经调控技术的发展正经历从经验性到数据驱动、再到模型驱动的范式演进,最终将走向数据与模型的深度融合.数据驱动方法以立体脑电等临床多模态数据为基础,从中识别个体癫痫网络的关键节点,模型驱动方法则通过构建"数字孪生脑模型"对干预方案进行模拟与优化.文章系统评述了当前植入式闭环技术的临床证据与个体化实践,同时分析了以时域干涉刺激为代表的无创深部调控技术进展及其多模态协同潜力.在此基础上,重点阐述了数据驱动与模型驱动两种范式的本质区别与互补关系,提出以"数字孪生脑模型"为整合平台,实现从现象发现到机制模拟、再到疗效预测的完整闭环.最后,文章系统梳理了当前在技术、方法学与临床层面存在的挑战,旨在为癫痫个体化精准调控提供理论框架与实践方向.

Approximately one-third of patients with epilepsy develop drug-resistant epilepsy,where conventional resective surgery faces stringent clinical limitations.Recent years have witnessed neuromodulation techniques emerging as clinical alternatives,offering new therapeutic prospects for this population,though suboptimal efficacy persists.Current neuromodulation paradigms are evolving from empirical to data-driven and model-driven approaches,progressing toward their deep integration.Data-driven methods leverage clinical multimodal data,such as stereoelectroencephalography,to identify pivotal nodes within individual epileptic networks,while model-driven approaches simulate and optimize intervention strategies through constructing a"digital twin brain model".This review systematically evaluates clinical evidence and individualized practices of implantable closed-loop technologies,alongside advances in noninvasive deep brain modulation techniques—exemplified by temporal interference stimulation—and their multimodal synergies.Crucially,we delineate the fundamental distinctions and complementary relationships between data-driven and model-driven paradigms,proposing a unified framework centered on"digital twin brain models"to establish a closed loop from empirical observations to mechanistic simulations and treatment outcome projections.Finally,we synthesize current challenges across technological,methodological,and clinical domains,aiming to provide a theoretical foundation and actionable roadmap for personalized precision neuromodulation in epilepsy.

张春青;吴炬

陆军军医大学(第三军医大学)第二附属医院神经外科,全军癫痫病诊治中心,CAAE国家三级综合癫痫中心,重庆陆军军医大学(第三军医大学)第二附属医院神经外科,全军癫痫病诊治中心,CAAE国家三级综合癫痫中心,重庆

医药卫生

神经调控癫痫个体化治疗数字孪生脑

neuromodulationepilepsypersonalized treatmentdigital twin brain

《陆军军医大学学报》 2026 (10)

1289-1297,9

国家自然科学基金面上项目(82571673)重庆市自然科学基金面上项目(CSTB2023NSCQMSX0216)重庆市中青年医学高端人才项目(2024GDRC013) Supported by the General Program of National Natural Science Foundation of China(82571673),the General Project of Natural Science Foundation of Chongqing(CSTB2023NSCQMSX0216)and the Project for Young and Middle-Aged Top Medical Talents of Chongqing(2024GDRC013).

10.16016/j.2097-0927.202603037

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