Sui Yanan, Tian Ye, Ko Wai Kin Daniel, Wang Zhiyan, Jia Fumin, Horn Andreas, De Ridder Dirk, Choi Ki Sueng, Bari Ausaf A, Wang Shouyan, Hamani Clement, Baker Kenneth B, Machado Andre G, Aziz Tipu Z, Fonoff Erich Talamoni, Kühn Andrea A, Bergman Hagai, Sanger Terence, Liu Hesheng, Haber Suzanne N, Li Luming
National Engineering Laboratory for Neuromodulation, Tsinghua University, Beijing, China.
Charité, Department of Neurology, Movement Disorders and Neuromodulation Unit, University Medicine Berlin, Berlin, Germany.
Front Neurol. 2021 Jan 28;11:597451. doi: 10.3389/fneur.2020.597451. eCollection 2020.
Deep brain stimulation (DBS) is one of the most important clinical therapies for neurological disorders. DBS also has great potential to become a great tool for clinical neuroscience research. Recently, the National Engineering Laboratory for Neuromodulation at Tsinghua University held an international Deep Brain Stimulation Initiative workshop to discuss the cutting-edge technological achievements and clinical applications of DBS. We specifically addressed new clinical approaches and challenges in DBS for movement disorders (Parkinson's disease and dystonia), clinical application toward neurorehabilitation for stroke, and the progress and challenges toward DBS for neuropsychiatric disorders. This review highlighted key developments in (1) neuroimaging, with advancements in 3-Tesla magnetic resonance imaging DBS compatibility for exploration of brain network mechanisms; (2) novel DBS recording capabilities for uncovering disease pathophysiology; and (3) overcoming global healthcare burdens with online-based DBS programming technology for connecting patient communities. The successful event marks a milestone for global collaborative opportunities in clinical development of neuromodulation to treat major neurological disorders.
深部脑刺激(DBS)是治疗神经系统疾病最重要的临床疗法之一。DBS也极有可能成为临床神经科学研究的重要工具。最近,清华大学神经调控国家工程实验室举办了一场国际深部脑刺激倡议研讨会,以探讨DBS的前沿技术成果和临床应用。我们特别讨论了DBS治疗运动障碍(帕金森病和肌张力障碍)的新临床方法和挑战、DBS用于中风神经康复的临床应用,以及DBS治疗神经精神疾病的进展和挑战。本综述重点介绍了以下方面的关键进展:(1)神经影像学,3特斯拉磁共振成像在DBS兼容性方面取得进展,用于探索脑网络机制;(2)用于揭示疾病病理生理学的新型DBS记录能力;(3)通过基于网络的DBS编程技术连接患者群体,以克服全球医疗负担。此次成功的活动标志着神经调节临床开发领域在治疗主要神经系统疾病方面开展全球合作的一个里程碑。