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适应性深部脑刺激挑战

The adaptive deep brain stimulation challenge.

作者信息

Arlotti Mattia, Rosa Manuela, Marceglia Sara, Barbieri Sergio, Priori Alberto

机构信息

Clinical Center for Neurostimulation, Neurotechnology, and Movement Disorders, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Milan, Italy; Department of Electronics, Computer Science and Systems, University of Bologna, Cesena, Italy.

Clinical Center for Neurostimulation, Neurotechnology, and Movement Disorders, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Milan, Italy.

出版信息

Parkinsonism Relat Disord. 2016 Jul;28:12-7. doi: 10.1016/j.parkreldis.2016.03.020. Epub 2016 Apr 2.

Abstract

Sub-optimal clinical outcomes of conventional deep brain stimulation (cDBS) in treating Parkinson's Disease (PD) have boosted the development of new solutions to improve DBS therapy. Adaptive DBS (aDBS), consisting of closed-loop, real-time changing of stimulation parameters according to the patient's clinical state, promises to achieve this goal and is attracting increasing interest in overcoming all of the challenges posed by its development and adoption. In the design, implementation, and application of aDBS, the choice of the control variable and of the control algorithm represents the core challenge. The proposed approaches, in fact, differ in the choice of the control variable and control policy, in the system design and its technological limits, in the patient's target symptom, and in the surgical procedure needed. Here, we review the current proposals for aDBS systems, focusing on the choice of the control variable and its advantages and drawbacks, thus providing a general overview of the possible pathways for the clinical translation of aDBS with its benefits, limitations and unsolved issues.

摘要

传统深部脑刺激(cDBS)在治疗帕金森病(PD)方面的临床效果欠佳,推动了新的解决方案的发展,以改善DBS治疗。自适应DBS(aDBS)包括根据患者的临床状态进行闭环、实时改变刺激参数,有望实现这一目标,并且在克服其开发和应用所带来的所有挑战方面正吸引着越来越多的关注。在aDBS的设计、实施和应用中,控制变量和控制算法的选择是核心挑战。事实上,所提出的方法在控制变量和控制策略的选择、系统设计及其技术限制、患者的目标症状以及所需的手术程序方面存在差异。在此,我们回顾了当前关于aDBS系统的提议,重点关注控制变量的选择及其优缺点,从而对aDBS临床转化的可能途径及其益处、局限性和未解决的问题进行总体概述。

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