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用于内部起搏运动脑机接口的数据驱动换能器设计与识别:综述

Data-Driven Transducer Design and Identification for Internally-Paced Motor Brain Computer Interfaces: A Review.

作者信息

Schaeffer Marie-Caroline, Aksenova Tetiana

机构信息

CEA, LETI, CLINATEC, MINATEC Campus, Université Grenoble Alpes, Grenoble, France.

出版信息

Front Neurosci. 2018 Aug 15;12:540. doi: 10.3389/fnins.2018.00540. eCollection 2018.

Abstract

Brain-Computer Interfaces (BCIs) are systems that establish a direct communication pathway between the users' brain activity and external effectors. They offer the potential to improve the quality of life of motor-impaired patients. Motor BCIs aim to permit severely motor-impaired users to regain limb mobility by controlling orthoses or prostheses. In particular, motor BCI systems benefit patients if the decoded actions reflect the users' intentions with an accuracy that enables them to efficiently interact with their environment. One of the main challenges of BCI systems is to adapt the BCI's signal translation blocks to the user to reach a high decoding accuracy. This paper will review the literature of data-driven and user-specific transducer design and identification approaches and it focuses on internally-paced motor BCIs. In particular, continuous kinematic biomimetic and mental-task decoders are reviewed. Furthermore, static and dynamic decoding approaches, linear and non-linear decoding, offline and real-time identification algorithms are considered. The current progress and challenges related to the design of clinical-compatible motor BCI transducers are additionally discussed.

摘要

脑机接口(BCIs)是在用户大脑活动与外部效应器之间建立直接通信路径的系统。它们具有改善运动功能受损患者生活质量的潜力。运动脑机接口旨在让严重运动功能受损的用户通过控制矫形器或假肢来恢复肢体活动能力。特别是,如果解码动作能够准确反映用户意图,使他们能够有效地与环境互动,运动脑机接口系统将使患者受益。脑机接口系统的主要挑战之一是使脑机接口的信号转换模块适应用户,以实现高解码精度。本文将综述数据驱动和针对用户的传感器设计与识别方法的文献,并重点关注内部节奏的运动脑机接口。特别是,对连续运动学仿生和心理任务解码器进行了综述。此外,还考虑了静态和动态解码方法、线性和非线性解码、离线和实时识别算法。还讨论了与临床兼容的运动脑机接口传感器设计相关的当前进展和挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0ed/6104172/39d64dcb4cee/fnins-12-00540-g0001.jpg

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