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Brain-computer interface for the communication of acute patients: a feasibility study and a randomized controlled trial comparing performance with healthy participants and a traditional assistive device

机译:用于急性患者交流的脑机接口:一项可行性研究和一项随机对照试验,将健康参与者的表现与传统辅助设备进行了比较

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摘要

This study presents the outcome of the 5-year-long French national project aiming at the development and evaluation of an effective brain-computer interface (BCI) prototype for the communication of patients with acute motor disabilities. It presents results from two clinical studies: a clinical feasibility study carried out partly in the intensive care unit (ICU) and the clinical evaluation of an innovative BCI prototype. In this second study the BCI performance of patients was compared to that of healthy volunteers and benchmarked against a traditional assistive technology (scanning device). Altogether, 15 of 22 patients could control the BCI system with an accuracy significantly above the chance level. The bit-rate of the traditional assistive technology proved superior, even though an equivalent bit-rate could be achieved using personalized parameters for the BCI. Fatigue was found to be the primary limitation factor, which was particularly true for patients and during the use of the BCI. A classifier based on Riemannian geometry was found to contribute significantly to the accuracy of the BCI system. This study demonstrates that the communication of patients with severe motor impairments can be effectively restored using an adequately designed BCI system. All electrophysiological data are freely available at the Physionet.org platform.
机译:这项研究提出了为期5年的法国国家项目的成果,该项目旨在开发和评估有效的脑机接口(BCI)原型,用于与急性运动障碍患者进行沟通。它提供了两项临床研究的结果:部分在重症监护病房(ICU)中进行的临床可行性研究,以及对BCI创新原型的临床评估。在第二项研究中,将患者的BCI表现与健康志愿者的表现进行了比较,并以传统的辅助技术(扫描设备)为基准。一共有22名患者中的15名可以控制BCI系统,其准确性明显高于机会水平。即使使用BCI的个性化参数可以实现等效的比特率,传统辅助技术的比特率也被证明是优越的。发现疲劳是主要的限制因素,对于患者和使用BCI期间尤其如此。发现基于黎曼几何的分类器对BCI系统的准确性有很大贡献。这项研究表明,使用适当设计的BCI系统可以有效地恢复严重运动障碍患者的沟通。所有电生理数据均可在Physionet.org平台上免费获得。

著录项

  • 来源
    《Brain-Computer Interfaces》 |2016年第4期|197-215|共19页
  • 作者单位

    INSERM, Centre d'Investigation Clinique et d'Innovation technologique (CIC-IT), UMR805, Garches, France,INSERM, Equipes Therapeutiques innovantes et Technologies appliquees aux troubles neuromoteurs, U. 1179, Garches, France,Hopital Raymond Poincare, APHP, Garches, France,Mensia Technologies SA, Paris, France;

    Hopital Raymond Poincare, APHP, Garches, France;

    INSERM, Centre d'Investigation Clinique et d'Innovation technologique (CIC-IT), UMR805, Garches, France,INSERM, Equipes Therapeutiques innovantes et Technologies appliquees aux troubles neuromoteurs, U. 1179, Garches, France,Hopital Raymond Poincare, APHP, Garches, France;

    GIPSA-Lab, CNRS, University of Grenoble-Alpes, Grenoble Institute of Technology, Grenoble, France;

    GIPSA-Lab, CNRS, University of Grenoble-Alpes, Grenoble Institute of Technology, Grenoble, France;

    INSERM, Centre d'Investigation Clinique et d'Innovation technologique (CIC-IT), UMR805, Garches, France,INSERM, Equipes Therapeutiques innovantes et Technologies appliquees aux troubles neuromoteurs, U. 1179, Garches, France,Hopital Raymond Poincare, APHP, Garches, France;

    Department DTBS, CEA/LETI, Grenoble, France;

    DIXI Microtechniques Medical, Besancon, France;

    Davidson Consulting, Rennes, France;

    INSERM, Equipes Therapeutiques innovantes et Technologies appliquees aux troubles neuromoteurs, U. 1179, Garches, France,Hopital Raymond Poincare, APHP, Garches, France;

    Hopital Raymond Poincare, APHP, Garches, France;

    INSERM, Centre d'Investigation Clinique et d'Innovation technologique (CIC-IT), UMR805, Garches, France;

    INSERM, Centre d'Investigation Clinique et d'Innovation technologique (CIC-IT), UMR805, Garches, France,INSERM, Equipes Therapeutiques innovantes et Technologies appliquees aux troubles neuromoteurs, U. 1179, Garches, France,Hopital Raymond Poincare, APHP, Garches, France;

    INSERM, Centre d'Investigation Clinique et d'Innovation technologique (CIC-IT), UMR805, Garches, France,INSERM, Equipes Therapeutiques innovantes et Technologies appliquees aux troubles neuromoteurs, U. 1179, Garches, France,Hopital Raymond Poincare, APHP, Garches, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Assistive technology; communication aids; event-related potentials; P300 speller; electroencephalography; Riemannian geometry;

    机译:辅助技术;通讯工具;事件相关的潜力;P300拼写器;脑电图黎曼几何;

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