Brain-computer interface in critical care and rehabilitation.

IF 1.7 Q3 CRITICAL CARE MEDICINE Acute and Critical Care Pub Date : 2024-02-01 Epub Date: 2024-01-12 DOI:10.4266/acc.2023.01382
Eunseo Oh, Seyoung Shin, Sung-Phil Kim
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Abstract

This comprehensive review explores the broad landscape of brain-computer interface (BCI) technology and its potential use in intensive care units (ICUs), particularly for patients with motor impairments such as quadriplegia or severe brain injury. By employing brain signals from various sensing techniques, BCIs offer enhanced communication and motor rehabilitation strategies for patients. This review underscores the concept and efficacy of noninvasive, electroencephalogram-based BCIs in facilitating both communicative interactions and motor function recovery. Additionally, it highlights the current research gap in intuitive "stop" mechanisms within motor rehabilitation protocols, emphasizing the need for advancements that prioritize patient safety and individualized responsiveness. Furthermore, it advocates for more focused research that considers the unique requirements of ICU environments to address the challenges arising from patient variability, fatigue, and limited applicability of current BCI systems outside of experimental settings.

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重症监护和康复中的脑机接口。
这篇综合评论探讨了脑机接口(BCI)技术的广泛前景及其在重症监护病房(ICU)中的潜在应用,尤其是对四肢瘫痪或严重脑损伤等运动障碍患者的应用。通过采用来自各种传感技术的大脑信号,BCI 为患者提供了增强的交流和运动康复策略。本综述强调了基于脑电图的无创生物识别技术在促进交流互动和运动功能恢复方面的概念和功效。此外,它还强调了目前在运动康复方案中直观 "停止 "机制方面的研究空白,强调了优先考虑患者安全和个性化响应的进步需求。此外,该研究还提倡进行更有针对性的研究,考虑重症监护室环境的独特要求,以解决因患者的可变性、疲劳以及当前 BCI 系统在实验环境之外的有限适用性而带来的挑战。
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来源期刊
Acute and Critical Care
Acute and Critical Care CRITICAL CARE MEDICINE-
CiteScore
2.80
自引率
11.10%
发文量
87
审稿时长
12 weeks
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