Intracortical brain-computer interfaces for improved motor function: a systematic review.

IF 3.4 3区 医学 Q2 NEUROSCIENCES Reviews in the Neurosciences Pub Date : 2023-10-17 Print Date: 2024-02-26 DOI:10.1515/revneuro-2023-0077
Matthew W Holt, Eric C Robinson, Nathan A Shlobin, Jacob T Hanson, Ismail Bozkurt
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Abstract

In this systematic review, we address the status of intracortical brain-computer interfaces (iBCIs) applied to the motor cortex to improve function in patients with impaired motor ability. This study followed the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) 2020 Guidelines for Systematic Reviews. Risk Of Bias In Non-randomized Studies - of Interventions (ROBINS-I) and the Effective Public Health Practice Project (EPHPP) were used to assess bias and quality. Advances in iBCIs in the last two decades demonstrated the use of iBCI to activate limbs for functional tasks, achieve neural typing for communication, and other applications. However, the inconsistency of performance metrics employed by these studies suggests the need for standardization. Each study was a pilot clinical trial consisting of 1-4, majority male (64.28 %) participants, with most trials featuring participants treated for more than 12 months (55.55 %). The systems treated patients with various conditions: amyotrophic lateral sclerosis, stroke, spinocerebellar degeneration without cerebellar involvement, and spinal cord injury. All participants presented with tetraplegia at implantation and were implanted with microelectrode arrays via pneumatic insertion, with nearly all electrode locations solely at the precentral gyrus of the motor cortex (88.88 %). The development of iBCI devices using neural signals from the motor cortex to improve motor-impaired patients has enhanced the ability of these systems to return ability to their users. However, many milestones remain before these devices can prove their feasibility for recovery. This review summarizes the achievements and shortfalls of these systems and their respective trials.

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改善运动功能的皮质内脑机接口:一项系统综述。
在这篇系统综述中,我们讨论了应用于运动皮层以改善运动能力受损患者功能的皮层内脑机接口(iBCI)的现状。本研究遵循了《系统评价和荟萃分析首选报告项目(PRISMA)2020系统评价指南》。非随机干预研究中的偏倚风险(ROBINS-I)和有效公共卫生实践项目(EPHPP)用于评估偏倚和质量。iBCI在过去二十年中的进步证明了iBCI用于激活肢体执行功能任务、实现通信的神经类型以及其他应用。然而,这些研究所采用的绩效指标的不一致性表明了标准化的必要性。每项研究都是一项试点临床试验,由1-4名男性(64.28 %) 参与者,大多数试验的参与者接受了超过12个月的治疗(55.55 %). 该系统治疗各种疾病的患者:肌萎缩侧索硬化症、中风、无小脑受累的脊髓小脑变性和脊髓损伤。所有参与者在植入时都出现四肢瘫痪,并通过气动插入植入微电极阵列,几乎所有电极位置都仅位于运动皮层中央前回(88.88 %). iBCI设备的开发利用来自运动皮层的神经信号来改善运动受损患者,增强了这些系统向用户返回能力的能力。然而,在这些设备能够证明其恢复可行性之前,还有许多里程碑。本综述总结了这些系统的成就和不足及其各自的试验。
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来源期刊
Reviews in the Neurosciences
Reviews in the Neurosciences 医学-神经科学
CiteScore
9.40
自引率
2.40%
发文量
54
审稿时长
6-12 weeks
期刊介绍: Reviews in the Neurosciences provides a forum for reviews, critical evaluations and theoretical treatment of selective topics in the neurosciences. The journal is meant to provide an authoritative reference work for those interested in the structure and functions of the nervous system at all levels of analysis, including the genetic, molecular, cellular, behavioral, cognitive and clinical neurosciences. Contributions should contain a critical appraisal of specific areas and not simply a compilation of published articles.
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