arXivDaily arXiv每日学术速递 周一至周五更新

科学与医疗

脑机接口 / BCI

脑机接口、EEG、神经信号解码、神经假体和脑控交互。

今日/当前日期收录 1 信号源:q-bio.NC, eess.SP, cs.LG, cs.HC, cs.RO
2606.15091 2026-06-18 cs.HC cs.AI 新提交 95%

Sensory Restoration via Brain-Computer Interfaces: A Unified 2 x 2 Framework and Convergence Roadmap

通过脑机接口的感觉恢复:统一的2×2框架与融合路线图

Xuan-The Tran

发表机构 * School of Mechanical Engineering, Vietnam Maritime University(机械工程学院,越南海防大学)

专题命中 神经假体 :提出BCI框架用于感觉恢复

AI总结 本文提出一个统一的2×2框架,按侵入性和信号方向分类脑机接口,并定义恢复、替代和增强范式,同时给出近中长期的融合路线图。

详情
AI中文摘要

全球数百万个体因神经退行性疾病、中风或创伤而遭受感觉和沟通缺陷。脑机接口(BCI)为感觉和运动恢复提供了有希望的途径。然而,科学文献在侵入性神经假体和非侵入性电生理解码器之间高度碎片化,缺乏一致的术语和比较指标。本章提出了一个统一的2×2框架,沿两个轴对BCI进行分类:侵入性程度(侵入性与非侵入性)和信号方向(传入感觉-IN与传出感觉-OUT)。我们定义并区分了恢复、替代和增强的范式。此外,我们概述了一个结构化的路线图,用于在近期、中期和长期内这些模态的融合,重点关注物理限制和机器学习基础模型的整合作用。

英文摘要

Millions of individuals worldwide suffer from sensory and communication deficits caused by neurodegenerative diseases, stroke, or trauma. Brain-computer interfaces (BCIs) offer a promising avenue for sensory and motor restoration. However, the scientific literature remains highly fragmented between invasive neuroprosthetics and non-invasive electrophysiological decoders, with a lack of consistent terminology and comparison metrics. This chapter proposes a unified 2 x 2 framework categorizing BCIs along two axes: degree of invasiveness (invasive vs. non-invasive) and signal direction (afferent sensory-IN vs. efferent sensory-OUT). We define and distinguish the paradigms of restoration, substitution, and augmentation. Furthermore, we outline a structural roadmap for the convergence of these modalities over near-, medium-, and long-term horizons, focusing on physical limits and the integrative role of machine learning foundation models.