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光学脑机接口的研究进展、临床转化与未来发展

Optical brain-computer interface: technological advances, clinical translation, and future perspectives

  • 摘要: 光学脑机接口是以“光”作为信息载体,实现对神经信号读取、解码与调控的新型神经交互技术。与传统电学脑机接口相比,光学脑机接口在空间分辨率、细胞特异性及多参数同步监测方面展现出独特优势。随着功能近红外光谱、光学神经成像和光遗传学等技术的快速发展,光学手段已逐步覆盖神经活动的“读取-解码-写入”的完整链路,为构建高精度闭环脑机系统提供了新的技术路径。本文综述光学脑机接口的主要技术路径及研究进展,并进一步讨论其在临床转化过程中面临的关键挑战与未来发展方向。

     

    Abstract: Optical brain-computer interface (OBCI) represents an emerging class of neural interaction technologies that use “light” as an information carrier to enable the acquisition, decoding, and modulation of neural signals. Compared with conventional electrical brain-computer interface (BCI), OBCI demonstrates distinct advantages in spatial resolution, cell-type specificity, and the capacity for simultaneous multiparametric monitoring. Driven by rapid advances in functional near-infrared spectroscopy, optical neuroimaging, and optogenetics, optical approaches have progressively extended across the full “read, decode, write” continuum of neural activity, providing a novel technological framework for the development of high-precision closed-loop brain-computer systems. This review systematically summarizes the principal technological strategies and recent advances in OBCI, and further discusses the key challenges encountered during clinical translation, as well as future development direction.

     

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