高级检索

手部运动皮层脑机接口植入策略:从神经基础到个体化评估与靶点规划

Strategies for implanting brain-computer interfaces in the hand motor cortex: from neural foundations to individualized assessment and target planning

  • 摘要: 侵入式脑机接口(brain-computer interface, BCI)通过解码皮层神经信号重建手部运动功能,为患者提供了全新的治疗途径。精准的微电极阵列植入是获取高质量、稳定神经信号的根本前提,要求术者深刻理解初级运动皮层手区(primary motor cortex hand area, M1-HAND)的神经解剖基础,并综合运用多模态影像、功能定位与手术规划技术,为每例患者制定个体化方案。本文系统综述了手部运动控制的皮层神经基础,比较了功能磁共振成像、导航经颅磁刺激和弥散张量成像等个体化功能测绘方法的优势与局限,总结了手结区与10-20系统坐标优化的改良方法,并提出涵盖神经信号层、任务表现层、功能结局层与生活质量层的多层次临床评估框架。本文旨在为手部运动功能恢复的BCI临床实施提供从神经基础、个体化测绘、植入策略到评估体系的系统性参考框架,推动侵入式BCI由工程验证迈向临床转化。

     

    Abstract: Invasive brain-computer interface (BCI) reconstructs hand movement functions by decoding cortical neural signals, providing patients with a new treatment approach. Precise microelectrode arrays implantation is the fundamental prerequisite for obtaining high-quality and stable neural signals, requiring the surgeon to deeply understand the neural anatomical basis of the primary motor cortex hand area (M1-HAND) and to comprehensively apply multimodal imaging, functional localization, and surgical planning techniques to develop individualized target plan for each patient. This article systematically reviews the cortical neural basis of hand movement control, and compares the advantages and limitations of individualized functional mapping methods such as functional magnetic resonance imaging (fMRI), navigated transcranial magnetic stimulation (nTMS), and diffusion tensor imaging (DTI), and summarizes the improved methods for optimizing the hand area and the 10-20 system coordinates. For clinical assessment, this article proposes a multi-level assessment framework covering the neural signal, task performance, functional outcome, and quality of life. This article aims to provide a systematic reference framework from the neural basis, individualized mapping, implantation strategy to the assessment system for the clinical implementation of BCI for hand movement function recovery, and promote invasive BCI from engineering verification to clinical transformation.

     

/

返回文章
返回