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脑机接口治疗创伤性截瘫的临床应用

Clinical applications of brain-computer interface in traumatic paraplegia

  • 摘要: 创伤性截瘫是由脊髓损伤导致的严重运动功能障碍,传统治疗效果有限且风险较高。脑机接口(brain-computer interface, BCI)作为新兴技术,通过直接解码大脑信号并控制外部设备或刺激自身肌肉,为截瘫患者的功能重建提供新途径。本文综述了BCI在创伤性高位截瘫与低位截瘫治疗中的临床应用现状,并分析其在信号解码、设备稳定性、生物相容性、临床安全性与伦理等方面的挑战。未来,结合人工智能等跨学科技术,BCI有望成为重建创伤性截瘫患者运动与交互功能的“神经桥梁”。

     

    Abstract: Traumatic paraplegia, resulting from spinal cord injury, leads to severe motor dysfunction, with limited efficacy and high risks associated with conventional treatments. Brain-computer interface (BCI) has emerged as a promising technology that decodes neural signals to control external devices or stimulate paralyzed muscles, providing a novel approach for functional restoration in paraplegic patients. This article reviews the clinical applications of BCI in treating both high- and low-level traumatic paraplegia. Challenges related to signal decoding, device stability, biocompatibility, clinical safety, and ethical considerations are also discussed. In the future, the integration of artificial intelligence may further enhance BCI as a “neural bridge” for restoring motor and interactive functions in patients with traumatic paraplegia.

     

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