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用于脊髓损伤的神经调节和数字脑脊髓接口的进展

Advances in Neuromodulation and Digital Brain-Spinal Cord Interfaces for Spinal Cord Injury.

作者信息

Jaszczuk Phillip, Bratelj Denis, Capone Crescenzo, Rudnick Marcel, Pötzel Tobias, Verma Rajeev K, Fiechter Michael

机构信息

Interdisciplinary Spine Center, Luzern Cantonal Hospital, University of Luzern, 6000 Luzern, Switzerland.

Spine Surgery, Swiss Paraplegic Center, 6207 Nottwil, Switzerland.

出版信息

Int J Mol Sci. 2025 Jun 23;26(13):6021. doi: 10.3390/ijms26136021.

Abstract

Spinal cord injury (SCI) results in a significant loss of motor, sensory, and autonomic function, imposing substantial biosocial and economic burdens. Traditional approaches, such as stem cell therapy and immune modulation, have faced translational challenges, whereas neuromodulation and digital brain-spinal cord interfaces combining brain-computer interface (BCI) technology and epidural spinal cord stimulation (ESCS) to create brain-spine interfaces (BSIs) offer promising alternatives by leveraging residual neural pathways to restore physiological function. This review examines recent advancements in neuromodulation, focusing on the future translation of clinical trial data to clinical practice. We address key considerations, including scalability, patient selection, surgical techniques, postoperative rehabilitation, and ethical implications. By integrating interdisciplinary collaboration, standardized protocols, and patient-centered design, neuromodulation has the potential to revolutionize SCI rehabilitation, reducing long-term disability and enhancing quality of life globally.

摘要

脊髓损伤(SCI)会导致运动、感觉和自主神经功能的显著丧失,带来巨大的生物社会和经济负担。传统方法,如干细胞疗法和免疫调节,面临着转化方面的挑战,而神经调节以及将脑机接口(BCI)技术与硬膜外脊髓刺激(ESCS)相结合以创建脑-脊髓接口(BSI)的数字脑-脊髓接口,通过利用残余神经通路来恢复生理功能,提供了有前景的替代方案。本综述探讨了神经调节的最新进展,重点关注临床试验数据向临床实践的未来转化。我们讨论了关键考量因素,包括可扩展性、患者选择、手术技术、术后康复以及伦理影响。通过整合跨学科合作、标准化方案和以患者为中心的设计,神经调节有潜力彻底改变SCI康复,减少全球范围内的长期残疾并提高生活质量。

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