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神经康复的进展与展望:干细胞和脑机接口在脊髓损伤中的临床应用。

Progress and prospects in neurorehabilitation: clinical applications of stem cells and brain-computer interface for spinal cord lesions.

机构信息

Brain Mapping and Sensory Motor Integration Laboratory, Institute of Psychiatry of the Federal University of Rio de Janeiro (IPUB/UFRJ), Rua Cel. Moreira Cesar, 375/802, Icaraí, 24230-054 Niterói, RJ, Brazil.

出版信息

Neurol Sci. 2013 Apr;34(4):427-33. doi: 10.1007/s10072-012-1232-5. Epub 2012 Nov 17.

Abstract

Spinal cord injury (SCI) is a disease that affects millions of people worldwide, causing a temporary or permanent impairment of neuromotor functions. Mostly associated to traumatic lesions, but also to other forms of disease, the appropriate treatment is still unsure. In this review, several ongoing studies are presented that aim to provide methods of prevention that ensure quality of life, and rehabilitation trends to patients who suffer from this injury. Stem cell research, highlighted in this review, seeks to reduce damage caused to the tissue, as also provide spinal cord regeneration through the application of several types of stem cells. On the other hand, research using brain-computer interface (BCI) technology proposes the development of interfaces based on the interaction of neural networks with artificial tools to restore motor control and full mobility of the injured area. PubMed, MEDLINE and SciELO data basis analyses were performed to identify studies published from 2000 to date, which describe the link between SCI with stem cells and BCI technology.

摘要

脊髓损伤(SCI)是一种影响全球数百万人的疾病,导致神经运动功能暂时或永久受损。这种疾病主要与创伤性损伤有关,但也与其他形式的疾病有关,其适当的治疗方法仍不确定。在这篇综述中,介绍了一些正在进行的研究,旨在为患有这种损伤的患者提供预防方法,以确保生活质量和康复趋势。在这篇综述中强调的干细胞研究旨在减少对组织造成的损害,同时通过应用几种类型的干细胞来实现脊髓再生。另一方面,使用脑机接口(BCI)技术的研究提出了开发基于神经网络与人工工具相互作用的接口的方法,以恢复受损区域的运动控制和完全活动能力。对 PubMed、MEDLINE 和 SciELO 数据库进行了分析,以确定从 2000 年至今发表的描述 SCI 与干细胞和 BCI 技术之间联系的研究。

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