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影响皮层内电极记录寿命的生物学、机械和技术因素。

Biological, mechanical, and technological considerations affecting the longevity of intracortical electrode recordings.

作者信息

Harris James P, Tyler Dustin J

机构信息

Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH; Rehabilitation Research and Development, L. Stokes Cleveland VA Medical Center, Cleveland, OH.

出版信息

Crit Rev Biomed Eng. 2013;41(6):435-56.

Abstract

Intracortical electrodes are important tools, with applications ranging from fundamental laboratory studies to potential solutions to intractable clinical applications. However, the longevity and reliability of the interfaces remain their major limitation to the wider implementation and adoption of this technology, especially in broader translational work. Accordingly, this review summarizes the most significant biological and technical factors influencing the long-term performance of intracortical electrodes. In a laboratory setting, intracortical electrodes have been used to study the normal and abnormal function of the brain. This improved understanding has led to valuable insights regarding many neurological conditions. Likewise, clinical applications of intracortical brain-machine interfaces offer the ability to improve the quality of life of many patients afflicted with high-level paralysis from spinal cord injury, brain stem stroke, amyotrophic lateral sclerosis, or other conditions. It is widely hypothesized that the tissue response to the electrodes, including inflammation, limits their longevity. Many studies have examined and modified the tissue response to intracortical electrodes to improve future intracortical electrode technologies. Overall, the relationship between biological, mechanical, and technological considerations are crucial for the fidelity of chronic electrode recordings and represent a presently active area of investigation in the field of neural engineering.

摘要

皮层内电极是重要的工具,其应用范围从基础实验室研究到解决棘手临床应用的潜在方案。然而,接口的寿命和可靠性仍然是该技术更广泛实施和应用的主要限制因素,尤其是在更广泛的转化研究工作中。因此,本综述总结了影响皮层内电极长期性能的最重要的生物学和技术因素。在实验室环境中,皮层内电极已被用于研究大脑的正常和异常功能。这种深入的理解为许多神经系统疾病带来了有价值的见解。同样,皮层内脑机接口的临床应用能够改善许多因脊髓损伤、脑干中风、肌萎缩侧索硬化症或其他疾病而患有严重瘫痪的患者的生活质量。人们普遍推测,包括炎症在内的组织对电极的反应限制了它们的使用寿命。许多研究已经对组织对皮层内电极的反应进行了研究和改进,以改善未来的皮层内电极技术。总体而言,生物学、机械和技术因素之间的关系对于慢性电极记录的保真度至关重要,并且是神经工程领域目前一个活跃的研究领域。

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