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首页> 外文期刊>Journal of Neuroscience Methods >Neural signal recording and processing in somatic neuroprosthetic applications. A review
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Neural signal recording and processing in somatic neuroprosthetic applications. A review

机译:体细胞神经调节应用中的神经信号记录和加工。 回顾

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Neurointerfaces have acquired major relevance as both rehabilitative and therapeutic tools for patients with spinal cord injury, limb amputations and other neural disorders. Bidirectional neural interfaces are a key component for the functional control of neuroprosthetic devices. The two main neuroprosthetic applications of interfaces with the peripheral nervous system (PNS) are: the refined control of artificial prostheses with sensory neural feedback, and functional electrical stimulation (FES) systems attempting to generate motor or visceral responses in paralyzed organs. The results obtained in experimental and clinical studies with both, extraneural and intraneural electrodes are very promising in terms of the achieved functionality for the neural stimulation mode. However, the results of neural recordings with peripheral nerve interfaces are more limited. In this paper we review the different existing approaches for PNS signals recording, denoising, processing and classification, enabling their use for bidirectional interfaces. PNS recordings can provide three types of signals: i) population activity signals recorded by using extraneural electrodes placed on the outer surface of the nerve, which carry information about cumulative nerve activity; ii) spike activity signals recorded with intraneural electrodes placed inside the nerve, which carry information about the electrical activity of a set of individual nerve fibers; and iii) hybrid signals, which contain both spiking and cumulative signals. Finally, we also point out some of the main limitations, which are hampering clinical translation of neural decoding, and indicate possible solutions for improvement.
机译:神经期间为脊髓损伤,肢体截肢和其他神经障碍患者的康复和治疗工具获得了重大相关性。双向神经界面是神经高原装置功能控制的关键部件。与外周神经系统(PNS)的界面的两个主要神经高原型应用是:具有感觉神经反馈的人工假体的精制控制,以及试图在瘫痪器官中产生电动机或内脏反应的功能电刺激(FES)系统。在具有诊断和床内电极的实验和临床研究中获得的结果在实现神经刺激模式的效果方面非常有前途。然而,具有外周神经界面的神经记录结果更有限。在本文中,我们回顾了PNS信号记录,去噪,处理和分类的不同现有方法,从而实现了对双向接口的用途。 PNS录像可以提供三种类型的信号:i)通过使用放置在神经外表面上的外耳电极记录的人口活动信号,其携带有关累积神经活动的信息; ii)用腔内电极记录的尖峰活动信号,所述内部电极放置在所述神经内部,该信息携带关于一组个体神经纤维的电活动的信息;和III)混合信号,其包含尖峰和累积信号。最后,我们还指出了一些主要的局限性,这是妨碍神经解码的临床翻译,并表明改善的可能解决方案。

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