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迈向闭环式人工耳蜗系统:应用于外周与中枢神经活动的嵌入式监测。

Towards a closed-loop cochlear implant system: application of embedded monitoring of peripheral and central neural activity.

机构信息

Department of Otolaryngology-Head and Neck Surgery, University of California, Irvine, CA 92697, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2012 Jul;20(4):443-54. doi: 10.1109/TNSRE.2012.2186982. Epub 2012 Feb 6.

Abstract

Although the cochlear implant (CI) is widely considered the most successful neural prosthesis, it is essentially an open-loop system that requires extensive initial fitting and frequent tuning to maintain a high, but not necessarily optimal, level of performance. Two developments in neuroscience and neuroengineering now make it feasible to design a closed-loop CI. One development is the recording and interpretation of evoked potentials (EPs) from the peripheral to the central nervous system. The other is the embedded hardware and software of a modern CI that allows recording of EPs. We review EPs that are pertinent to behavioral functions from simple signal detection and loudness growth to speech discrimination and recognition. We also describe signal processing algorithms used for electric artifact reduction and cancellation, critical to the recording of electric EPs. We then present a conceptual design for a closed-loop CI that utilizes in an innovative way the embedded implant receiver and stimulators to record short latency compound action potentials ( ~1 ms), auditory brainstem responses (1-10 ms) and mid-to-late cortical potentials (20-300 ms). We compare EPs recorded using the CI to EPs obtained using standard scalp electrodes recording techniques. Future applications and capabilities are discussed in terms of the development of a new generation of closed-loop CIs and other neural prostheses.

摘要

尽管耳蜗植入物 (CI) 被广泛认为是最成功的神经假体,但它本质上是一个开环系统,需要广泛的初始适配和频繁的调谐,以保持较高但不一定最佳的性能水平。神经科学和神经工程的两项发展现在使得设计闭环 CI 成为可能。一个发展是记录和解释从外围到中枢神经系统的诱发电位 (EPs)。另一个是现代 CI 的嵌入式硬件和软件,允许记录 EPs。我们回顾了与行为功能相关的 EPs,从简单的信号检测和响度增长到语音辨别和识别。我们还描述了用于电伪迹减少和消除的信号处理算法,这对于电 EP 的记录至关重要。然后,我们提出了一种闭环 CI 的概念设计,该设计以创新的方式利用嵌入式植入式接收器和刺激器来记录短潜伏期复合动作电位(~1ms)、听觉脑干反应(1-10ms)和中晚期皮质电位(20-300ms)。我们将使用 CI 记录的 EPs 与使用标准头皮电极记录技术获得的 EPs 进行比较。未来的应用和功能将根据新一代闭环 CI 和其他神经假体的发展进行讨论。

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