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术中电化学检测的发展:用于深部脑刺激反馈的无线瞬时神经化学浓度传感器。

Development of intraoperative electrochemical detection: wireless instantaneous neurochemical concentration sensor for deep brain stimulation feedback.

机构信息

Department of Neurological Surgery, Mayo Clinic, Rochester, Minnesota 55905, USA.

出版信息

Neurosurg Focus. 2010 Aug;29(2):E6. doi: 10.3171/2010.5.FOCUS10110.

Abstract

Deep brain stimulation (DBS) is effective when there appears to be a distortion in the complex neurochemical circuitry of the brain. Currently, the mechanism of DBS is incompletely understood; however, it has been hypothesized that DBS evokes release of neurochemicals. Well-established chemical detection systems such as microdialysis and mass spectrometry are impractical if one is assessing changes that are happening on a second-to-second time scale or for chronically used implanted recordings, as would be required for DBS feedback. Electrochemical detection techniques such as fast-scan cyclic voltammetry (FSCV) and amperometry have until recently remained in the realm of basic science; however, it is enticing to apply these powerful recording technologies to clinical and translational applications. The Wireless Instantaneous Neurochemical Concentration Sensor (WINCS) currently is a research device designed for human use capable of in vivo FSCV and amperometry, sampling at subsecond time resolution. In this paper, the authors review recent advances in this electrochemical application to DBS technologies. The WINCS can detect dopamine, adenosine, and serotonin by FSCV. For example, FSCV is capable of detecting dopamine in the caudate evoked by stimulation of the subthalamic nucleus/substantia nigra in pig and rat models of DBS. It is further capable of detecting dopamine by amperometry and, when used with enzyme linked sensors, both glutamate and adenosine. In conclusion, WINCS is a highly versatile instrument that allows near real-time (millisecond) detection of neurochemicals important to DBS research. In the future, the neurochemical changes detected using WINCS may be important as surrogate markers for proper DBS placement as well as the sensor component for a "smart" DBS system with electrochemical feedback that allows automatic modulation of stimulation parameters. Current work is under way to establish WINCS use in humans.

摘要

深部脑刺激 (DBS) 在大脑复杂神经化学电路出现扭曲时有效。目前,DBS 的机制尚未完全理解;然而,据推测 DBS 会引起神经化学物质的释放。如果要评估每秒发生的变化,或者对于慢性使用的植入记录,微透析和质谱等成熟的化学检测系统是不切实际的,这是 DBS 反馈所必需的。电化学检测技术,如快速扫描循环伏安法 (FSCV) 和安培法,直到最近仍停留在基础科学领域;然而,将这些强大的记录技术应用于临床和转化应用是很有吸引力的。无线即时神经化学浓度传感器 (WINCS) 目前是一种可用于人体的研究设备,能够进行体内 FSCV 和安培法,以亚秒级的时间分辨率进行采样。本文作者综述了该电化学技术在 DBS 技术中的最新进展。WINCS 可以通过 FSCV 检测多巴胺、腺苷和血清素。例如,FSCV 能够在猪和大鼠的 DBS 模型中检测到刺激丘脑下核/黑质引起的尾状核中的多巴胺。它还能够通过安培法检测多巴胺,并且当与酶联传感器一起使用时,还能够检测谷氨酸和腺苷。总之,WINCS 是一种功能非常强大的仪器,它允许对 DBS 研究中重要的神经化学物质进行近实时(毫秒级)检测。将来,使用 WINCS 检测到的神经化学变化可能是正确的 DBS 放置的替代标志物,也是具有电化学反馈的“智能”DBS 系统的传感器组件,允许自动调节刺激参数。目前正在进行使用 WINCS 的工作,以将其应用于人体。

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本文引用的文献

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Wireless Instantaneous Neurotransmitter Concentration Sensing System (WINCS) for intraoperative neurochemical monitoring.
Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:4856-9. doi: 10.1109/IEMBS.2009.5332773.

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