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在诱导性缺氧和神经操作过程中,利用多个提取参数对耳蜗和听神经进行神经监测。

Neuromonitoring of cochlea and auditory nerve with multiple extracted parameters during induced hypoxia and nerve manipulation.

作者信息

Bohórquez Jorge, Ozdamar Ozcan, Morawski Krzysztof, Telischi Fred F, Delgado Rafael E, Yavuz Erdem

机构信息

Department of Biomedical Engineering, University of Miami, 219A Mc.Arthur Annex, PO Box 248294, Coral Gables, FL 33124-0621, USA.

出版信息

J Neural Eng. 2005 Jun;2(2):1-10. doi: 10.1088/1741-2560/2/2/001. Epub 2005 Mar 8.

Abstract

A system capable of comprehensive and detailed monitoring of the cochlea and the auditory nerve during intraoperative surgery was developed. The cochlear blood flow (CBF) and the electrocochleogram (ECochGm) were recorded at the round window (RW) niche using a specially designed otic probe. The ECochGm was further processed to obtain cochlear microphonics (CM) and compound action potentials (CAP). The amplitude and phase of the CM were used to quantify the activity of outer hair cells (OHC); CAP amplitude and latency were used to describe the auditory nerve and the synaptic activity of the inner hair cells (IHC). In addition, concurrent monitoring with a second electrophysiological channel was achieved by recording compound nerve action potential (CNAP) obtained directly from the auditory nerve. Stimulation paradigms, instrumentation and signal processing methods were developed to extract and differentiate the activity of the OHC and the IHC in response to three different frequencies. Narrow band acoustical stimuli elicited CM signals indicating mainly nonlinear operation of the mechano-electrical transduction of the OHCs. Special envelope detectors were developed and applied to the ECochGm to extract the CM fundamental component and its harmonics in real time. The system was extensively validated in experimental animal surgeries by performing nerve compressions and manipulations.

摘要

开发了一种能够在术中对耳蜗和听神经进行全面、详细监测的系统。使用专门设计的耳探头在圆窗龛处记录耳蜗血流量(CBF)和耳蜗电图(ECochGm)。对ECochGm进一步处理以获得耳蜗微音电位(CM)和复合动作电位(CAP)。CM的幅度和相位用于量化外毛细胞(OHC)的活性;CAP幅度和潜伏期用于描述听神经和内毛细胞(IHC)的突触活性。此外,通过记录直接从听神经获得的复合神经动作电位(CNAP),实现了与第二个电生理通道的同步监测。开发了刺激范式、仪器和信号处理方法,以提取和区分OHC和IHC在三种不同频率下的活性。窄带声学刺激引发CM信号,主要表明OHC机械-电转导的非线性操作。开发了特殊的包络检测器并将其应用于ECochGm,以实时提取CM基波分量及其谐波。该系统在实验动物手术中通过进行神经压迫和操作得到了广泛验证。

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Corresponding effects of hypoxia on the cochlear microphonic and the compound action potential.
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本文引用的文献

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Evaluation of three intraoperative auditory monitoring techniques in acoustic neuroma surgery.
Am J Otol. 2000 Mar;21(2):244-8. doi: 10.1016/s0196-0709(00)80017-4.
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Automatic monitoring of mechano-electrical transduction in the guinea pig cochlea.
Hear Res. 1998 Nov;125(1-2):1-16. doi: 10.1016/s0378-5955(98)00125-7.
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Neuromonitoring in the operating room: why, when, and how to monitor?手术室中的神经监测:为何、何时以及如何进行监测?
Electroencephalogr Clin Neurophysiol. 1998 Jan;106(1):1-21. doi: 10.1016/s0013-4694(97)00077-1.

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