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解析电诱发复合动作电位。

Unraveling the electrically evoked compound action potential.

作者信息

Briaire Jeroen J, Frijns Johan H M

机构信息

ENT-Department, Leiden University Medical Center, P.O. Box 9600, 2300 RC Leiden, The Netherlands.

出版信息

Hear Res. 2005 Jul;205(1-2):143-56. doi: 10.1016/j.heares.2005.03.020.

Abstract

With the advent of eCAP recording tools such as NRT and NRI for cochlear implants, neural monitoring has become widely used to ascertain the integrity of the neural/electrode interface as well as for assisting in the setting of program levels. The basic concepts of eCAP recordings are deduced from the acoustical equivalent of the electrocochleogram. There are, however, indications that under electrical stimulation some of these do not hold, like the unitary response concept (i.e., the principle that every fiber produces the same contribution to the eCAP). Computer modeling has proven to be a valuable tool for gaining insight into the functioning of electrical stimulation. In this study the extension of a three-dimensional human cochlea, incorporating back-measuring capabilities, is described. Using this new model, the contribution of single fiber action potentials (SFAPs) to the measured eCAP is investigated. The model predicts that contrary to common belief--the compound action potential as measured by the cochlear implant system does not necessarily reflect the propagated action potential along the auditory nerve.

摘要

随着用于人工耳蜗的诸如神经反应遥测(NRT)和神经反应成像(NRI)等电刺激听觉脑干反应(eCAP)记录工具的出现,神经监测已被广泛用于确定神经/电极界面的完整性以及辅助设置程序参数。eCAP记录的基本概念是从电耳蜗电图的声学等效物推导而来的。然而,有迹象表明,在电刺激下,其中一些概念并不成立,比如单一反应概念(即每个纤维对eCAP产生相同贡献的原则)。计算机建模已被证明是深入了解电刺激功能的宝贵工具。在本研究中,描述了一种具有反向测量能力的三维人类耳蜗扩展模型。使用这个新模型,研究了单纤维动作电位(SFAP)对测量的eCAP的贡献。该模型预测,与普遍看法相反,人工耳蜗系统测量的复合动作电位不一定反映沿听觉神经传播的动作电位。

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