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[使用Nucleus 24标准进行的舌前耳蜗刺激部位及其对电诱发复合动作电位和不应期的影响]

[Site of prelingual cochlear stimulation and its effect on electrically evoked compound action potentials and refractory using the Nucleus 24 standard].

作者信息

Ma R Y, Li W, Jiang X J

机构信息

Department of Otolaryngology, First Affiliated Hospital of China Medical University, Shenyang, 110001,China.

出版信息

Lin Chuang Er Bi Yan Hou Tou Jing Wai Ke Za Zhi. 2016 Dec;30(23):1854-1858. doi: 10.13201/j.issn.1001-1781.2016.23.005.

DOI:10.13201/j.issn.1001-1781.2016.23.005
PMID:29798012
Abstract

To investigate the correlation between the site of prelingual cochlear stimulation and its effect on electrically evoked compound action potentials. Recordings of auditory nerve responses were conducted in 32 prelingual subjects to demonstrate the feasibility of ECAP recordings using the nerve response telemetry(NRT) feature of the Nucleus CI24R(CA) system software. These recordings were then analyzed based on the site of cochlear stimulation defined as basal, middle and apical to determine if the amplitude, threshold and slope of the amplitude growth function and the refractory time differs depending on the region of stimulation. Findings of our prelingual children showed significant differences in the ECAP recordings depending on the stimulation site. Comparing the apical with the basal region, on average higher amplitudes, lower thresholds and steeper slopes of the amplitude growth function hadbeen observed. The refractory time showed an overall dependence on cochlear region; however post-hoc tests showed no significant effect between individual regions. Obtaining ECAP recordings is also possible in the most apical region of the cochlea. However, differences can be observed depending on the region of the cochlea stimulated. Specifically, significant higher ECAP amplitude, lower thresholds and steeper amplitude growth function slopes have been observed in the apical region. These differences between prelingual children and adults could be explained by the location of the stimulating electrode with respect to the neural tissue in the cochlea, a higher density, or an increased neural survival rate of neural tissue in the apex.

摘要

为研究舌前蜗内刺激部位与其对电诱发复合动作电位的影响之间的相关性。对32名舌前受试者进行听觉神经反应记录,以证明使用Nucleus CI24R(CA)系统软件的神经反应遥测(NRT)功能进行电诱发复合动作电位(ECAP)记录的可行性。然后根据定义为基底、中部和顶部的蜗内刺激部位对这些记录进行分析,以确定振幅、阈值、振幅增长函数的斜率和不应期是否因刺激区域而异。我们对舌前儿童的研究结果表明,根据刺激部位的不同,ECAP记录存在显著差异。将顶部区域与基底区域进行比较,平均观察到较高的振幅、较低的阈值和较陡的振幅增长函数斜率。不应期总体上依赖于耳蜗区域;然而,事后检验显示各区域之间没有显著影响。在耳蜗的最顶部区域也可以获得ECAP记录。然而,根据刺激的耳蜗区域不同可以观察到差异。具体而言,在顶部区域观察到显著更高的ECAP振幅、更低的阈值和更陡的振幅增长函数斜率。舌前儿童和成人之间的这些差异可以通过刺激电极相对于耳蜗神经组织的位置、更高的密度或顶部神经组织的神经存活率增加来解释。

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