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螺旋神经节细胞兴奋位点I:鼓阶与耳道内电极反应的比较

Spiral ganglion cell site of excitation I: comparison of scala tympani and intrameatal electrode responses.

作者信息

Cartee Lianne A, Miller Charles A, van den Honert Chris

机构信息

Joint Department of Biomedical Engineering, North Carolina State University and the University of North Carolina at Chapel Hill, Box 7625, Raleigh, NC 27695, USA.

出版信息

Hear Res. 2006 May;215(1-2):10-21. doi: 10.1016/j.heares.2006.02.012. Epub 2006 Apr 18.

Abstract

To determine the site of excitation on the spiral ganglion cell in response to electrical stimulation similar to that from a cochlear implant, single-fiber responses to electrical stimuli delivered by an electrode positioned in the scala tympani were compared to responses from stimuli delivered by an electrode placed in the internal auditory meatus. The response to intrameatal stimulation provided a control set of data with a known excitation site, the central axon of the spiral ganglion cell. For both intrameatal and scala tympani stimuli, the responses to single-pulse, summation, and refractory stimulus protocols were recorded. The data demonstrated that summation pulses, as opposed to single pulses, are likely to give the most insightful measures for determination of the site of excitation. Single-fiber summation data for both scala tympani and intrameatally stimulated fibers were analyzed with a clustering algorithm. Combining cluster analysis and additional numerical modeling data, it was hypothesized that the scala tympani responses corresponded to central excitation, peripheral excitation adjacent to the cell body, and peripheral excitation at a site distant from the cell body. Fibers stimulated by an intrameatal electrode demonstrated the greatest range of jitter measurements indicating that greater fiber independence may be achieved with intrameatal stimulation.

摘要

为了确定螺旋神经节细胞对类似于人工耳蜗电刺激的电刺激的兴奋位点,将置于鼓阶的电极施加电刺激时单纤维的反应与置于内耳道的电极施加刺激时的反应进行了比较。对内耳道刺激的反应提供了一组已知兴奋位点(螺旋神经节细胞的中枢轴突)的对照数据。对于内耳道和鼓阶刺激,均记录了对单脉冲、总和及不应期刺激方案的反应。数据表明,与单脉冲相反,总和脉冲可能为确定兴奋位点提供最有洞察力的测量方法。用聚类算法分析了鼓阶和内耳道刺激纤维的单纤维总和数据。结合聚类分析和其他数值模拟数据,推测鼓阶反应对应于中枢兴奋、细胞体附近的外周兴奋以及远离细胞体部位的外周兴奋。内耳道电极刺激的纤维表现出最大范围的抖动测量值,表明内耳道刺激可能实现更大的纤维独立性。

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