利用全景 ECAP 方法研究耳蜗植入者模糊和聚焦电流的影响。

IF 2.4 3区 医学 Q3 NEUROSCIENCES Jaro-Journal of the Association for Research in Otolaryngology Pub Date : 2024-12-01 Epub Date: 2024-10-16 DOI:10.1007/s10162-024-00966-x
Charlotte Garcia, Charlotte Morse-Fortier, François Guérit, Scott Hislop, Tobias Goehring, Robert P Carlyon, Julie G Arenberg
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引用次数: 0

摘要

目的:对于某些人工耳蜗 (CI),可以通过将电流从有源电极部分返回到附近的耳蜗内电极(部分三极 (pTP) 刺激)来集中电刺激。另一种方法则恰恰相反:通过同时刺激多个电极实现 "模糊"。全景 ECAP(PECAP)方法提供了一个平台,通过测量电诱发的复合动作电位并估算沿 CI 电极阵列长度方向的电流扩散和神经反应性来详细研究它们的效果。我们研究了电流扩散的锐化和扩大如何反映在 PECAP 估计值中:方法:在高级仿生 CI 用户的 12 只耳朵中以最舒适的水平记录 PECAP 测量值。同时还确定了聚焦阈值。对于聚焦阈值最高和最低的电极,在 pTP 模式和同时刺激 3 或 5 个相邻电极的 "模糊 "模式下记录额外的 PECAP 测量值。然后使用 PECAP 估算沿电极阵列的电流扩散和神经反应性:结果:PECAP 显示,在对耳蜗顶点的目标电极进行模糊刺激时,不同参与者的电流扩散估计值均有所增加。对 pTP 刺激的结果各不相同,八只耳朵中有两只出现了电流扩散增加的小群体效应:结论:当同时刺激多个电极时,PECAP 可检测到耳蜗顶部(而非底部)的局部电流扩散增加。这些发现与行为言语感知研究结果一致,并对人工耳蜗的优化具有重要意义。
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Investigating the Effect of Blurring and Focusing Current in Cochlear Implant Users with the Panoramic ECAP Method.

Purpose: For some cochlear implants (CIs), it is possible to focus electrical stimulation by partially returning current from the active electrode to nearby, intra-cochlear electrodes (partial tripolar (pTP) stimulation). Another method achieves the opposite: "blurring" by stimulating multiple electrodes simultaneously. The Panoramic ECAP (PECAP) method provides a platform to investigate their effects in detail by measuring electrically evoked compound action potentials and estimating current spread and neural responsiveness along the length of the CI electrode array. We investigate how sharpening and broadening the electrical current spread are reflected in PECAP estimates.

Methods: PECAP measurements were recorded at most comfortable level in 12 ears of Advanced Bionics CI users. Focused thresholds were also determined. For the electrodes with the highest and lowest focused thresholds, additional PECAP measurements were recorded while stimulating in pTP mode and in "blurred" mode with 3 or 5 adjacent electrodes simultaneously stimulated. Current spread and neural responsiveness were then estimated along the electrode array using PECAP.

Results: PECAP revealed increased current spread estimates across participants for blurred stimulation of the targeted electrodes towards the apex of the cochlea. Variable results for pTP stimulation were found, with two of eight ears appearing to drive a small group-level effect of increased current spread.

Conclusion: When stimulating multiple electrodes simultaneously, PECAP detected localized increases in current spread towards the apex (but not the base) of the cochlea. pTP stimulation showed mixed effects on PECAP current spread estimates. These findings are in line with behavioral speech perception studies and have implications for cochlear implant optimization.

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来源期刊
CiteScore
4.10
自引率
12.50%
发文量
57
审稿时长
6-12 weeks
期刊介绍: JARO is a peer-reviewed journal that publishes research findings from disciplines related to otolaryngology and communications sciences, including hearing, balance, speech and voice. JARO welcomes submissions describing experimental research that investigates the mechanisms underlying problems of basic and/or clinical significance. Authors are encouraged to familiarize themselves with the kinds of papers carried by JARO by looking at past issues. Clinical case studies and pharmaceutical screens are not likely to be considered unless they reveal underlying mechanisms. Methods papers are not encouraged unless they include significant new findings as well. Reviews will be published at the discretion of the editorial board; consult the editor-in-chief before submitting.
期刊最新文献
Dynamic X-ray Microtomography vs. Laser-Doppler Vibrometry: A Comparative Study. Comparing Patient-Specific Variations in Intra-Cochlear Neural Health Estimated Using Psychophysical Thresholds and Panoramic Electrically Evoked Compound Action Potentials (PECAPs). What Do Mismatch Negativity (MMN) Responses Tell Us About Tinnitus? Eric Daniel Young. Investigating the Effect of Blurring and Focusing Current in Cochlear Implant Users with the Panoramic ECAP Method.
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