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急性致聋猫人工耳蜗聚焦多极刺激的评估

Evaluation of focused multipolar stimulation for cochlear implants in acutely deafened cats.

作者信息

George Shefin S, Wise Andrew K, Shivdasani Mohit N, Shepherd Robert K, Fallon James B

出版信息

J Neural Eng. 2014 Dec;11(6):065003. doi: 10.1088/1741-2560/11/6/065003.

Abstract

OBJECTIVE

The conductive nature of the fluids and tissues of the cochlea can lead to broad activation of spiral ganglion neurons using contemporary cochlear implant stimulation configurations such as monopolar (MP) stimulation. The relatively poor spatial selectivity is thought to limit implant performance, particularly in noisy environments. Several current focusing techniques have been proposed to reduce the spread of activation with the aim towards achieving improved clinical performance.

APPROACH

The present research evaluated the efficacy of focused multipolar (FMP) stimulation, a relatively new focusing technique in the cochlea, and compared its efficacy to both MP stimulation and tripolar (TP) stimulation. The spread of neural activity across the inferior colliculus (IC), measured by recording the spatial tuning curve, was used as a measure of spatial selectivity. Adult cats (n = 6) were acutely deafened and implanted with an intracochlear electrode array before multi-unit responses were recorded across the cochleotopic gradient of the contralateral IC. Recordings were made in response to acoustic and electrical stimulation using the MP, TP and FMP configurations.

MAIN RESULTS

FMP and TP stimulation resulted in greater spatial selectivity than MP stimulation. However, thresholds were significantly higher (p < 0.001) for FMP and TP stimulation compared to MP stimulation. There were no differences found in spatial selectivity and threshold between FMP and TP stimulation.

SIGNIFICANCE

The greater spatial selectivity of FMP and TP stimulation would be expected to result in improved clinical performance. However, further research will be required to demonstrate the efficacy of these modes of stimulation after longer durations of deafness.

摘要

目的

耳蜗内的液体和组织具有导电性,这会导致使用当代耳蜗植入刺激配置(如单极(MP)刺激)时螺旋神经节神经元产生广泛激活。相对较差的空间选择性被认为会限制植入物的性能,尤其是在嘈杂环境中。已经提出了几种电流聚焦技术来减少激活的扩散,以期实现更好的临床性能。

方法

本研究评估了聚焦多极(FMP)刺激(一种耳蜗内相对较新的聚焦技术)的效果,并将其效果与MP刺激和三极(TP)刺激进行比较。通过记录空间调谐曲线来测量神经活动在中脑下丘(IC)的扩散,以此作为空间选择性的指标。成年猫(n = 6)被急性致聋并植入耳蜗内电极阵列,然后在对侧IC的耳蜗拓扑梯度上记录多单元反应。使用MP、TP和FMP配置对声学和电刺激进行记录。

主要结果

FMP和TP刺激比MP刺激具有更高的空间选择性。然而,与MP刺激相比,FMP和TP刺激的阈值显著更高(p < 0.001)。FMP和TP刺激在空间选择性和阈值方面没有差异。

意义

预计FMP和TP刺激更高的空间选择性将带来更好的临床性能。然而,需要进一步研究来证明在更长时间耳聋后这些刺激模式的效果。

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