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听觉神经慢性电刺激后的耳蜗病理学。I:听力正常的小猫。

Cochlear pathology following chronic electrical stimulation of the auditory nerve. I: Normal hearing kittens.

作者信息

Ni D, Shepherd R K, Seldon H L, Xu S A, Clark G M, Millard R E

机构信息

Department of Otolaryngology, University of Melbourne, Australia.

出版信息

Hear Res. 1992 Sep;62(1):63-81. doi: 10.1016/0378-5955(92)90203-y.

Abstract

The present study examines the histopathological effects of long-term intracochlear electrical stimulation in young normal hearing animals. Eight-week old kittens were implanted with scala tympani electrode arrays and stimulated for periods of up to 1500 h using charge balanced biphasic current pulses at charge densities in the range 21-52 microC cm-2 geom. per phase. Both click and electrically evoked auditory brainstem responses were periodically recorded to monitor the status of the hair cell and spiral ganglion cell populations. In addition, the impedance of the stimulating electrodes was measured daily to monitor their electrical characteristics during chronic implantation. Histopathological examination of the cochleas showed no evidence of stimulus induced damage to cochlear structures when compared with implanted, unstimulated control cochleas. Indeed, there was no statistically significant difference in the ganglion cell density adjacent to the stimulating electrodes when compared with a similar population in implanted control cochleas. In addition, hair cell loss, which was restricted to regions adjacent to the electrode array, was not influenced by the degree of electrical stimulation. These histopathological findings were consistent with the evoked potential recordings. Finally, electrode impedance data correlated well with the degree of tissue growth observed within the scala tympani. The present findings indicate that the young mammalian cochlea is no more susceptible to cochlear pathology following chronic implantation and electrical stimulation than is the adult.

摘要

本研究考察了长期耳蜗内电刺激对年轻正常听力动物的组织病理学影响。对8周龄的小猫植入鼓阶电极阵列,并使用电荷平衡双相电流脉冲以每相21 - 52微库仑/平方厘米几何面积的电荷密度进行长达1500小时的刺激。定期记录短声和电诱发听性脑干反应,以监测毛细胞和螺旋神经节细胞群的状态。此外,每天测量刺激电极的阻抗,以监测其在长期植入过程中的电学特性。与植入但未刺激的对照耳蜗相比,耳蜗的组织病理学检查未发现刺激诱发的耳蜗结构损伤迹象。实际上,与植入对照耳蜗中的类似细胞群相比,刺激电极附近的神经节细胞密度没有统计学上的显著差异。此外,仅限于电极阵列附近区域的毛细胞损失不受电刺激程度的影响。这些组织病理学发现与诱发电位记录结果一致。最后,电极阻抗数据与鼓阶内观察到的组织生长程度密切相关。目前的研究结果表明,与成年动物相比,年轻哺乳动物的耳蜗在长期植入和电刺激后对耳蜗病变并不更敏感。

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