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电刺激可诱导外周听觉系统发生突触变化。

Electrical stimulation induces synaptic changes in the peripheral auditory system.

作者信息

Li Qiang, Lu Tianhao, Zhang Chen, Hansen Marlan R, Li Shufeng

机构信息

Department of Otolaryngology & Head-Neck Surgery, Eye & ENT Hospital of Fudan University, Shanghai, China.

NHC Key Laboratory of Hearing Medicine, Fudan University, Shanghai, China.

出版信息

J Comp Neurol. 2020 Apr;528(6):893-905. doi: 10.1002/cne.24802. Epub 2019 Nov 6.

Abstract

Since a rapidly increasing number of neurostimulation devices are used clinically to modulate specific neural functions, the impact of electrical stimulation on targeted neural structure and function has become a key issue. In particular, the specific effect of electrical stimulation via a cochlear implant (CI) on inner hair cell (IHC) synapses remains unclear. Importantly, CI candidacy has recently expanded to include patients with partial hearing loss. Unfortunately, some CI recipients experience progressive hearing loss after activation of electrical stimulation. The mechanism(s) accounting for loss of residual hearing following electrical stimulation is unknown. Here normal-hearing guinea pigs were implanted with customized CIs. Intracochlear electrical stimulation with an intensity equal to or above electrically evoked compound action potential (ECAP) threshold decreased the excitability of auditory nerve. Furthermore, the number of synapses between IHCs and the afferent spiral ganglion neurons (SGNs) also decreased after electrical stimulation with higher intensities. However, no significant change was observed in the packing density and perikaryal area of SGNs as well as the quantity of hair cells. These results carry important implications for use of CIs in patients with residual hearing and for an increasing number of patients treated with other neurostimulation devices. Notably, the results were based on acute electrical stimulation. Considering the complex interaction between CIs and targeted tissues, it is urgent to conduct further research to clarify whether the similar changes could be induced by chronic electrical stimulation.

摘要

由于临床上使用的神经刺激设备数量迅速增加,以调节特定的神经功能,电刺激对目标神经结构和功能的影响已成为一个关键问题。特别是,通过人工耳蜗(CI)进行电刺激对内毛细胞(IHC)突触的具体作用仍不清楚。重要的是,CI的适用范围最近已扩大到包括部分听力损失的患者。不幸的是,一些CI接受者在电刺激激活后会出现渐进性听力损失。电刺激后残余听力丧失的机制尚不清楚。在这里,正常听力的豚鼠被植入定制的CI。强度等于或高于电诱发复合动作电位(ECAP)阈值的耳蜗内电刺激降低了听神经的兴奋性。此外,在更高强度的电刺激后,IHC与传入螺旋神经节神经元(SGN)之间的突触数量也减少了。然而,SGN的堆积密度和胞体面积以及毛细胞数量均未观察到明显变化。这些结果对于在残余听力患者中使用CI以及越来越多接受其他神经刺激设备治疗的患者具有重要意义。值得注意的是,这些结果是基于急性电刺激。考虑到CI与目标组织之间复杂的相互作用,迫切需要进行进一步的研究,以阐明慢性电刺激是否会引起类似的变化。

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