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线性加速度脉冲诱发的短潜伏期前庭诱发电位(VsEPs)的起源。

Origins of the short latency vestibular evoked potentials (VsEPs) to linear acceleration impulses.

作者信息

Plotnik M, Sichel J Y, Elidan J, Honrubia V, Sohmer H

机构信息

Department of Physiology, Hebrew University-Hadassah Medical School, Jerusalem, Israel.

出版信息

Am J Otol. 1999 Mar;20(2):238-43.

Abstract

OBJECTIVE

To verify the vestibular origin of the short latency (t < 12.5 msec) vestibular evoked potentials (VsEPs) in response to linear acceleration impulses (L-VsEPs) and to differentiate between the contributions of the otolith organs and the semi-circular canals (SCCs) to their initiation.

DESIGN AND METHODS

L-VsEPs (stimulus intensity, 3 g; rise time, 1.0 to 1.5 msec) were recorded in fat sand rats (Psammomys obesus) before and after unilateral labyrinthectomy, plugging of the SCCs in the remaining ear, and bilateral labyrinthectomy. Auditory nerve brainstem evoked responses (ABRs) and VsEPs to angular acceleration impulses (A-VsEPs) were also recorded. Wave amplitudes and latencies were statistically analyzed (MANOVA, repeated t-tests).

RESULTS

In the intact animal, the linear VsEPs consisted of 5 to 6 waves, several mV in amplitude, with short latencies. The latency of the first wave was 2.0 msec. These waves were abolished after bilateral labyrinthectomy. Before and after plugging of the SCCs, linear acceleration VsEP wave latencies did not change, although amplitudes were slightly reduced. Similar results were obtained with respect to ABRs recorded from the same ear. Angular acceleration VsEPs were abolished after SCC plugging.

CONCLUSIONS

These and other results confirm that the linear VsEPs are compound action potentials of the vestibular pathway, the first wave is the response of the vestibular nerve, and they are initiated mainly in the otolith organs.

摘要

目的

验证短潜伏期(t < 12.5毫秒)前庭诱发电位(VsEPs)对线性加速度脉冲(L-VsEPs)反应的前庭起源,并区分耳石器官和半规管(SCCs)对其起始的贡献。

设计与方法

在单侧迷路切除术前、术后,堵塞剩余耳的半规管以及双侧迷路切除术后,记录肥胖型沙鼠(欧氏肥沙鼠)的L-VsEPs(刺激强度3g;上升时间1.0至1.5毫秒)。还记录了听神经脑干诱发电位(ABRs)和对角加速度脉冲的VsEPs(A-VsEPs)。对波幅和潜伏期进行统计学分析(多变量方差分析、重复t检验)。

结果

在完整动物中,线性VsEPs由5至6个波组成,波幅数毫伏,潜伏期短。第一波潜伏期为2.0毫秒。双侧迷路切除术后这些波消失。堵塞半规管前后,线性加速度VsEP波潜伏期不变,尽管波幅略有降低。从同一耳记录的ABRs也得到类似结果。堵塞半规管后角加速度VsEPs消失。

结论

这些及其他结果证实,线性VsEPs是前庭通路的复合动作电位,第一波是前庭神经的反应,且它们主要起源于耳石器官。

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