大鼠对线性加速脉冲的短潜伏期前庭诱发电位(vsep)

M Plotnik , J Elidan , M Mager , H Sohmer
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引用次数: 29

摘要

本研究记录了37只大鼠对线性加速脉冲反应的短潜伏期(t<12.7 ms)前庭诱发电位(vsep)。一种新技术(基于螺线管)用于产生线性力脉冲,并将其传递到动物的头部。脉冲的最大峰值加速度为12g。在脉冲过程中,位移为50 μm (4 g),上升时间为1.0 ms。通常采用2/s的刺激速率。vsep(128次刺激的平均响应,数字滤波器:300-1500 Hz)由4 - 6个平均振幅(4 g刺激)为1-5 μV的清晰波组成,在耳廓和顶点电极上记录。双侧使用饱和KCl溶液后,vsep可以抵抗白噪声掩蔽,并被显著抑制(P<0.05),这表明听觉和体感系统的贡献可以忽略不计。反应潜伏期随刺激强度呈幂函数减小,第一波振幅随刺激强度呈s型函数增大。VsEP反应在可达到的最低强度(0.06-0.4 g)下仍然存在,并在9 g时达到饱和。当刺激速率增加到20/s时,后半部分的振幅减小。这些结果表明,响应线性加速度的vsep在其性质上与先前记录的响应角加速度脉冲的vsep相似。这些线性加速度的vsep很可能是在耳石器官中开始的。
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Short latency vestibular evoked potentials (VsEPs) to linear acceleration impulses in rats

In this study, short latency (t<12.7 ms) vestibular evoked potentials (VsEPs) in response to linear acceleration impulses were recorded in 37 rats. A new technique (based on a solenoid) was used for generating linear force impulses that were delivered to the animal's head. The impulse had a maximal peak acceleration of 12 g. During the impulse, the displacement was 50 μm (at 4 g) and the rise time was 1.0 ms. A stimulation rate of 2/s was usually used. The VsEPs (averaged responses to 128 stimulations, digital filter: 300–1500 Hz) were recorded with electrodes on pinna and vertex, and were composed of 4–6 clear waves with mean amplitudes (for a 4 g stimulus) of 1–5 μV. The VsEPs were resistant to white noise masking, and were significantly suppressed (P<0.05) following bilateral application of a saturated KCl solution to the inner ear, showing that contributions of the auditory and somatosensory systems are negligible. The latency of the response decreased as a power law function of stimulus magnitude, and the amplitude of the first wave increased as a sigmoid function of stimulus magnitude. VsEP responses were still present at the lowest intensities attainable (0.06–0.4 g) and reached saturation at 9 g. The amplitude of the later components was reduced when stimulus rate was elevated to 20/s. These results suggest that VsEPs in response to linear accelerations are similar in their nature to VsEPs in response to angular acceleration impulses that were previously recorded. These VsEPs to linear accelerations are most likely initiated in the otolith organs.

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