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豚鼠的听觉中潜伏期反应。

Auditory middle latency responses in the guinea pig.

作者信息

McGee T J, Ozdamar O, Kraus N

出版信息

Am J Otolaryngol. 1983 Mar-Apr;4(2):116-22. doi: 10.1016/s0196-0709(83)80013-1.

Abstract

Auditory middle latency responses (latencies 6 to 50 msec in guinea pigs) were recorded from eight awake, restrained guinea pigs. Before recording, screw electrodes were implanted in the skull in a coronal plane in line with the bregma. Another electrode, which served to monitor auditory brainstem responses, was placed 1 cm posterior to the bregma. All electrodes were referenced to a lead positioned 2 cm anterior to the bregma. During the recording session, click stimuli of various repetition rates and intensity levels were delivered monaurally in a closed sound system. Auditory brainstem responses were monitored to ensure normal functioning of the peripheral auditory system. Responses from electrodes at the midline and over the temporal area ipsilateral to the stimulus ear were greatly attenuated or absent. From an electrode over the temporal area contralateral to the stimulus ear, two positive peaks occurred at latencies of approximately 12 and 27 msec. A negative trough was identified at approximately 17 msec. Latency and amplitude functions for this waveform were determined for various stimulus levels. Response amplitude increased as stimulus repetition rate was decreased. Anesthesia greatly altered waveform structure and prolonged peak latencies. These effects were more marked at stimulus repetition rates faster than 10/sec than at slower rates. Properties of the guinea pig middle latency response are compared with those previously reported for cats and humans.

摘要

从八只清醒、受限的豚鼠身上记录听觉中潜伏期反应(豚鼠中潜伏期为6至50毫秒)。记录前,将螺丝钉电极沿冠状面植入与前囟对齐的颅骨中。另一个用于监测听觉脑干反应的电极置于前囟后方1厘米处。所有电极均参考置于前囟前方2厘米处的导联。在记录过程中,在封闭的声音系统中对不同重复率和强度水平的短声刺激进行单耳给药。监测听觉脑干反应以确保外周听觉系统的正常功能。来自中线和刺激耳同侧颞区电极的反应大大减弱或消失。在刺激耳对侧的颞区电极上,在大约12毫秒和27毫秒的潜伏期出现两个正峰。在大约17毫秒处确定一个负波谷。针对各种刺激水平确定了该波形的潜伏期和振幅函数。随着刺激重复率的降低,反应振幅增加。麻醉极大地改变了波形结构并延长了峰值潜伏期。这些影响在刺激重复率高于10/秒时比在较低重复率时更为明显。将豚鼠中潜伏期反应的特性与先前报道的猫和人类的特性进行了比较。

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