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对侧声音对听神经反应的影响。I. 耳蜗传出神经的作用。

Effects of contralateral sound on auditory-nerve responses. I. Contributions of cochlear efferents.

作者信息

Warren E H, Liberman M C

机构信息

Department of Neurobiology, Harvard Medical School, Boston, Massachusetts.

出版信息

Hear Res. 1989 Jan;37(2):89-104. doi: 10.1016/0378-5955(89)90032-4.

Abstract

The response properties of single auditory-nerve fibers in barbiturate-anaesthetized cats were recorded with and without simultaneous presentation of sound to the contralateral ear. The tendons to the middle ear muscles on both sides were cut before all experiments, and contralateral stimuli were restricted to levels below the threshold for crosstalk to the ipsilateral ear. Contralateral tones and broad-band noise were found to suppress the responses of auditory-nerve afferents to ipsilateral tones at their characteristic frequency (CF), but not to tones off CF. The suppression due to contralateral sound required approximately 100-200 ms to develop and to decay. When the contralateral stimuli were tones at the CF, the strongest suppression was observed in low- and medium-spontaneous-rate units with CFs between 1 and 2 kHz. The suppressive effect of contralateral sound completely disappeared immediately after severing the entire olivocochlear bundle (OCB) within the internal auditory meatus. the completeness of the OCB cuts was assessed histologically. Most of the suppressive effect remained after lesions to the OCB in the floor of the IVth ventricle which eliminated the crossed olivocochlear projection but spared most of the uncrossed projection. It is argued that this suppressive effect of contralateral sound is mediated by the uncrossed olivocochlear efferents to the outer hair cells.

摘要

在巴比妥麻醉的猫身上,记录了单根听神经纤维在同侧耳单独接受声音刺激以及同时接受对侧耳声音刺激时的反应特性。在所有实验之前,切断了双侧中耳肌肉的肌腱,并且将对侧刺激的强度限制在不会串扰到同侧耳的阈值以下。结果发现,对侧的纯音和宽带噪声会抑制听神经传入纤维对同侧特征频率(CF)纯音的反应,但不会抑制对非特征频率纯音的反应。对侧声音引起的抑制作用大约需要100 - 200毫秒才能产生和消退。当对侧刺激为特征频率的纯音时,在特征频率介于1至2千赫兹之间的低自发率和中等自发率单位中观察到最强的抑制作用。在内耳道内切断整个橄榄耳蜗束(OCB)后,对侧声音的抑制作用立即完全消失。通过组织学评估OCB切断的完整性。在第四脑室底部对OCB进行损伤后,大部分抑制作用仍然存在,这种损伤消除了交叉的橄榄耳蜗投射,但保留了大部分未交叉的投射。有观点认为,对侧声音的这种抑制作用是由未交叉的橄榄耳蜗传出纤维介导至外毛细胞产生的。

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