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首页> 外文期刊>Brain research >Effects of omni-directional noise-exposure during hearing onset and age on auditory spatial resolution in the Mongolian gerbil (Meriones unguiculatus) -- a behavioral approach.
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Effects of omni-directional noise-exposure during hearing onset and age on auditory spatial resolution in the Mongolian gerbil (Meriones unguiculatus) -- a behavioral approach.

机译:蒙古沙鼠(Meriones unguiculatus)在听力发作和年龄期间全向噪声暴露对听觉空间分辨率的影响-一种行为方法。

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Inhibitory inputs to the binaural brainstem nuclei medial and lateral superior olives (MSO and LSO, respectively) are thought to be important for sound localization in mammals. Here, we investigate whether aged gerbils that typically exhibit degenerative changes in auditory nuclei providing inhibition to MSO and LSO show diminished localization ability. We also tested the localization ability in gerbils reared in omni-directional white noise during hearing onset, a treatment that affects the adjustment of inhibitory inputs to MSO neurons possibly resulting in weakened sensitivity to interaural time difference. Localization ability of both groups was compared to that of young gerbils raised under control conditions. Stimuli had a duration of 125 ms and were pure tones of 0.5, 1, 2, 4 and 8 kHz, 300-Hz-bands of noise centered at 0.5, 2 and 8 kHz or broad-band noise. Gerbils trained in a two-alternative-forced-choice procedure indicated if sounds were presented from the left or from the right by choosing the respective response compartment of a Y-shaped experimental setup. The minimum resolvable angle (MRA) was calculated as the minimum angle between two loudspeaker locations that a gerbil was able to discriminate. MRAs for aged gerbils were higher compared to controls, whereas MRAs of noise-reared gerbils did not differ from those of the control group. Results are discussed with respect to the progressive degeneration affecting the gerbil's auditory system, changes in the anatomical arrangement of inhibitory inputs on binaural neurons in the MSO, and hearing thresholds.
机译:抑制双耳脑干内侧和外侧上橄榄(分别为MSO和LSO)的输入对于哺乳动物的声音定位很重要。在这里,我们调查衰老的沙鼠是否通常表现出对MSO和LSO抑制作用的听觉核的退行性改变,其定位能力是否降低。我们还测试了听力发作期间在全向白噪声下饲养的沙鼠的定位能力,这种治疗会影响对MSO神经元抑制性输入的调节,可能会导致对耳间时差的敏感性减弱。将两组的定位能力与在对照条件下饲养的幼小沙鼠进行比较。刺激的持续时间为125毫秒,是0.5、1、2、4和8 kHz的纯音,以0.5、2和8 kHz为中心的300 Hz频带的噪声或宽带噪声。沙鼠经过两次或两次的强制选择程序训练后,通过选择Y形实验装置的相应响应格来指示是从左侧还是从右侧发出声音。最小可分辨角度(MRA)计算为沙鼠能够分辨的两个扬声器位置之间的最小角度。老年沙鼠的MRA比对照组高,而噪音大的沙鼠的MRA与对照组没有差异。讨论了有关影响沙土鼠听觉系统的进行性变性,MSO中双耳神经元抑制性输入的解剖结构变化以及听觉阈值的结果。

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