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小鼠听觉皮层双侧损伤对听觉惊吓反应的影响。

Effects of bilateral lesions of auditory cortex in mice on the acoustic startle response.

作者信息

Hunter K P, Willott J F

机构信息

Department of Psychology, Northern Illinois University, DeKalb 60115.

出版信息

Physiol Behav. 1993 Dec;54(6):1133-9. doi: 10.1016/0031-9384(93)90337-f.

Abstract

The acoustic startle response (ASR) was used to investigate the effects of auditory cortical lesions on a brain stem-mediated auditory behavior. The ASRs were obtained longitudinally from young adult C57BL/6J mice before bilateral ablation of auditory cortex, 1 day after ablation, and 1 month later. Control mice received lesions of nonauditory cortex. For some mice, averaged brain stem-evoked responses (ABR) were obtained, and these indicated no effects of lesions on auditory sensitivity. One month after surgery, mice with auditory cortex ablations were statistically indistinguishable from controls on all suprathreshold measures of ASR. However, 1 day after ablation of auditory cortex, experimental animals (but not controls) exhibited a change in ASR amplitude (but not threshold or latency). When a noise burst of 80 dB SPL was used to elicit the ASR, the amplitude was diminished, but with a 110 dB stimulus, amplitude was enhanced. The findings can be interpreted in one of two ways: temporary interference with modulation of the ASR normally performed by auditory cortex; or a general effect of auditory cortex ablation on brain stem auditory circuits not specific to the ASR. In any event, if auditory cortex plays a modulatory role with regard to the ASR, it is apparently nonessential and/or readily compensated for after ablation.

摘要

听觉惊跳反应(ASR)被用于研究听觉皮层损伤对脑干介导的听觉行为的影响。在双侧切除听觉皮层之前、切除后1天以及1个月后,纵向获取成年C57BL/6J小鼠的ASR。对照小鼠接受非听觉皮层损伤。对于一些小鼠,获取了平均脑干诱发电位(ABR),结果表明损伤对听觉敏感性没有影响。手术后1个月,听觉皮层切除的小鼠在所有ASR的阈上测量指标上与对照组在统计学上无差异。然而,在听觉皮层切除后1天,实验动物(而非对照组)的ASR幅度发生了变化(但阈限或潜伏期未变)。当使用80 dB SPL的噪声脉冲诱发ASR时,幅度减小,但使用110 dB的刺激时,幅度增强。这些发现可以用两种方式之一来解释:对通常由听觉皮层执行的ASR调制的暂时干扰;或者听觉皮层切除对脑干听觉回路的一般影响,并非特定于ASR。无论如何,如果听觉皮层对ASR起调制作用,那么它显然不是必需的,和/或在切除后很容易得到补偿。

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