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水杨酸盐大剂量给药影响下丘和听觉皮层的时间处理。

Temporal processing in inferior colliculus and auditory cortex affected by high doses of salicylate.

机构信息

Center for Hearing and Deafness, State University of New York at Buffalo, 3435 Main Street, Buffalo, NY 14214, USA.

出版信息

Brain Res. 2010 Jul 16;1344:96-103. doi: 10.1016/j.brainres.2010.04.077. Epub 2010 May 6.

Abstract

Speech recognition and language learning can be affected by both peripheral and central auditory system impairment. However, whether sensorineural hearing loss would affect central auditory processing is not clear. Recent studies found that salicylate not only affects outer hair cell motility in the cochlea, but also blocks GABAergic neuron activities in central nervous systems. This provides a good animal model to evaluate the role of sensorineural hearing loss and central inhibition in auditory temporal processing. In this study, gap prepulse inhibition (gap-PPI) of the acoustic startle reflex was used to measure effects of salicylate on gap detection acuity. Salicylate administration (250 mg/kg) resulted in a significant reduction in gap-PPI amplitude and an increased gap detection threshold at 50 dB SPL, but not at 60 or 80 dB SPL. To identify the physiological effects of salicylate on central auditory system function, the inferior colliculus (IC) and auditory cortex (AC) responses were measured from conscious rats with chronically implanted electrodes. Salicylate induced a significant increase of the gap-detection threshold in AC-evoked potentials, but not in the IC-evoked potentials. The AC gap-detection threshold shift was diminished measured at an equal sensational level. These results suggest that salicylate-induced temporal processing deficits may be due to peripheral hearing loss, not central disinhibition.

摘要

语音识别和语言学习可能受到外周和中枢听觉系统损伤的影响。然而,感音神经性听力损失是否会影响中枢听觉处理尚不清楚。最近的研究发现,水杨酸盐不仅影响耳蜗中的外毛细胞运动,还阻断中枢神经系统中的 GABA 能神经元活动。这为评估感音神经性听力损失和中枢抑制在听觉时程处理中的作用提供了一个很好的动物模型。在这项研究中,使用声爆反射的间隙前脉冲抑制(gap-PPI)来测量水杨酸盐对间隙检测锐度的影响。水杨酸盐给药(250mg/kg)导致 gap-PPI 幅度显著降低,在 50dB SPL 时的间隙检测阈值增加,但在 60dB 或 80dB SPL 时则没有。为了确定水杨酸盐对中枢听觉系统功能的生理影响,从用慢性植入电极进行实验的清醒大鼠中测量了下丘(IC)和听觉皮层(AC)的反应。水杨酸盐在 AC 诱发的电位中引起了显著的间隙检测阈值升高,但在 IC 诱发的电位中则没有。在相等的感觉水平上测量时,AC 间隙检测阈值的变化减小。这些结果表明,水杨酸盐诱导的时程处理缺陷可能是由于外周听力损失,而不是中枢抑制。

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