Smith D I, Lee F S, Mills J H
Dept. of Otolaryngology and Communicative Sciences, Medical University of South Carolina, Charleston, SC 29425.
Hear Res. 1989 Nov;42(2-3):293-303. doi: 10.1016/0378-5955(89)90153-6.
Auditory middle latency responses (MLR) and auditory brainstem responses (ABR) were measured with epidural electrodes in unanesthetized gerbils. Response thresholds of simultaneously recorded MLRs and ABRs, and latencies and amplitudes of MLR peaks were analyzed with respect to stimulus intensity (10-80 dB SPL) and frequency (0.5, 1, 2, 4, 8 and 16 kHz). Only minor changes in the latencies of the MLR were associated with increases in stimulus intensity. Changes in latencies were more apparent for waves A and B as compared to wave C, and were significant only at low intensities. Latencies did not change significantly as a function of stimulus frequency. Amplitudes of the MLR were highly variable between animals, particularly waves B and C, and showed complex changes with intensity. In general, wave amplitudes were inversely related to stimulus frequency. The gerbil MLR resembles MLRs recorded under similar conditions in guinea pig, cat, and rat. Some qualitative similarities between gerbil and human MLRs are apparent. Results indicate that the MLR is a less sensitive measure of hearing threshold relative to the fast waves of the ABR at frequencies above 1 kHz. However, clearly defined MLRs are elicited with a wide range of stimulus frequencies. Because the surface recorded MLR reflects activation of central auditory pathways, including the cortex, it may provide an electrophysiological measure which can be utilized to study central components of normal and pathological auditory function.
在未麻醉的沙鼠中,使用硬膜外电极测量听觉中潜伏期反应(MLR)和听觉脑干反应(ABR)。针对刺激强度(10 - 80 dB SPL)和频率(0.5、1、2、4、8和16 kHz),分析同时记录的MLR和ABR的反应阈值,以及MLR波峰的潜伏期和振幅。刺激强度增加时,MLR的潜伏期仅有轻微变化。与波C相比,波A和波B的潜伏期变化更明显,且仅在低强度时显著。潜伏期并不随刺激频率的变化而显著改变。不同动物之间MLR的振幅变化很大,尤其是波B和波C,并且随强度呈现复杂变化。一般来说,波幅与刺激频率呈负相关。沙鼠的MLR类似于在豚鼠、猫和大鼠的类似条件下记录的MLR。沙鼠和人类的MLR之间存在一些明显的定性相似性。结果表明,在1 kHz以上的频率,相对于ABR的快波,MLR对听力阈值的测量不太敏感。然而,在广泛的刺激频率下都能引出明确的MLR。由于表面记录的MLR反映了包括皮层在内的中枢听觉通路的激活,它可能提供一种可用于研究正常和病理听觉功能中枢成分的电生理测量方法。