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发育过程中刺激速率对猫脑干听觉诱发电位的影响。II. 峰值幅度。

Effects of stimulus rate on the feline brain-stem auditory evoked response during development. II. Peak amplitudes.

作者信息

Burkard R, McGee J, Walsh E J

机构信息

Department of Communicative Disorders and Sciences, University of Buffalo, New York 14214, USA.

出版信息

J Acoust Soc Am. 1996 Aug;100(2 Pt 1):991-1002. doi: 10.1121/1.416210.

Abstract

The effects of click rate on brain-stem auditory evoked response (BAER) peak amplitudes were investigated in adult cats and kittens in four age groups: 10, 15, 20, and 30 post-natal days. Conventional BAERs were obtained at rates of 5, 10, 30, 60, and 90 Hz. Maximum length sequences (MLSs) were used to obtain responses at rates of 83, 125, 250, 500, and 1000 Hz. For both techniques, clicks were presented at 90 dB pSPL, and at 20 dB above threshold (20 dB SL). BAERs were observed for all age groups, at all click rates. However, not all peaks could be identified in all animals, with peak absence more common for the youngest kittens at the higher rates. BAER waves i through iv decreased in amplitude with increasing click rate for all age groups. In general, the smallest peak amplitudes were observed for the youngest animals (10- to 15-day-old) studied, while the largest amplitudes were found for the adult, 20- or 30-day-old animals, regardless of rate. When amplitudes were normalized to eliminate the influences of differences in absolute values due to developmental stage (i.e., made proportional to the amplitude observed at 5 Hz), the younger age groups exhibited enhanced sensitivity to the effects of stimulus rate. However, exceptions to this trend were observed. In general, amplitudes of BAER peaks obtained with the MLS procedure were smaller than those obtained using conventional averaging with a similar average click rate, regardless of age. Finally, the most efficient method for obtaining a response at a criterion signal-to-noise ratio was typically by the use of conventional averaging at a rate of 60 or 90 Hz, for all peaks and age groups, Overall, these data suggest that higher stimulus rates produce greater neural adaptation resulting in reduced BAER peak amplitudes. The mechanism responsible for the acquisition of adult-like adaptation properties appears to develop during the early post-natal period in the cat.

摘要

在成年猫和四个年龄组的幼猫(出生后10、15、20和30天)中,研究了点击速率对脑干听觉诱发电位(BAER)峰值幅度的影响。以5、10、30、60和90Hz的速率获得传统BAER。使用最大长度序列(MLS)以83、125、250、500和1000Hz的速率获得反应。对于这两种技术,点击均以90dB pSPL和高于阈值20dB(20dB SL)呈现。在所有年龄组、所有点击速率下均观察到BAER。然而,并非所有动物都能识别出所有峰值,在较高速率下,最年幼的幼猫中峰值缺失更为常见。所有年龄组的BAER波i至iv的幅度均随点击速率增加而降低。一般来说,在所研究的最年幼动物(10至15日龄)中观察到最小的峰值幅度,而在成年、20或30日龄动物中发现最大的幅度,与速率无关。当对幅度进行归一化以消除发育阶段导致的绝对值差异的影响时(即与在5Hz时观察到的幅度成比例),较年轻的年龄组对刺激速率的影响表现出更高的敏感性。然而,观察到了这种趋势的例外情况。一般来说,无论年龄如何,使用MLS程序获得的BAER峰值幅度都小于使用具有相似平均点击速率的传统平均法获得的幅度。最后,对于所有峰值和年龄组,在标准信噪比下获得反应的最有效方法通常是使用60或90Hz的传统平均法。总体而言,这些数据表明,较高的刺激速率会产生更大的神经适应性,导致BAER峰值幅度降低。负责获得类似成年动物适应特性的机制似乎在猫出生后的早期发育阶段形成。

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