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犬脑干听觉诱发电位与颅骨大小和体重的相关性。

Correlation of brain stem auditory-evoked responses with cranium size and body weight of dogs.

作者信息

Pook H A, Steiss J E

机构信息

Department of Veterinary Internal Medicine, Western College of Veterinary Medicine, University of Saskatchewan, Saskatoon, Canada.

出版信息

Am J Vet Res. 1990 Nov;51(11):1779-83.

PMID:2240806
Abstract

Brain stem auditory-evoked responses were recorded in 9 male and 11 female clinically normal mature dogs, weighing between 2 and 36 kg. Mean wave latency for the entire group of dogs, using 60-dB hearing level click stimuli at 11/s for waves I to VII was: 1.41, 2.21, 2.85, 3.31, 3.71, 5.12, and 6.46 ms, respectively. The mean interpeak latency for waves I and V (IPLIV) was 2.32 ms. Neither gender nor ear effect was detectable. Positive correlation was observed between cranium length, cranium width, nasion-external auditory meatus interval, and body weight for wave-V latency and IPLIV. Such correlation was not documented for wave I. The regression equations for their effects on IPLIV were: cranium length, y = 0.05x + 1.85; cranium width, y = 0.07x + 1.32; nasion-external auditory meatus interval, y = 0.05x + 1.79; and body weight, y = 0.01x + 2.15. On the basis of any of the 3 variables of cranium size or body weight, the study population could be classified into groups of large and small dogs, with the large group having significantly (P less than 0.05) longer latency for wave V and IPLIV. It is recommended that the effect of size variation in dogs on brain stem auditory-evoked responses should be compensated for by use of the regression equation based on cranium length.

摘要

对9只雄性和11只雌性临床正常的成年犬进行脑干听觉诱发电位记录,这些犬体重在2至36千克之间。以11次/秒的频率给予60分贝听力级别的短声刺激,记录I至VII波,整个犬组的平均波潜伏期分别为:1.41、2.21、2.85、3.31、3.71、5.12和6.46毫秒。I波和V波之间的平均峰间潜伏期(IPLIV)为2.32毫秒。未检测到性别和耳的影响。观察到颅骨长度、颅骨宽度、鼻根-外耳道间距和体重与V波潜伏期及IPLIV呈正相关。I波未记录到这种相关性。它们对IPLIV影响的回归方程分别为:颅骨长度,y = 0.05x + 1.85;颅骨宽度,y = 0.07x + 1.32;鼻根-外耳道间距,y = 0.05x + 1.79;体重,y = 0.01x + 2.15。根据颅骨大小或体重这三个变量中的任何一个,研究群体可分为大狗组和小狗组,大狗组V波和IPLIV的潜伏期明显更长(P小于0.05)。建议通过使用基于颅骨长度的回归方程来补偿犬只大小差异对脑干听觉诱发电位的影响。

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