Plonek M, Nicpoń J, Kubiak K, Wrzosek M
Department of Internal Diseases with Clinic for Horses, Dogs and Cats, The Faculty of Veterinary Medicine, Wroclaw University of Environmental and Life Sciences, pl. Grunwaldzki 47, 50-366, Wrocław, Poland.
Centre for Experimental Diagnostics and Biomedical Innovations, Grunwaldzki sq. 47, 50-366, Wroclaw, Poland.
Vet Res Commun. 2017 Mar;41(1):23-31. doi: 10.1007/s11259-016-9668-3. Epub 2016 Nov 29.
Auditory plasticity in response to unilateral deafness has been reported in various animal species. Subcortical changes occurring in unilaterally deaf young dogs using the brainstem auditory evoked response have not been evaluated yet. The aim of this study was to assess the brainstem auditory evoked response findings in dogs with unilateral hearing loss, and compare them with recordings obtained from healthy dogs.
Brainstem auditory evoked responses (amplitudes and latencies of waves I, II, III, V, the V/I wave amplitude ratio, wave I-V, I-III and III-V interpeak intervals) were studied retrospectively in forty-six privately owned dogs, which were either unilaterally deaf or had bilateral hearing. The data obtained from the hearing ears in unilaterally deaf dogs were compared to values obtained from their healthy littermates.
Statistically significant differences in the amplitude of wave III and the V/I wave amplitude ratio at 75 dB nHL were found between the group of unilaterally deaf puppies and the control group. The recordings of dogs with single-sided deafness were compared, and the results showed no statistically significant differences in the latencies and amplitudes of the waves between left- (AL) and right-sided (AR) deafness.
The recordings of the brainstem auditory evoked response in canines with unilateral inborn deafness in this study varied compared to recordings from healthy dogs. Future studies looking into electrophysiological assessment of hearing in conjunction with imaging modalities to determine subcortical auditory plasticity and auditory lateralization in unilaterally deaf dogs are warranted.
已有报道称,多种动物物种存在因单侧耳聋而产生的听觉可塑性。尚未评估使用脑干听觉诱发电位对单侧耳聋幼犬进行的皮质下变化。本研究的目的是评估单侧听力损失犬的脑干听觉诱发电位结果,并将其与健康犬的记录进行比较。
回顾性研究了46只私人拥有的犬的脑干听觉诱发电位(波I、II、III、V的振幅和潜伏期、V/I波幅比、波I-V、I-III和III-V峰间期),这些犬要么单侧耳聋,要么双耳听力正常。将单侧耳聋犬听力正常耳朵的数据与从其健康同窝犬获得的值进行比较。
在单侧耳聋幼犬组和对照组之间,发现75dB nHL时波III的振幅和V/I波幅比存在统计学显著差异。对单侧耳聋犬的记录进行比较,结果显示左耳(AL)和右耳(AR)耳聋之间波的潜伏期和振幅没有统计学显著差异。
本研究中单侧先天性耳聋犬的脑干听觉诱发电位记录与健康犬的记录不同。有必要开展未来研究,结合成像方式对听力进行电生理评估,以确定单侧耳聋犬的皮质下听觉可塑性和听觉偏侧化。