Gleich O, Klump G M, Dooling R J
Institut für Zoologie der Technischen Universität München, Garching, FRG.
Hear Res. 1995 Jan;82(1):100-8. doi: 10.1016/0378-5955(94)00166-n.
Recently, behavioural thresholds obtained in canaries of the Belgian Waterslager strain showed that these birds have an inherited auditory deficit. Canaries of this strain have absolute auditory thresholds at frequencies above 2.0 kHz that are as much as 40 dB above the threshold of canaries of other strains. We obtained audiograms from cochlear microphonics and from compound action potentials from the 8th nerve of Waterslager and non-Waterslager canaries and compare these results to previous behavioural data on hearing in this species. We also examined the growth of evoked potential amplitude-intensity functions in Waterslager and non-Waterslager canaries. Together with reflectance measurements of middle-ear function from both Waterslager and non-Waterslager canaries, we conclude that the origin of auditory deficit in Waterslager canaries lies in the cochlea.
最近,对比利时沃特斯拉格品种金丝雀的行为阈值测试表明,这些鸟类存在遗传性听觉缺陷。该品种金丝雀在频率高于2.0 kHz时的绝对听觉阈值比其他品种金丝雀的阈值高出多达40分贝。我们从沃特斯拉格和非沃特斯拉格金丝雀的耳蜗微音器以及第八神经的复合动作电位中获取了听力图,并将这些结果与该物种先前关于听力的行为数据进行了比较。我们还研究了沃特斯拉格和非沃特斯拉格金丝雀诱发电位幅度-强度函数的增长情况。结合对沃特斯拉格和非沃特斯拉格金丝雀中耳功能的反射率测量,我们得出结论,沃特斯拉格金丝雀听觉缺陷的根源在于耳蜗。