Lauer Amanda M, Dooling Robert J, Leek Marjorie R
Department of Psychology, University of Maryland, College Park, MD, 20742, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2009 Feb;195(2):193-202. doi: 10.1007/s00359-008-0398-z. Epub 2008 Dec 12.
Belgian Waterslager canaries (BWC), bred for a distinct low-pitched song, have an inherited high-frequency hearing loss associated with hair cell abnormalities. Hair cells near the abneural edge of the papilla, which receive primarily efferent innervation in normal birds, are among the most severely affected. These cells are thought to support nonlinear active processing in the avian ear, though the mechanisms are poorly understood. Here we present psychophysical evidence that suggests degraded active processing in BWC compared to normal-hearing non-BWC. Critical ratios, psychophysical masking patterns and phase effects on masking by harmonic complexes were measured in BWC and non-BWC using operant conditioning procedures. Critical ratios were much larger in BWC than in non-BWC at high frequencies. Psychophysical tuning curves derived from the masking patterns for BWC were broadened at high frequencies. BWC also showed severely reduced phase effects on masking by harmonic complexes compared to non-BWC. As has been hypothesized previously for hearing-impaired humans, these results are consistent with a loss of active processing mechanisms in BWC.
比利时沃特斯拉格金丝雀(BWC)因其独特的低音调歌声而培育,存在与毛细胞异常相关的遗传性高频听力损失。乳头神经非附着边缘附近的毛细胞在正常鸟类中主要接受传出神经支配,这些细胞受影响最为严重。尽管其机制尚不清楚,但这些细胞被认为支持鸟类耳朵中的非线性主动处理过程。在这里,我们提供了心理物理学证据,表明与听力正常的非BWC相比,BWC的主动处理能力有所下降。使用操作性条件反射程序在BWC和非BWC中测量了临界比率、心理物理学掩蔽模式以及谐波复合体对掩蔽的相位效应。在高频时,BWC的临界比率比非BWC大得多。从BWC的掩蔽模式得出的心理物理学调谐曲线在高频时变宽。与非BWC相比,BWC对谐波复合体掩蔽的相位效应也严重降低。正如之前对听力受损人类的假设一样,这些结果与BWC中主动处理机制的丧失一致。