Grassi S, Bambagioni D, Ottaviani F, Serafini G
Institute of Human Physiology, University of Perugia, Italy.
J Comp Physiol A. 1993 May;172(4):473-9. doi: 10.1007/BF00213529.
The link between stapedius muscle activity and acoustic structure of vocalization was analysed in cocks of age 20-30 to 90-100 days old. The results show that stapedius muscle activation depends on the acoustic structure of vocalization and changes during vocal development. This dependence was observed in spontaneous calls and in vocalizations elicited by stimulating the mesencephalic "calling area". In 30-day-old cocks stapedius muscle EMG response is never associated with vocalizations with an acoustic energy content which is always distributed at frequencies higher than 2000 Hz. The coupling between vocalization and stapedius muscle activity begins later, when birds produce vocalizations with acoustic energy shifted towards lower frequencies. Overall, stapedius muscle activity is related to a bird's production of high amplitude low frequencies. These results support the hypothesis that the primary role of the stapedius muscle during normal vocal development is to dampen the amplitude of low frequency energy that reaches the cochlea during vocalization.
对20 - 30日龄至90 - 100日龄的公鸡,分析了镫骨肌活动与发声声学结构之间的联系。结果表明,镫骨肌的激活取决于发声的声学结构,并在发声发育过程中发生变化。这种依赖性在自发叫声以及刺激中脑“叫声区”引发的发声中均有观察到。在30日龄的公鸡中,镫骨肌肌电图反应从未与声能含量始终分布在高于2000赫兹频率的发声相关联。发声与镫骨肌活动之间的耦合在鸟类发出声能向低频转移的发声时开始得较晚。总体而言,镫骨肌活动与鸟类发出的高振幅低频有关。这些结果支持了这样一种假说,即在正常发声发育过程中,镫骨肌的主要作用是衰减发声时到达耳蜗的低频能量的振幅。