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首页> 外文期刊>The Journal of Experimental Biology >Sound production in piranhas is associated with modifications of the spinal locomotor pattern
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Sound production in piranhas is associated with modifications of the spinal locomotor pattern

机译:Piranhas的声音生产与脊柱运动模式的修改有关

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摘要

In piranhas, sounds are produced through the vibration of the swim bladder wall caused by the contraction of bilateral sonic muscles. Because they are solely innervated by spinal nerves, these muscles likely evolved from the locomotor hypaxial musculature. The transition from a neuromuscular system initially shaped for slow movements (locomotion) to a system that requires a high contraction rate (sound production) was accompanied with major peripheral structural modifications, yet the associated neural adjustments remain to this date unclear. To close this gap, we investigated the activity of both the locomotor and the sonic musculature using electromyography. The comparison between the activation patterns of both systems highlighted modifications of the neural motor pathway: (1) a transition from a bilateral alternating pattern to a synchronous activation pattern, (2) a switch from a slow- to a high-frequency regime, and (3) an increase in the synchrony of motor neuron activation. Furthermore, our results demonstrate that sound features correspond to the activity of the sonic muscles, as both the variation patterns of periods and amplitudes of sounds highly correspond to those seen in the sonic muscle electromyograms (EMG(sonic)) Assuming that the premotor network for sound production in piranhas is of spinal origin, our results show that the neural circuit associated with spinal motor neurons transitioned from the slow alternating pattern originally used for locomotion to a much faster simultaneous activation pattern to generate vocal signals.
机译:在食人鱼中,声音是通过双侧音速肌肉收缩引起的膀胱壁振动产生的。因为它们完全由脊神经支配,所以这些肌肉很可能是从运动性半轴性肌肉组织进化而来的。从最初为缓慢运动(运动)而形成的神经肌肉系统过渡到需要高收缩率(发声)的系统,伴随着主要的外周结构改变,但相关的神经调节至今仍不清楚。为了缩小这一差距,我们使用肌电图研究了运动肌和声肌的活动。这两个系统的激活模式之间的比较突出了神经运动通路的改变:(1)从双边交替模式过渡到同步激活模式,(2)从慢速模式切换到高频模式,以及(3)运动神经元激活的同步性增加。此外,我们的结果表明,声音特征与声波肌肉的活动相对应,因为声音的周期和振幅的变化模式与声波肌肉肌电图(EMG(sonic))中的变化模式高度一致,假设食人鱼发声的前运动网络源自脊柱,我们的结果表明,与脊髓运动神经元相关的神经回路从最初用于运动的缓慢交替模式转变为产生声音信号的更快的同时激活模式。

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