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杜父鱼(卡罗来纳杜父鱼)通过交替的发声肌肉收缩来发声。

Sound generation in the searobin (Prionotus carolinus), a fish with alternate sonic muscle contraction.

作者信息

Connaughton Martin A

机构信息

Washington College, Department of Biology, 300 Washington Ave, Chestertown, MD 21620, USA.

出版信息

J Exp Biol. 2004 Apr;207(Pt 10):1643-54. doi: 10.1242/jeb.00928.

Abstract

The Northern searobin (Prionotus carolinus) contracts its paired sonic muscles alternately rather than simultaneously during sound production. This study describes this phenomenon and examines its effect on sound production by recording sound and EMGs during voluntary and electrically stimulated calls. Sounds produced by a single twitch resulted in a two-part sound representing contraction and relaxation sounds. The relaxation sound of one twitch coincides with the contraction sound of the next twitch of that muscle. Maximum amplitude of evoked sounds occurs between 100 Hz and 140 Hz, approximately half the fundamental frequency of a voluntarily calling fish. The muscle is capable of following electrical stimulation at frequencies of up to 360 Hz. Rapid damping and response over a wide frequency range indicate that the swimbladder is a highly damped, broadly tuned resonator. A consequence of alternate contraction is a 3.3 dB loss in acoustic pressure due to the contraction of a single sonic muscle at a time. This decrease in amplitude is offset by a doubling of fundamental frequency and a constructive interaction between the sides of the bladder, resulting in increased amplitude of each unilaterally produced sound. The alternate contraction of the bilateral sonic muscles represents a novel solution to the inherent trade-off between speed and force of contraction in rapidly contracting sonic muscles.

摘要

北方海鲂(Prionotus carolinus)在发声时,其成对的发声肌肉交替收缩而非同时收缩。本研究描述了这一现象,并通过在自愿发声和电刺激发声过程中记录声音和肌电图,研究了其对发声的影响。单次抽搐产生的声音由两部分组成,分别代表收缩声和舒张声。一块肌肉一次抽搐的舒张声与下一次抽搐的收缩声重合。诱发声音的最大振幅出现在100赫兹至140赫兹之间,约为自愿发声鱼类基频的一半。该肌肉能够跟随高达360赫兹频率的电刺激。在很宽的频率范围内快速衰减和响应表明,鱼鳔是一个高度衰减、调谐范围广的共鸣器。交替收缩的一个结果是,由于一次只有一块发声肌肉收缩,声压损失3.3分贝。振幅的这种减小被基频加倍以及鱼鳔两侧之间的相长干涉所抵消,从而导致单侧产生的每个声音的振幅增加。双侧发声肌肉的交替收缩代表了一种新的解决方案,用于解决快速收缩的发声肌肉在收缩速度和力量之间固有的权衡问题。

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