首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Mutually exclusive muscle designs: the power output of the locomotory and sonic muscles of the oyster toadfish (Opsanus tau)
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Mutually exclusive muscle designs: the power output of the locomotory and sonic muscles of the oyster toadfish (Opsanus tau)

机译:互斥的肌肉设计:牡蛎蟾蜍(Opsanus tau)的运动和声波肌肉的功率输出

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摘要

Animals perform a vast array of motor activities. Although it has generally been accepted that muscles are well suited to the function that they must perform, specialization for performing one function may compromise their ability for carrying out another. We examined this principle in the toadfish muscular system: slow-twitch red and fast-twitch white myotomal muscles are used for powering swimming at relatively low frequencies, while the superfast swimbladder muscle powers mating calls by contracting at 100 Hz. We measured muscle power output over a wide range of frequencies. The red and white locomotory muscles could not generate power over ca. 2.2 and 12 Hz, respectively and, hence, could not power sound production. In contrast, the swimbladder muscle has many specializations that permit it to generate power at frequencies in excess of 100 Hz. However, these specializations drastically reduce its power output at low frequencies: the swimbladder muscle generated only one-twentieth of the power of the red muscle and one-seventh of the power of the white muscle at the frequencies used during swimming. To generate the same total power needed for swimming would require unfeasibly large amounts of swimbladder muscle that could not fit into the fish. Hence, the designs of the swimbladder and locomotory muscles are mutually exclusive.
机译:动物执行各种各样的运动活动。尽管人们普遍认为肌肉非常适合其必须执行的功能,但是专门执行一种功能可能会损害其执行另一种功能的能力。我们在蟾蜍的肌肉系统中研究了这一原理:慢肌红色和快肌白色肌层肌肉用于以相对较低的频率为游泳提供动力,而超快游泳膀胱肌肉则通过以100 Hz的收缩来为交配呼叫提供动力。我们在很宽的频率范围内测量了肌肉的力量输出。红色和白色的运动型肌肉无法在大约20分钟内产生能量。分别为2.2和12 Hz,因此无法为声音产生提供动力。相反,游泳囊肌肉具有许多专长,可以使其以超过100 Hz的频率产生能量。但是,这些专业知识极大地降低了低频时的功率输出:在游泳期间使用的频率,游泳囊肌肉仅产生红色肌肉功率的二十分之一,而白色肌肉功率的七分之一。为了产生相同的游泳总功率,将需要大量无法适应鱼的游泳膀胱肌肉。因此,游泳囊和运动肌的设计是相互排斥的。

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