首页> 外文期刊>The Journal of Experimental Biology >Novel muscle and connective tissue design enables high extensibility and controls engulfment volume in lunge-feeding rorqual whales
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Novel muscle and connective tissue design enables high extensibility and controls engulfment volume in lunge-feeding rorqual whales

机译:新颖的肌肉和结缔组织设计可实现高延展性并控制弓箭喂养的鲸鱼的吞噬体积

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Muscle serves a wide variety of mechanical functions during animal feeding and locomotion, but the performance of this tissue is limited by how far it can be extended. In rorqual whales, feeding and locomotion are integrated in a dynamic process called lunge feeding, where an enormous volume of prey-laden water is engulfed into a capacious ventral oropharyngeal cavity that is bounded superficially by skeletal muscle and ventral groove blubber (VGB). The great expansion of the cavity wall presents a mechanical challenge for the physiological limits of skeletal muscle, yet its role is considered fundamental in controlling the flux of water into the mouth. Our analyses of the functional properties and mechanical behaviour of VGB muscles revealed a crimped microstructure in an unstrained, non-feeding state that is arranged in parallel with dense and straight elastin fibres. This allows the muscles to accommodate large tissue deformations of the VGB yet still operate within the known strain limits of vertebrate skeletal muscle. VGB transverse strains in routine-feeding rorquals were substantially less than those observed in dead ones, where decomposition gas stretched the VGB to its elastic limit, evidence supporting the idea that eccentric muscle contraction modulates the rate of expansion and ultimate size of the ventral cavity during engulfment.
机译:在动物饲养和运动过程中,肌肉具有多种机械功能,但是该组织的性能受到其伸展程度的限制。在不规则的鲸鱼中,进食和运动被整合成一个动态过程,即弓步进食,在此过程中,大量载有猎物的水被吞入了一个巨大的腹口咽腔,其表面被骨骼肌和腹沟脂肪(VGB)所包围。腔壁的巨大膨胀对骨骼肌的生理极限提出了机械挑战,但它的作用被认为是控制水进入口腔的通量的基础。我们对VGB肌肉的功能特性和机械行为的分析显示,在未应变,非进食状态下卷曲的微观结构与致密而直的弹性蛋白纤维平行排列。这允许肌肉适应VGB的大组织变形,但仍在脊椎动物骨骼肌的已知应变极限内运行。常规喂养的罗勒夸克斯犬的VGB横向应变明显小于死者,在分解气体中VGB的横向应变使VGB拉伸至其弹性极限,这证明了偏心肌收缩调节腹股沟扩张的速度和最终腹腔大小的观点吞没。

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