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白点竹鲨在吸食捕获和撕咬处理过程中下鳃肌和舌颌韧带的功能

Function of the hypobranchial muscles and hyoidiomandibular ligament during suction capture and bite processing in white-spotted bamboo sharks, .

作者信息

Ramsay Jason B, Wilga Cheryl D

机构信息

Biological Department, Westfield State University, 577 Western Avenue, Westfield, MA 01086, USA

Department of Biological Sciences, College of the Environmental and Life Sciences, University of Rhode Island, 120 Flagg Road, Kingston, RI 02881-0816, USA.

出版信息

J Exp Biol. 2017 Nov 1;220(Pt 21):4047-4059. doi: 10.1242/jeb.165290. Epub 2017 Aug 14.

DOI:10.1242/jeb.165290
PMID:28807935
Abstract

Suction feeding in teleost fish is a power-dependent behavior, requiring rapid and forceful expansion of the orobranchial cavity by the hypobranchial and trunk muscles. To increase power production for expansion, many species employ in-series tendons and catch mechanisms to store and release elastic strain energy. Suction feeding sharks such as lack large in-series tendons on the hypobranchials, yet two of the hypobranchials, the coracohyoideus and coracoarcualis (CH and CA; hyoid depressors), are arranged in-series, and run deep and parallel to a third muscle, the coracomandibularis (CM, jaw depressor). The arrangement of the CH and CA suggests that is using the CH muscle rather than a tendon to store and release elastic strain energy. Here we describe the anatomy of the feeding apparatus, and present data on hyoid and jaw kinematics and fascicle shortening in the CM, CH and CA quantified using sonomicrometry, with muscle activity and buccal pressure recorded simultaneously. Results from prey capture show that prior to jaw and hyoid depression the CH is actively lengthened by shortening of the in-series CA. The active lengthening of the CH and pre-activation of the CH and CA suggest that the CH is functioning to store and release elastic energy during prey capture. Catch mechanisms are proposed involving a dynamic moment arm and four-bar linkage between the hyoidiomandibular ligament (LHML), jaws and ceratohyals that is influenced by the CM. Furthermore, the LHML may be temporarily disengaged during behaviors such as bite processing to release linkage constraints.

摘要

硬骨鱼的吸食式摄食是一种依赖力量的行为,需要下咽肌和躯干肌肉迅速有力地扩张口咽腔。为了增加扩张所需的力量,许多物种采用串联腱和卡锁机制来储存和释放弹性应变能。像某些吸食式摄食的鲨鱼,下咽骨上没有大型串联腱,但其中两块下咽骨,即喙舌骨肌和喙弓肌(CH和CA;舌骨下压肌)是串联排列的,并且与第三块肌肉,即喙下颌肌(CM,颌骨下压肌)深层平行。CH和CA的排列表明,该鲨鱼利用CH肌肉而非腱来储存和释放弹性应变能。在此,我们描述摄食器官的解剖结构,并呈现关于舌骨和颌骨运动学以及CM、CH和CA中肌束缩短的数据,这些数据通过超声测量法进行量化,同时记录肌肉活动和口腔压力。捕食结果显示,在颌骨和舌骨下压之前,CH通过串联CA的缩短而主动拉长。CH的主动拉长以及CH和CA的预激活表明,CH在捕食过程中起到储存和释放弹性能量的作用。我们提出了卡锁机制,该机制涉及一个动态力臂以及舌颌韧带(LHML)、颌骨和角舌骨之间的四杆联动,这一联动受CM影响。此外,在诸如咬食处理等行为过程中,LHML可能会暂时脱离,以释放联动约束。

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