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首页> 外文期刊>The Journal of Experimental Biology >Function of the hypobranchial muscles and hyoidiomandibular ligament during suction capture and bite processing in whitespotted bamboo sharks, Chiloscyllium plagiosum
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Function of the hypobranchial muscles and hyoidiomandibular ligament during suction capture and bite processing in whitespotted bamboo sharks, Chiloscyllium plagiosum

机译:Hypobrancangial肌肉和杂散在抽吸竹鲨中的捕捞捕获和咬合加工过程中的功能,Chiloscylium Plagiosum

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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 Chiloscyllium plagiosum 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 C. plagiosum 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 jawand 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.
机译:在Textost鱼中吸入喂养是一种依赖职能的行为,需要通过脓肿和躯干肌肉快速且有力地扩张猩树腔。为了提高扩展的电力生产,许多物种采用系列趋势和捕获机制来存储和释放弹性应变能量。吸入饲养鲨如辣鱼柱柱,缺乏大量的毛细血管内肌腱,但两个脓肿性肌腱,冠状酸碱和coracoarcualis(ch和ca;杂色抑郁症)串联排列,并深且平行于第三个肌肉,coracomandublularis(cm,钳口压抑器)。 CH和CA的布置表明C.柱塞正在使用CH肌肉而不是肌腱存储和释放弹性应变能。在这里,我们描述了饲养设备的解剖学,并在使用姿态测定法测量的CM,CH和Ca中的舌和颌动词和血管下缩短的血管上的数据,同时记录肌肉活动和颊压。猎物捕获结果表明,在jawand术语之前,通过缩短CA缩短CH主动延长CH. CH和CH和CA的激活的主动延长表明CH在捕食捕获期间的功能储存和释放弹性能。提出了捕获机制,涉及受到厘米影响的遛杂交韧带(LHML),钳口和CeratoHyals之间的动态力矩臂和四杆连杆。此外,在诸如释放连锁约束的诸如咬合处理的行为中,可以暂时脱离LHML。

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