首页> 外文期刊>The Journal of Experimental Biology >Prey-capture in Pomacanthus semicirculatus (Teleostei, Pomacanthidae): functional implications of intramandibular joints in marine angelfishes
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Prey-capture in Pomacanthus semicirculatus (Teleostei, Pomacanthidae): functional implications of intramandibular joints in marine angelfishes

机译:捕获Po鱼(Teleostei,Pomacanthidae)中的猎物:海洋神仙鱼的颌下关节的功能含义

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摘要

We examined prey-capture morphology and kinematics in the angelfish, Pomacanthus semicirculatus (Cuvier 1931), to evaluate the magnitude and role of functional specialisation. The feeding apparatus of P. semicirculatus possess three biomechanical mechanisms of particular interest: (1) a novel intramandibular joint, permitting dentary rotation and protruded jaw closure; (2) an opercular linkage facilitating mandible depression; and (3) a suspensorial linkage with two novel points of flexion, permitting anterior rotation of the suspensorium and augmenting mandible protrusion. Prey-capture kinematics were quantified using motion analysis of high-speed video, yielding performance profiles illustrating timing of onset, duration and magnitude of movement in these three biomechanical systems, and other variables traditionally quantified in studies of teleostean ram-suction feeding activity. Mandible depression and suspensorial rotation both augmented mandible protrusion, and coincided during jaw protrusion, typically increasing head length by 30%. Jaw closure appeared to result from contraction of the adductor mandibulae segment A2, which rotated the dentary by approximately 30 degrees relative to the articular. This resulted in jaw closure with the mandible fully depressed and the jaws at peak-protrusion. Feeding events were concluded by a high-velocity jaw retraction (20-50 ms), and completed in 450-750 ms. Feeding kinematics and morphology of Pomacanthus differed from other biting teleosts, and more closely resemble some long-jawed ram-suction feeders. The structural and functional modifications in the Pomacanthus feeding apparatus are matched to an unusual diet of structurally resilient and firmly attached benthic prey.
机译:我们研究了神仙鱼Pomacanthus semicirculatus(Cuvier 1931)中捕食者的形态和运动学,以评估功能专业化的程度和作用。半圆形假单胞菌的进食装置具有三个特别令人关注的生物力学机制:(1)一种新颖的下颌内关节,允许牙齿旋转和突出的颌骨闭合; (2)有助于下颌骨下陷的手术性连接; (3)具有两个新的屈曲点的悬架连接,允许悬架向前旋转并增加下颌骨突出。使用高速视频的运动分析来定量捕获猎物的运动学,产生的性能曲线说明了这三个生物力学系统中的发作时间,运动的持续时间和幅度,以及其他在硬骨垫吸食活动研究中传统上量化的变量。下颌骨下垂和悬吊旋转都增加了下颌骨突出,并且在下颌突出时重合,通常使头部长度增加30%。下颌闭合似乎是由于内收肌下颌节段A2的收缩而引起的,该节段使牙齿相对于关节旋转了大约30度。这导致颌骨闭合,下颌骨完全压下,颌骨处于突出状态。喂食事件通过高速颚缩回(20-50毫秒)结束,并在450-750毫秒内完成。 mac鱼的进食运动学和形态与其他咬硬骨鱼不同,并且更类似于一些长颚抽脂进食器。 Pomacanthus饲喂设备的结构和功能改进与结构弹性和牢固附着的底栖猎物的特殊饮食相匹配。

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