...
首页> 外文期刊>The Journal of Experimental Biology >Conservation and variation in the feeding mechanism of the spiny dogfish Squalus acanthias
【24h】

Conservation and variation in the feeding mechanism of the spiny dogfish Squalus acanthias

机译:刺狗鱼棘棘鱼的摄食机制的保守性和变异性

获取原文
获取原文并翻译 | 示例

摘要

Changes in the feeding mechanism with feeding behavior were investigated using high-speed video and electromyography to examine the kinematics and motor pattern of prey capture, manipulation and transport in the spiny dogfish Squalus acanthias (Squalidae: Squaliformes), In this study, Squalus acanthias used bath suction and ram behaviors to capture and manipulate prey, while only suction was used to transport prey. The basic kinematic feeding sequence observed in other aquatic-feeding lower vertebrates is conserved in the spiny dogfish, Prey capture, bite manipulation and suction transport events are characterized by a common pattern of head movements and motor activity, but are distinguishable by differences in duration and relative timing. In general, capture events are longer in duration than manipulation and transport events, as found in other aquatic-feeding lower vertebrates. Numerous individual effects were found, indicating that individual sharks are capable of varying head movements and motor activity among successful feeding events. Upper jaw protrusion in the spiny dogfish is not restricted by its orbitostylic jaw suspension; rather, the upper jaw is protruded by 30% of its head length, considerably more than in the lemon shark Negaprion brevirostris (Carcharhinidae: Carcharhiniformes) (18%) with its hyostylic jaw suspension. One function of upper jaw protrusion is to assist in jaw closure by protruding the upper jaw as well as elevating the lower jaw to close the gape, thus decreasing the time to jaw closure. The mechanism of upper jaw protrusion was found to differ between squaliform and carcharhiniform sharks. Whereas the levator palatoquadrati muscle assists in retracting the upper jaw in the spiny dogfish, it assists in protruding the upper jaw in the lemon shark. This study represents the first comprehensive electromyographic and kinematic analysis of the feeding mechanism in a squaliform shark. [References: 59]
机译:使用高速视频和肌电图研究了摄食机制随摄食行为的变化,以检查棘背犬鲨鱼棘鱼(Squalidae:Squaliformes)捕食,操纵和运输时的运动学和运动模式。在本研究中,使用了棘棘鱼浴的吸力和撞锤行为来捕获和操纵猎物,而仅使用吸力来运输猎物。在其他水生食性低脊椎动物中观察到的基本运动学食性序列在多刺的dog鱼中得以保留。猎物的捕获,咬咬和吸吮运输事件的特征在于头部运动和运动活动的共同模式,但在持续时间和相对时间。通常,捕获事件的持续时间比操纵和运输事件的持续时间长,如其他以水生食物为食的低等脊椎动物中发现的那样。发现了许多个体效应,表明个体鲨鱼能够在成功的觅食事件之间改变头部运动和运动活动。多刺dog鱼的上颚突出部不受其眶耳颌下垂的限制;相反,上颚突出了其头部长度的30%,比带有鲨鱼的下颚悬垂的柠檬鲨Negaprion brevirostris(Carcharhinidae:Carcharhiniformes)(18%)的突出得多。上颌骨突出的功能之一是通过使上颌骨突出以及升高下颌骨以闭合间隙来辅助颌骨闭合,从而减少颌骨闭合的时间。发现鲨鱼鲨鱼和鲨鱼鲨鱼的上颌前突机制不同。提肌palatoquadrati肌肉有助于使有刺的dog鱼的上颚缩回,而它有助于使柠檬鲨中的上颚突出。这项研究代表了对鲨鱼鲨鱼进食机制的首次全面的肌电图和运动学分析。 [参考:59]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号