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首页> 外文期刊>The Journal of Experimental Biology >Multidimensional analysis of suction feeding performance in fishes: fluid speed, acceleration, strike accuracy and the ingested volume of water
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Multidimensional analysis of suction feeding performance in fishes: fluid speed, acceleration, strike accuracy and the ingested volume of water

机译:鱼类吸食性能的多维分析:流体速度,加速度,打击精度和摄水量

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Suction feeding fish draw prey into the mouth using a flow field that they generate external to the head. In this paper we present a multidimensional perspective on suction feeding performance that we illustrate in a comparative analysis of suction feeding ability in two members of Centrarchidae, the largemouth bass ( Micropterus salmoides) and bluegill sunfish ( Lepomis macrochirus). We present the first direct measurements of maximum fluid speed capacity, and we use this to calculate local fluid acceleration and volumetric flow rate. We also calculated the ingested volume and a novel metric of strike accuracy. In addition, we quantified for each species the effects of gape magnitude, time to peak gape, and swimming speed on features of the ingested volume of water. Digital particle image velocimetry ( DPIV) and high-speed video were used to measure the flow in front of the mouths of three fish from each species in conjunction with a vertical laser sheet positioned on the mid-sagittal plane of the fish. From this we quantified the maximum fluid speed ( in the earthbound and fish's frame of reference), acceleration and ingested volume. Our method for determining strike accuracy involved quantifying the location of the prey relative to the center of the parcel of ingested water. Bluegill sunfish generated higher fluid speeds in the earthbound frame of reference, accelerated the fluid faster, and were more accurate than largemouth bass. However, largemouth bass ingested a larger volume of water and generated a higher volumetric flow rate than bluegill sunfish. In addition, because largemouth bass swam faster during prey capture, they generated higher fluid speeds in the fish's frame of reference. Thus, while bluegill can exert higher drag forces on stationary prey items, largemouth bass more quickly close the distance between themselves and prey. The ingested volume and volumetric flow rate significantly increased as gape increased for both species, while time to peak gape had little effect on the volume. However, peak gape distance did not affect the maximum fluid speed entering the mouth for either species. We suggest that species that generate high fluid speeds in the earthbound frame of reference will commonly exhibit small mouths and a high capacity to deliver force to buccal expansion, while species that ingest a large volume of water and generate high volumetric flow rates will have larger buccal cavities and cranial expansion linkage systems that favor displacement over force delivery.
机译:吸食性鱼类利用流场在头部外部产生的流场将猎物吸入口中。在本文中,我们介绍了吸食性能的多维视角,在对中齿two科两个成员(大口黑鲈(Micropterus salmoides)和蓝Le翻车鱼(Lepomis macrochirus))的吸食能力进行比较分析时说明了这一观点。我们介绍了最大流体速度容量的第一个直接测量值,并以此来计算局部流体加速度和体积流量。我们还计算了摄入量和打击精度的新指标。此外,我们量化了每个物种的空腹幅度,达到空腹高峰的时间以及游泳速度对摄入水量的影响。使用数字粒子图像测速仪(DPIV)和高速视频,结合位于鱼中央矢状平面上的垂直激光片,测量了每种鱼的三种鱼的嘴前流量。据此,我们量化了最大流体速度(以大地和鱼类为参照系),加速度和摄入量。我们确定打击精度的方法涉及量化猎物相对于摄食水包裹中心的位置。 g鱼翻车鱼在大地参考系中产生了更高的流体速度,加速了流体的流动,并且比大嘴鲈更精确。但是,大嘴鲈鱼比大sun翻车鱼摄食的水量更大,产生的体积流量更高。此外,由于大嘴鲈在捕获猎物时游动得更快,因此它们在鱼的参照系中产生了更高的流体速度。因此,尽管蓝g可以对固定的猎物施加更大的阻力,但是大嘴鲈更迅速地闭合它们与猎物之间的距离。两种物种的间隙增加时,摄入的体积和体积流速均显着增加,而达到间隙峰值的时间对该体积影响很小。但是,峰值间隙距离不会影响任何一种进入口腔的最大流体速度。我们建议在地球参考系中产生高流体速度的物种通常会表现出较小的嘴巴和向口腔扩张传递力的高能力,而摄入大量水并产生高体积流量的物种会具有较大的口腔相对于力传递而言,位移更有利的腔和颅骨扩展连接系统。

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