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首页> 外文期刊>The Journal of Experimental Biology >The kinematics of directional control in the fast start of zebrafish larvae
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The kinematics of directional control in the fast start of zebrafish larvae

机译:斑马鱼幼虫快速启动中的方向控制运动学

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Larval fish use the 'fast start' escape response to rapidly evade the strike of a predator with a three-dimensional (3D) maneuver. Although this behavior is essential for the survival of fishes, it is not clear how its motion is controlled by the motor system of a larval fish. As a basis for understanding this control, we measured the high-speed kinematics of the body of zebrafish (Danio rerio) larvae when executing the fast start in a variety of directions. We found that the angular excursion in the lateral direction is correlated with the yaw angle in the initial stage of bending (stage 1). In this way, larvae moved in a manner similar to that reported for adult fish. However, larvae also have the ability to control the elevation of a fast start. We found that escapes directed downwards or upwards were achieved by pitching the body throughout the stages of the fast start. Changes in the pitching angle in each stage were significantly correlated with the elevation angle of the trajectory. Therefore, as a larva performs rapid oscillations in yaw that contribute to undulatory motion, the elevation of an escape is generated by more gradual and sustained changes in pitch. These observations are consistent with a model of motor control where elevation is directed through the differential activation of the epaxial and hypaxial musculature. This 3D motion could serve to enhance evasiveness by varying elevation without slowing the escape from a predator.
机译:幼虫鱼利用“快速启动”逃避响应,以三维(3D)动作快速躲避捕食者的打击。尽管这种行为对于鱼类的生存至关重要,但尚不清楚其运动如何由幼体鱼的运动系统控制。作为理解此控制的基础,我们在各种方向上执行快速启动时,测量了斑马鱼(Danio rerio)幼虫身体的高速运动学。我们发现,横向弯曲角与弯曲初始阶段(阶段1)的偏航角相关。这样,幼虫的移动方式与成鱼报告的相似。但是,幼虫也具有控制快速启动的高度的能力。我们发现,通过在快速启动的各个阶段俯仰身体,可以实现向下或向上的逃生。每个阶段俯仰角的变化与轨迹的仰角显着相关。因此,当幼虫在偏航中执行快速振荡而导致起伏运动时,通过逐渐和持续的音高变化会产生逃生的高度。这些观察结果与电动机控制模型一致,在电动机控制模型中,通过外向和外向肌肉组织的差异激活来定向抬高。这种3D运动可以通过改变高度来增强躲避能力,而不会减慢从掠食者的逃脱。

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