首页> 外文期刊>The Journal of Experimental Biology >Blood python (Python brongersmai) strike kinematics and forces are robust to variations in substrate geometry
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Blood python (Python brongersmai) strike kinematics and forces are robust to variations in substrate geometry

机译:血蟒 (Python brongersmai) 撞击运动学和力对基板几何形状的变化具有鲁棒性

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摘要

Snake strikes are some of the most rapid accelerations in terrestrial vertebrates. Generating rapid body accelerations requires high ground reaction forces, but on flat surfaces snakes must rely on static friction to prevent slip. We hypothesize that snakes may be able to take advantage of structures in the environment to prevent their body from slipping, potentially allowing them to generate faster and more forceful strikes. To test this hypothesis, we captured high-speed video and forces from defensive strikes of juvenile blood pythons (Python brongersmai) on a platform that was either open on all sides or with two adjacent walls opposite the direction of the strike. Contrary to our predictions, snakes maintained high performance on open platforms by imparting rearward momentum to the posterior body and tail. This compensatory behavior increases robustness to changes in their strike conditions and could allow them to exploit variable environments.
机译:蛇击是陆生脊椎动物中速度最快的加速之一。产生快速的身体加速度需要很高的地面反作用力,但在平坦的表面上,蛇必须依靠静摩擦力来防止打滑。我们假设蛇可能能够利用环境中的结构来防止它们的身体滑动,从而可能使它们产生更快、更有力的攻击。为了验证这一假设,我们拍摄了高速视频和幼年血蟒(Python brongersmai)防御性打击的力量,该平台要么四面开放,要么与攻击方向相反的两堵相邻墙壁。与我们的预测相反,蛇通过向后肢和尾巴传递向后动量,在开放平台上保持了高性能。这种补偿行为增加了对打击条件变化的鲁棒性,并允许它们利用可变环境。

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