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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Mechanical diffraction in a sand-specialist snake
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APS -APS March Meeting 2017 - Event - Mechanical diffraction in a sand-specialist snake

机译:APS -APS 3月会议2017年 - 事件 - 沙子专业蛇中的机械衍射

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Limbless locomotors such as snakes move by pressing the trunk against terrain heterogeneities. Our laboratory studies of the desert-dwelling Mojave Shovel-nosed snake (extit{C. occipitalis}, $sim$40cm long, N=9) reveal that these animals use a stereotyped sinusoidal traveling wave of curvature. However, this snake also encounters rigid obstacles in its natural environment, and the tradeoff between using a cyclic, shape controlled gait versus one which changes shape in response to the terrain is not well understood. We challenged individuals to move across a model deformable substrate (carpet) through a row of 6.4 mm diameter force-sensitive pegs, a model of obstacles such as grass, oriented perpendicular to the direction of motion. Instead of forward-directed reaction forces, reaction forces generated by the pegs were more often perpendicular to the direction of motion. Distributions of post-peg travel angles displayed preferred directions revealing a diffraction-like pattern with a central peak at zero and symmetric peaks at pm19pm3 $^{circ}$ and 41pm 5 $^{circ}$. We observed similar dynamics in a robotic snake using shape-based control. This suggests that this sand-specialist snake adheres to its preferred waveform as opposed to changing in response to heterogeneity.
机译:跛行机车如蛇通过按压躯干对地形异质性移动。我们对沙漠居住的莫哈韦铲鼻蛇的实验室研究(Extit {C.Ocmipitalis},$ 40cm Long,N = 9)揭示这些动物使用刻板的正弦行波曲率。然而,这种蛇还遇到了其自然环境中的刚性障碍,并且使用循环形状控制的步态与响应地形响应形状的循环的权衡并不符合。我们挑战个人穿过模型可变形基板(地毯)穿过6.4毫米直径的力敏感的钉,诸如草的障碍物,垂直于运动方向定向。代替向前指向的反作用力,由钉子产生的反作用力更常常垂直于运动方向。 PEG行驶角度的分布显示了揭示衍射样图案,其在PM19PM3 $ ^ {CIRC} $和41PM 5 $ ^ {CIRC} $处于零和对称峰值。我们观察了使用基于形状的控制的机器人蛇中的类似动态。这表明该沙子专业主义蛇粘附于其优选的波形,而不是响应异质性而改变。

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