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首页> 外文期刊>The Journal of Experimental Biology >Biomechanics of omnidirectional strikes in flat spiders
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Biomechanics of omnidirectional strikes in flat spiders

机译:平蜘蛛的全向罢工生物力学

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Many ambush predators attack prey using rapid strikes, but these strikes are typically only anteriorly directed. However, a predator may attack laterally and posteriorly oriented prey if it can couple the strikes with rapid body reorientation. Here, we examined omnidirectional strikes in flattie spiders (Selenopidae), a group of sit-and-wait ambush predators found on open surfaces. These spiders attack prey throughout their entire peripheral range using rapid strikes that consist of rapid translation and rotation toward the prey. These spiders ambush with radially oriented, long, laterigrade legs in a ready-to-fire status. Once prey is detected, the spider maneuvers toward it using a single flexion of the legs closest to the prey, which is assisted by 0-3 extension strides by the contralateral legs. The within-stance joint actions by a few legs generate a large resultant force directed toward the prey and a large turning moment. Furthermore, the turning speed is enhanced by rapid midair leg adductions, which effectively reduce the spider's moment of inertia during angular acceleration. Our results demonstrate a novel hunting behavior with high maneuverability that is generated with effectively controlled reconfigurations of long, laterigrade legs. These results provide insights for understanding the diversity of animal legs and developing highly maneuverable multi-legged robots.
机译:许多伏击掠食者使用快速罢工攻击猎物,但这些罢工通常只有直接指导。然而,如果它可以通过快速的身体重新定向耦合攻击,捕食者可以横向和后向后攻击猎物。在这里,我们检查了扁平蜘蛛(Selenopidae)中的全向罢工,一群位于开放表面上的坐着等待的伏击捕食者。这些蜘蛛使用快速翻译和朝向猎物的快速罢工来攻击整个外围范围的捕食。这些蜘蛛伏击径向定向,长,肩腿,在即可致内的地位。一旦检测到猎物,蜘蛛使用最靠近猎物的腿的单个屈曲,这通过对侧腿通过0-3延伸部门的辅助。几个腿的静脉内关节动作产生了朝向猎物和大转动力矩的大型合成力。此外,通过快速的中位腿部施加,转弯速度增强,这有效地减少了角度加速期间蜘蛛的惯性矩。我们的结果表明,具有高机动性的新型狩猎行为,可有效地控制长,肩腿的重新配置。这些结果提供了了解动物腿的多样性以及开发高度可动性的多腿机器人的见解。

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