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首页> 外文期刊>The Journal of Experimental Biology >Dynamic stabilization of rapid hexapedal locomotion
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Dynamic stabilization of rapid hexapedal locomotion

机译:快速六足运动的动态稳定

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To stabilize locomotion, animals must generate forces appropriate to overcome the effects of perturbations and to maintain a desired speed or direction of movement. We studied the stabilizing mechanism employed by rapidly running insects by using a novel apparatus to perturb running cockroaches (Blaberus discoidalis). The apparatus used chemical propellants to accelerate a small projectile, generating reaction force impulses of less than 10 ms duration. The apparatus was mounted onto the thorax of the insect, oriented to propel the projectile laterally and loaded with propellant sufficient to cause a nearly tenfold increase in lateral velocity relative to maxima observed during unperturbed locomotion. Cockroaches were able to recover from these perturbations in 27 12 ms (mean S.D., N=9) when running on a high-friction substratum. Lateral velocity began to decrease 13 5 ms (mean S.D., N=11) following the start of a perturbation, a time comparable with the fastest reflexes measured in cockroaches. Cockroaches did not require step transitions to recover from lateral perturbations. Instead, they exhibited viscoelastic behavior in the lateral direction, with spring constants similar to those observed during unperturbed locomotion. The rapid onset of recovery from lateral perturbations supports the possibility that, during fast locomotion, intrinsic properties of the musculoskeletal system augment neural stabilization by reflexes. [References: 80]
机译:为了稳定运动,动物必须产生适当的力来克服扰动的影响并保持所需的运动速度或方向。我们研究了通过使用新型装置扰动正在运行的蟑螂(Blaberus discoidalis)而快速运行的昆虫所采用的稳定机制。该设备使用化学推进剂来加速小弹丸,产生持续时间少于10毫秒的反作用力脉冲。将该装置安装在昆虫的胸腔上,定向成可横向推动弹丸,并装有足够的推进剂,相对于在不受干扰的运动过程中观察到的最大值,该推进剂可使横向速度增加近十倍。当在高摩擦力的基质上运行时,蟑螂能够在27 12 ms(平均标准误差,N = 9)中从这些扰动中恢复。扰动开始后,横向速度开始降低13 5 ms(平均S.D.,N = 11),这一时间与蟑螂中测得的最快反射速度相当。蟑螂不需要阶跃过渡即可从侧向扰动中恢复。相反,它们在横向方向上表现出粘弹性行为,其弹簧常数类似于在不受干扰的运动过程中观察到的弹簧常数。从侧向扰动中恢复的快速开始支持以下可能性:在快速运动期间,肌肉骨骼系统的内在特性通过反射增强了神经稳定性。 [参考:80]

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