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首页> 外文期刊>Biological Cybernetics >A dynamic model of thoracic differentiation for the control of turning in the stick insect
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A dynamic model of thoracic differentiation for the control of turning in the stick insect

机译:控制竹节虫转弯的胸廓分化动力学模型

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摘要

Leg movements of stick insects (Carausius morosus) making turns towards visual targets are examined in detail, and a dynamic model of this behaviour is proposed. Initial results suggest that front legs shape most of the body trajectory, while the middle and hind legs just follow external forces (Rosano H, Webb B, in The control of turning in real and simulated stick insects, vol. 4095, pp 145–156, 2006). However, some limitations of this explanation and dissimilarities in the turning behaviour of the insect and the model were found. A second set of behavioural experiments was made by blocking front tarsi to further investigate the active role of the other legs for the control of turning. The results indicate that it is necessary to have different roles for each pair of legs to replicate insect behaviour. We demonstrate that the rear legs actively rotate the body while the middle legs move sideways tangentially to the hind inner leg. Furthermore, we show that on average the middle inner and hind outer leg contribute to turning while the middle outer leg and hind inner leg oppose body rotation. These behavioural results are incorporated into a 3D dynamic robot simulation. We show that the simulation can now replicate more precisely the turns made by the stick insect.
机译:详细研究了粘虫(Carausius morosus)转向视觉目标的腿部运动,并提出了这种行为的动力学模型。初步结果表明,前腿塑造了人体的大部分运动轨迹,而中腿和后腿仅跟随外力作用(Rosano H,Webb B,第4095卷,第145–156页,“控制转入真实和模拟的条虫” ,2006)。但是,发现了这种解释的某些局限性以及昆虫和模型的转弯行为的不同之处。通过阻塞前睑板进行第二组行为实验,以进一步研究其他腿在控制转弯中的积极作用。结果表明,有必要使每对腿具有不同的角色,以复制昆虫的行为。我们证明了后腿主动旋转身体,而中腿与后内侧腿相切向侧面移动。此外,我们表明,平均而言,中间的内腿和后腿有助于转动,而中间的外腿和后腿反对身体旋转。这些行为结果被整合到3D动态机器人仿真中。我们表明,该模拟现在可以更精确地复制由条虫引起的转弯。

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