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首页> 外文期刊>The Journal of Experimental Biology >The behavioural transition from straight to curve walking: kinetics of leg movement parameters and the initiation of turning
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The behavioural transition from straight to curve walking: kinetics of leg movement parameters and the initiation of turning

机译:从直行到弯道行走的行为转变:腿部运动参数的动力学和转弯的开始

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The control of locomotion requires the ability to adapt movement sequences to the behavioural context of the animal. In hexapod walking, adaptive behavioural transitions require orchestration of at least 18 leg joints and twice as many muscle groups. Although kinematics of locomotion has been studied in several arthropod species and in a range of different behaviours, almost nothing is known about the transition from one behavioural state to another. Implicitly, most studies on context-dependency assume that all parameters that undergo a change during a behavioural transition do so at the same rate. The present study tests this assumption by analysing the sequence of kinematic events during turning of the stick insect Carausius morosus, and by measuring how the time courses of the changing parameters differ between legs. Turning was triggered reliably at a known instant in time by means of the optomotor response to large-field visual motion. Thus, knowing the start point of the transition, the kinematic parameters that initiate turning could be ranked according to their time constants. Kinematics of stick insect walking vary considerably among trials and within trials. As a consequence, the behavioural states of straight walking and curve walking are described by the distributions of 13 kinematic parameters per leg and of orientation angles of head and antennae. The transitions between the behavioural states are then characterised by the fraction of the variance within states by which these distributions differ, and by the rate of change of the corresponding time courses. The antennal optomotor response leads that of the locomotor system. Visually elicited turning is shown to be initiated by stance direction changes of both front legs. The transition from straight to curve walking in stick insects follows different time courses for different legs, with time constants of kinematic parameters ranging from 1.7 s to more than 3 s. Therefore, turning is a behavioural transition that involves a characteristic orchestration of events rather than synchronous parallel actions with a single time constant.
机译:运动的控制需要使运动顺序适应动物行为环境的能力。在六足动物步行中,适应性行为转变要求至少协调18个腿部关节和两倍的肌肉群。尽管已经在几种节肢动物物种和一系列不同的行为中研究了运动学,但是对于从一种行为状态到另一种行为状态的转变几乎一无所知。隐含地,大多数关于上下文相关性的研究都假设在行为过渡期间经历变化的所有参数都以相同的速率变化。本研究通过分析粘虫Carausius morosus转动过程中的运动学事件序列,以及通过测量腿间变化参数的时程如何变化,来测试该假设。通过对大视野视觉运动的光马达响应,在已知的时间点可靠地触发了转向。因此,知道过渡的起点,就可以根据其时间常数对启动转向的运动学参数进行排序。在试验中和试验中,竹节虫行走的运动学差异很大。结果,通过每条腿13个运动学参数的分布以及头部和触角的定向角来描述直行和弯行的行为状态。行为状态之间的转换然后通过这些分布不同的状态内的方差分数和相应时程的变化率来表征。触角光动力反应领先于运动系统。视觉上引起的转弯显示为由两条前腿的姿势方向变化引起。竹节虫从直线行走到曲线行走的过渡过程针对不同的腿部遵循不同的时程,运动学参数的时间常数范围为1.7 s至3 s以上。因此,转弯是一种行为过渡,涉及事件的特征编排,而不是具有单个时间常数的同步并行动作。

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