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首页> 外文期刊>The Journal of Experimental Biology >Context-dependent changes in strength and efficacy of leg coordination mechanisms
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Context-dependent changes in strength and efficacy of leg coordination mechanisms

机译:腿部协调机制的力量和功效的上下文相关变化

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摘要

Appropriate coordination of stepping in adjacent legs is crucial for stable walking. Several leg coordination rules have been derived from behavioural experiments on walking insects, some of which also apply to arthropods with more than six legs and to four-legged walking vertebrates. Three of these rules affect the timing of stance-swing transition [rules 1 to 3 (sensu Cruse)]. They can give rise to normal leg coordination and adaptive responses to disturbances, as shown by kinematic simulations and dynamic hardware tests. In spite of their importance to the study of animal walking, the coupling strength associated with these rules has never been measured experimentally. Generally coupling strength of the underlying mechanisms has been considered constant rather than context-dependent.The present study analyses stepping patterns of the stick insect Carausius morosus during straight and curve walking sequences. To infer strength and efficacy of coupling between pairs of sender and receiver legs, the likelihood of the receiver leg being in swing is determined, given a certain delay relative to the time of a swing-stance (or stance-swing) transition in the sender leg. This is compared to a corresponding measure for independent, hence uncoupled, step sequences. The difference is defined as coupling strength. The ratio of coupling strength and its theoretical maximum is defined as efficacy.Irrespective of the coordination rule, coupling strength between ipsilateral leg pairs is at least twice that of contralateral leg pairs, being strongest between ipsilateral hind and middle legs and weakest between contralateral middle legs. Efficacy is highest for inhibitory rule 1, reaching 84-95% for ipsilateral and 29-65% for contralateral leg pairs. Efficacy of excitatory rules 2 and 3 ranges between 35-56% for ipsilateral and 8-21% for contralateral leg pairs. The behavioural transition from straight to curve walking is associated with context-dependent changes in coupling strength, increasing in both outer leg pairs and decreasing between inner hind and middle leg. Thus, the coordination rules that are thought to underlie many adaptive properties of the walking system, themselves adapt in a context-dependent manner.
机译:适当协调双脚的踩踏对于稳定行走至关重要。从步行昆虫的行为实验中得出了一些腿部协调规则,其中一些规则还适用于六只腿以上的节肢动物和四足的步行脊椎动物。这些规则中的三个会影响摆姿势过渡的时间[规则1至3(sensu Cruse)]。运动学模拟和动态硬件测试显示,它们可以引起正常的腿部协调和对干扰的自适应响应。尽管它们对动物行走的研究很重要,但从未通过实验测量与这些规则相关的耦合强度。通常,潜在机制的耦合强度被认为是恒定的,而不是上下文相关的。本研究分析了直行和弯曲行走过程中粘虫Carausius morosus的步进模式。为了推断成对的发送方腿和接收者腿之间的耦合的强度和功效,在相对于发送者中摆动姿势(或姿势摆动)过渡时间的特定延迟的情况下,确定接收者腿处于摆动状态的可能性腿。将其与独立的因此未耦合的步骤序列的相应度量进行比较。差异定义为耦合强度。耦合强度与其理论最大值之比定义为功效。与协调规则无关,同侧腿对之间的耦合强度至少是对侧腿对的耦合强度,在同侧后腿和中腿之间最强,而对侧中腿之间最弱。抑制规则1的功效最高,同侧腿对达到84-95%,对侧腿对达到29-65%。兴奋性规则2和3对同侧腿的有效性介于35-56%之间,对侧腿对的有效性介于8-21%之间。从笔直步行到弯弯步行的行为转变与耦合强度的上下文相关变化有关,在外腿对中都增加,而在后腿和中腿之间则减少。因此,被认为是步行系统的许多自适应属性基础的协调规则本身以上下文相关的方式进行适应。

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