首页> 外文期刊>Journal of Comparative Physiology A >Interaction between descending input and thoracic reflexes for joint coordination in cockroach: I. Descending influence on thoracic sensory reflexes
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Interaction between descending input and thoracic reflexes for joint coordination in cockroach: I. Descending influence on thoracic sensory reflexes

机译:降速输入和胸反射之间的相互作用,以实现蟑螂的关节协调:I.降速对胸感觉反射的影响

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Tethered cockroaches turn from unilateral antennal contact using asymmetrical movements of mesothoracic (T2) legs (Mu and Ritzmann in J Comp Physiol A 191:1037–1054, 2005). During the turn, the leg on the inside of the turn (the inside T2 leg) has distinctly different motor patterns from those in straight walking. One possible neural mechanism for the transformation from walking to inside leg turning could be that the descending commands alter a few critical reflexes that start a cascade of physical changes in leg movement or posture, leading to further alterations. This hypothesis has two implications: first, the descending activities must be able to influence thoracic reflexes. Second, one should be able to initiate the turning motor pattern without descending signals by mimicking a point farther down in the reflex cascade. We addressed the first implication in this paper by experiments on chordotonal organ reflexes. The activity of depressor muscle (Ds) and slow extensor tibia muscle (SETi) was excited and inhibited by stretching and relaxing the femoral chordotonal organ. However, the Ds responses were altered after eliminating the descending activity, while the SETi responses remain similar. The inhibition to Ds activity by stretching the coxal chordotonal organ was also altered after eliminating the descending activity.
机译:系绳蟑螂使用中胸(T2)腿的不对称运动从单侧触角接触转变(Mu和Ritzmann,J Comp Physiol A 191:1037–1054,2005)。在转弯期间,转弯内侧的腿(内侧T2腿)的运动模式与直走时的运动模式截然不同。从行走到腿内弯的转换的一种可能的神经机制可能是,下降命令改变了一些临界反射,这些反射开始引发腿部运动或姿势的一系列物理变化,从而导致进一步的变化。该假设有两个含义:首先,下降活动必须能够影响胸腔反射。其次,通过模仿反射级联中更远的一点,人们应该能够在不降低信号的情况下启动旋转电机模式。我们通过对弦神经器官反射的实验解决了本文的第一个含义。通过拉伸和放松股骨腱索器官可以激发和抑制抑郁肌(Ds)和慢伸胫骨肌(SETi)的活动。但是,Ds响应在消除下降活性后发生了变化,而SETi响应保持相似。在消除下降活性后,通过拉伸轴索软骨器官对Ds活性的抑制作用也发生了改变。

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