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首页> 外文期刊>The Journal of Experimental Biology >Neuronal mechanisms underlying the facilitatory control of uropod steering behaviour during treadmill walking in crayfish - II. Modulation of uropod motoneurone excitation by leg proprioception
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Neuronal mechanisms underlying the facilitatory control of uropod steering behaviour during treadmill walking in crayfish - II. Modulation of uropod motoneurone excitation by leg proprioception

机译:在小龙虾的跑步机行走过程中促进脚足动物转向行为控制的神经机制-II。腿部本体感受调节尾足运动神经元兴奋

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The synaptic activities underlying the uropod steering behaviour of crayfish evoked by tilting the substratum beneath the legs have been studied intracellularly in unanaesthetized animals standing or walking on a treadmill. The uropod motoneurones showed little or no synaptic response when the treadmill was tilted while the animal was in a quiescent state and the membrane potential was at its resting value, When the same stimulus was given while the animal was walking or in an active stance on the treadmill, the motoneurones showed transient much-enhanced excitatory or inhibitory responses to tilt, depending on the tilt direction. These responses were superimposed on a sustained level of background excitation so that the spike activity of the motoneurones either increased or decreased. Premotor nonspiking interneurones also showed little or no synaptic response to the tilt stimulus while the animal was resting, but greatly enhanced responses, in either a depolarizing or a hyperpolarizing direction, while the animal was walking or in the active-standing state. The results indicate that the proprioceptor inputs converging onto the uropod motoneurones, either directly or through premotor nonspiking interneurones, are gated not only in the uropod motor system in the terminal abdominal ganglion but also at as yet unidentified sites upstream in anterior ganglia, thus suggesting multiple gate control of the descending proprioceptor pathway. [References: 35]
机译:在站立或行走在跑步机上的未麻醉动物的细胞内研究了小龙虾因脚底下倾斜引起的尾足操纵行为的突触活动。当动物处于静止状态且跑步机倾斜并且膜电位处于静止状态时,uropod motoneurones几乎没有或没有突触反应。当动物走路或处于活动姿势时,如果给予相同的刺激,在跑步机上,根据倾斜方向,运动神经元对倾斜产生了短暂的兴奋性增强或抑制性反应。这些响应叠加在持续水平的背景激发上,以使运动神经元的突触活性增加或降低。运动前不说话的中间神经元在动物休息时对倾斜刺激也没有或几乎没有突触反应,但是在动物行走或处于站立状态时,无论是去极化还是超极化方向,反应都大大增强。结果表明,本体感受器输入直接或通过运动前非尖峰间神经元汇聚到尾足运动神经元上,不仅在末梢腹神经节的尾足运动系统中,而且在前神经节上游尚未识别的位置被门控。下降的本体感受器途径的门控制。 [参考:35]

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