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非洲爪蟾胚胎游泳时运动输出的纵向协调

Longitudinal coordination of motor output during swimming in Xenopus embryos.

作者信息

Tunstall M J, Roberts A

机构信息

Department of Zoology, Bristol University, U.K.

出版信息

Proc Biol Sci. 1991 Apr 22;244(1309):27-32. doi: 10.1098/rspb.1991.0046.

Abstract

Little is known about the neural mechanisms that control the phenomenon of rostro-caudal delay. In Xenopus embryos there is a constant rostro-caudal delay of 2-5 ms mm-1 during fictive swimming. Rostro-caudal delay is not significantly correlated with cycle period. When NMDA is applied to the caudal spinal cord there is a decrease and in some cases a reversal in rostro-caudal delay. Conversely applying excitatory antagonists to the caudal spinal cord leads to an increase in delay. When caudal mid-cycle inhibition is reduced either pharmacologically using strychnine or surgically through hemisection of the spinal cord, there is an increase in rostro-caudal delay. Rostro-caudal delays are too small to be explainable on the basis of axonal conduction velocities and synaptic delays. This suggests that the central pattern generator of Xenopus behaves as a series of coupled oscillators and that the nature of the coupling, together with a longitudinal gradient in excitability associated with the oscillators, contributes to the observed rostro-caudal delay.

摘要

关于控制头-尾延迟现象的神经机制,我们了解得很少。在非洲爪蟾胚胎中,在模拟游泳期间,头-尾延迟恒定为2-5毫秒/毫米。头-尾延迟与周期时长没有显著相关性。当将N-甲基-D-天冬氨酸(NMDA)应用于尾侧脊髓时,头-尾延迟会减小,在某些情况下甚至会出现反转。相反,将兴奋性拮抗剂应用于尾侧脊髓会导致延迟增加。当使用士的宁通过药理学方法或通过脊髓半切术在手术上减少尾侧周期中期抑制时,头-尾延迟会增加。头-尾延迟太小,无法基于轴突传导速度和突触延迟来解释。这表明非洲爪蟾的中枢模式发生器表现为一系列耦合振荡器,并且耦合的性质以及与振荡器相关的兴奋性纵向梯度,共同导致了观察到的头-尾延迟。

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