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胚胎中期雏鸡自发肢体运动的感觉调节

Sensory regulation of spontaneous limb movements in the midstage embryonic chick.

作者信息

Sharp Andrew A

机构信息

Departmentof Anatomy, Southern Illinois University School of Medicine, Carbondale, IL; Center for Integrated Research and Cognitive Neural Science, Southern Illinois University, Carbondale, IL.

出版信息

Dev Psychobiol. 2015 May;57(4):385-96. doi: 10.1002/dev.21292. Epub 2015 Mar 23.

Abstract

It is becoming increasingly apparent that somatosensation plays an important role in regulating prenatal movement and developmental plasticity. Numerous studies performed on embryonic chicks and perinatal rats are beginning to implicate proprioception to be particularly important in modulating motility very soon after afferent connections are made in the spinal cord. In this report, we demonstrate new approaches in the chick embryo to explore the role of sensation in modulating embryonic movement. Force recordings from the legs of chick embryos on E9 and E11, during spontaneous motility, demonstrate changes in sensory regulation consistent with the concept that sensory regulation is functioning one day after sensory synapse formation and that the complexity of this regulation increases by E11. Additionally, we present new video data showing activation of embryonic motility on E5 and E9 in embryos expressing channelrhodopsin in the spinal cord as a novel way to approach the issues of sensorimotor development.

摘要

越来越明显的是,躯体感觉在调节产前运动和发育可塑性方面发挥着重要作用。对胚胎小鸡和围产期大鼠进行的大量研究开始表明,在脊髓中建立传入连接后不久,本体感觉在调节运动方面尤为重要。在本报告中,我们展示了在鸡胚中探索感觉在调节胚胎运动中作用的新方法。在E9和E11的鸡胚腿部进行自发运动时的力记录表明,感觉调节的变化与以下概念一致,即感觉调节在感觉突触形成后一天就开始起作用,并且这种调节的复杂性在E11时增加。此外,我们还展示了新的视频数据,显示在脊髓中表达通道视紫红质的E5和E9胚胎中胚胎运动的激活,这是一种解决感觉运动发育问题的新方法。

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