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白化大鼠空中翻正反应的产后发育。正常发育的定量分析以及防止颈部-躯干和躯干-骨盆旋转的影响。

The postnatal development of the air-righting reaction in albino rats. Quantitative analysis of normal development and the effect of preventing neck-torso and torso-pelvis rotations.

作者信息

Laouris Y, Kalli-Laouri J, Schwartze P

机构信息

Carl-Ludwig-Institute of Physiology, Karl-Marx-University, Leipzig, G.D.R.

出版信息

Behav Brain Res. 1990 Feb 12;37(1):37-44. doi: 10.1016/0166-4328(90)90070-u.

Abstract

The aim of this study was to describe the ontogenesis of the air-righting reaction (ARR) in rats. The first experiment was performed on 6 newborn albino rats of both sexes and followed the development of the ARR over postnatal days 1-21. The degree of rotation achieved after falling from different heights was quantified according to a rating scheme. It appeared that the air-righting reaction is effected by a spiral movement which spreads in a cranio-caudal direction. The reaction develops between postnatal day 8 and 18. On postnatal day 10 only a few animals are able to turn their heads, this being possible only from a falling height of 60 cm and corresponding to a falling time of 350 ms. A rapid development of the reaction was found between days 10 and 14. The second experiment on 8 rats involved the use of immobilization in order to isolate the mechanisms that trigger the ARR. The immobilization prevented neck-torso rotation, torso-pelvis rotation, and both rotations in different animals. Despite the disruption of important (afferent) feedback systems, the reaction developed within the same age period as in control rats. Thus, the Magnus "chain reflex hypothesis' as basis for the ARR is rejected in favor of a central motor program hypothesis.

摘要

本研究的目的是描述大鼠空中翻正反应(ARR)的个体发生过程。第一个实验对6只新生的雌雄白化大鼠进行,观察出生后1 - 21天内ARR的发育情况。根据评分方案对从不同高度掉落之后所达到的旋转程度进行量化。结果显示,空中翻正反应是由一种沿头尾方向传播的螺旋运动实现的。该反应在出生后第8天至18天之间发育。在出生后第10天,只有少数动物能够转头,且仅在从60厘米的掉落高度(对应350毫秒的掉落时间)时才有可能。在第10天至14天之间发现该反应迅速发展。第二个实验对8只大鼠进行,采用固定的方法以分离触发ARR的机制。固定阻止了不同动物的颈部 - 躯干旋转、躯干 - 骨盆旋转以及两者的旋转。尽管重要的(传入)反馈系统受到干扰,但该反应在与对照大鼠相同的年龄阶段内发育。因此,作为ARR基础的马格努斯“连锁反射假说”被摒弃,转而支持中枢运动程序假说。

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