Aix-Marseille Univ, INSERM UMR 1106, 13385 Marseille, France.
Behav Brain Res. 2013 May 1;244:48-57. doi: 10.1016/j.bbr.2013.01.017. Epub 2013 Jan 23.
The study compared the motor performance of adult C57Bl/6J mice previously exposed to a 2G gravity environment during different periods of their development. 12 mice were housed in a large diameter centrifuge from the conception to Postnatal day 10 (P10). Another group of 10 mice was centrifuged form P10 to P30, and a third group of 9 mice was centrifuged from conception to P30. Their gait parameters, and kinematics of joint excursions were compared with 11 control mice, at the age of 2 months using a video-radiographic apparatus connected to a motorized treadmill. The mice that returned to Earth gravity level at the age of P10 showed a motor pattern similar to control mice. At variance the two groups that were centrifuged from P10 to P30 showed a different motor pattern with smaller and faster strides to walk at the same velocity as controls. On the other hand all the centrifuged mice showed significant postural changes, particularly with a more extended ankle joint, but the mice centrifuged during the whole experimental period differed even more. Our results showed that the exposure to hypergravity before P10 sufficed to modify the posture, suggesting that postural control starts before the onset of locomotion, whereas the gravity constraint perceived between P10 and P30 conditioned the tuning of quadruped locomotion with long term consequences. These results support the existence of a critical period in the acquisition of locomotion in mice.
该研究比较了成年 C57Bl/6J 小鼠在发育过程中不同时期暴露于 2G 重力环境下的运动表现。12 只小鼠从受孕到出生后第 10 天(P10)被安置在一个大直径的离心机中。另一组 10 只小鼠从 P10 到 P30 进行离心,第三组 9 只小鼠从受孕到 P30 进行离心。他们的步态参数和关节运动学在 2 个月大时使用与电动跑步机相连的视频射线照相仪与 11 只对照小鼠进行了比较。在 P10 时返回地球重力水平的小鼠表现出与对照小鼠相似的运动模式。相比之下,从 P10 到 P30 进行离心的两组小鼠表现出不同的运动模式,步幅更小,速度更快,以与对照组相同的速度行走。另一方面,所有离心的小鼠都表现出明显的姿势变化,特别是踝关节更伸展,但在整个实验期间离心的小鼠差异更大。我们的结果表明,在 P10 之前暴露于超重力足以改变姿势,表明姿势控制在运动开始之前就开始了,而在 P10 到 P30 之间感知到的重力限制则调节了四足运动的调谐,具有长期后果。这些结果支持在小鼠运动获得中存在一个关键时期。