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大鼠运动中的特定任务适应性:跑道与水平梯子

Task specific adaptations in rat locomotion: runway versus horizontal ladder.

作者信息

Bolton David A E, Tse Arthur D Y, Ballermann Mark, Misiaszek John E, Fouad Karim

机构信息

Centre for Neuroscience, University of Alberta, Edmonton AB, Canada T6G 2G4.

出版信息

Behav Brain Res. 2006 Apr 3;168(2):272-9. doi: 10.1016/j.bbr.2005.11.017. Epub 2006 Jan 10.

Abstract

In walking quadrupeds the alternating activity pattern of antagonistic leg muscles and the coordination between legs is orchestrated by central pattern generating networks within the spinal cord. These networks are activated by tonic input from the reticular formation in the brainstem. Under more challenging conditions, such as walking on a horizontal ladder, successful locomotion relies upon additional context dependent input from pathways such as the cortico- and rubro-spinal tracts. In this study we used electromyographic and kinematic approaches to characterize the adaptations in the walking pattern in adult uninjured rats crossing a horizontal ladder. We found that the placement of a hind limb on a rung precisely followed the placement of the ipsilateral fore limb. This is different to normal walking where the hind limb is placed behind the position of the ipsilateral fore limb. The increased reach of the hind limbs is achieved by increased flexion of the hip and rotation of the pelvis during the swing phase. Electromyographic observations showed decreased burst duration in Tibialis anterior an ankle flexor muscle. Further changes in the muscle activity pattern were likely due to the reduced stepping frequency during ladder walking. Following a lesion of the dorsal column, containing major parts of the corticospinal tract, we found an increased number of stepping errors and changes in the stepping strategy. The step length of the fore limbs was reduced and the hind limbs were frequently positioned on rungs other than those occupied by the fore limb.

摘要

在行走的四足动物中,拮抗腿部肌肉的交替活动模式以及腿部之间的协调是由脊髓内的中枢模式发生器网络精心编排的。这些网络由脑干网状结构的紧张性输入激活。在更具挑战性的条件下,比如在水平梯子上行走时,成功的运动依赖于来自皮质脊髓束和红核脊髓束等通路的额外的上下文相关输入。在本研究中,我们使用肌电图和运动学方法来描述成年未受伤大鼠在穿过水平梯子时行走模式的适应性变化。我们发现后肢在横档上的放置精确地跟随同侧前肢的放置。这与正常行走不同,正常行走时后肢放置在同侧前肢位置的后方。后肢伸展范围的增加是通过摆动期髋关节屈曲增加和骨盆旋转实现的。肌电图观察显示,踝部屈肌胫骨前肌的爆发持续时间缩短。肌肉活动模式的进一步变化可能是由于在梯子上行走时步频降低所致。在包含皮质脊髓束主要部分的背柱损伤后,我们发现行走错误数量增加且行走策略发生改变。前肢的步长缩短,后肢经常放置在与前肢所占据的横档不同的横档上。

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