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连合投射对新生大鼠离体脊髓运动的延髓脊髓激活的作用。

Contribution of commissural projections to bulbospinal activation of locomotion in the in vitro neonatal rat spinal cord.

作者信息

Cowley Kristine C, Zaporozhets Eugene, Joundi Raed A, Schmidt Brian J

机构信息

Department of Physiology, University of Manitoba, Winnipeg, Manitoba, Canada.

出版信息

J Neurophysiol. 2009 Mar;101(3):1171-8. doi: 10.1152/jn.91212.2008. Epub 2008 Dec 31.

Abstract

Commissural projections are required for left-right coordination during locomotion. However, their role, if any, in rhythm production is unknown. This study uses the neonatal rat in vitro brain stem-spinal cord model to examine the rostrocaudal distribution of locomotor-related commissural projections and study whether commissural connections are needed for the generation of hindlimb rhythmic activity in response to electrical stimulation of the brain stem. Midsagittal lesions were made at a wide range of rostrocaudal levels. Locomotor-like activity persisted in some preparations despite midsagittal lesions extending from C(1) to the mid-L(1) level or from the conus medullaris to the T(12/13) junction. In some preparations, midsagittal lesions throughout the entire spinal cord had no effect on locomotor-like activity if two or three contiguous segments remained intact. Those bridging segments had to include the T(13) and/or L(1) levels. These observations suggested that commissural projections in the thoracolumbar junction region were critical. However, locomotor-like activity was also elicited in preparations with limited midsagittal lesions focused on the thoracolumbar junction (T(12) through L(1) or L(2) inclusive). In other experiments, locomotor-like activity was evoked by bath-applied 5-hydroxytryptamine (5-HT) and N-methyl-d-aspartate (NMDA). Appropriate side-to-side coordination was observed, even when only one segment remained bilaterally intact. Commissural projections traversing the thoracolumbar junction region were most effective. In combination, these results suggest that locomotor-related commissural projections are redundantly distributed along a bi-directional gradient that centers on the thoracolumbar junction. This commissural system not only provides a robust left-right coordinating mechanism but also supports locomotor rhythm generation in response to brain stem stimulation.

摘要

在运动过程中,连合投射对于左右协调是必需的。然而,它们在节律产生中(如果有作用的话)的作用尚不清楚。本研究使用新生大鼠体外脑干 - 脊髓模型,来检查与运动相关的连合投射的前后分布,并研究在对脑干进行电刺激时,连合连接对于后肢节律性活动的产生是否是必需的。在广泛的前后水平进行矢状面中部损伤。尽管矢状面中部损伤从C(1)延伸至L(1)中部水平或从脊髓圆锥延伸至T(12/13)交界处,但在一些制备物中仍持续存在类似运动的活动。在一些制备物中,如果两到三个相邻节段保持完整,整个脊髓的矢状面中部损伤对类似运动的活动没有影响。那些桥接节段必须包括T(13)和/或L(1)水平。这些观察结果表明胸腰段交界处的连合投射至关重要。然而,在矢状面中部损伤局限于胸腰段交界处(包括T(12)至L(1)或L(2))的制备物中也引发了类似运动的活动。在其他实验中,通过浴加5-羟色胺(5-HT)和N-甲基-D-天冬氨酸(NMDA)诱发了类似运动的活动。即使只有一个节段保持双侧完整,也观察到了适当的左右协调。穿过胸腰段交界处区域的连合投射最为有效。综合起来,这些结果表明与运动相关的连合投射沿着以胸腰段交界处为中心的双向梯度冗余分布。这个连合系统不仅提供了强大的左右协调机制,还支持对脑干刺激做出反应的运动节律产生。

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