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脑干对运动和肌张力的控制,特别提及中脑桥被盖和延髓网状脊髓系统的作用。

Brainstem control of locomotion and muscle tone with special reference to the role of the mesopontine tegmentum and medullary reticulospinal systems.

作者信息

Takakusaki Kaoru, Chiba Ryosuke, Nozu Tsukasa, Okumura Toshikatsu

机构信息

Research Center for Brain Function and Medical Engineering, Asahikawa Medical University, Midorigaoka-Higashi 2-1, 1-1, Asahikawa, 078-8511, Japan.

Department of Regional Medicine and Education, Asahikawa Medical University, Asahikawa, Japan.

出版信息

J Neural Transm (Vienna). 2016 Jul;123(7):695-729. doi: 10.1007/s00702-015-1475-4. Epub 2015 Oct 26.

Abstract

The lateral part of the mesopontine tegmentum contains functionally important structures involved in the control of posture and gait. Specifically, the mesencephalic locomotor region, which may consist of the cuneiform nucleus and pedunculopontine tegmental nucleus (PPN), occupies the interest with respect to the pathophysiology of posture-gait disorders. The purpose of this article is to review the mechanisms involved in the control of postural muscle tone and locomotion by the mesopontine tegmentum and the pontomedullary reticulospinal system. To make interpretation and discussion more robust, the above issue is considered largely based on our findings in the experiments using decerebrate cat preparations in addition to the results in animal experimentations and clinical investigations in other laboratories. Our investigations revealed the presence of functional topographical organizations with respect to the regulation of postural muscle tone and locomotion in both the mesopontine tegmentum and the pontomedullary reticulospinal system. These organizations were modified by neurotransmitter systems, particularly the cholinergic PPN projection to the pontine reticular formation. Because efferents from the forebrain structures as well as the cerebellum converge to the mesencephalic and pontomedullary reticular formation, changes in these organizations may be involved in the appropriate regulation of posture-gait synergy depending on the behavioral context. On the other hand, abnormal signals from the higher motor centers may produce dysfunction of the mesencephalic-reticulospinal system. Here we highlight the significance of elucidating the mechanisms of the mesencephalic-reticulospinal control of posture and locomotion so that thorough understanding of the pathophysiological mechanisms of posture-gait disorders can be made.

摘要

脑桥中脑被盖的外侧部分包含参与姿势和步态控制的功能重要结构。具体而言,中脑运动区可能由楔形核和脚桥被盖核(PPN)组成,在姿势 - 步态障碍的病理生理学方面备受关注。本文的目的是综述脑桥中脑被盖和脑桥延髓网状脊髓系统在姿势肌肉张力和运动控制中所涉及的机制。为了使解释和讨论更具说服力,除了其他实验室的动物实验和临床研究结果外,上述问题主要基于我们在去大脑猫实验中的发现进行考虑。我们的研究揭示了脑桥中脑被盖和脑桥延髓网状脊髓系统在姿势肌肉张力和运动调节方面存在功能拓扑组织。这些组织受到神经递质系统的调节,特别是胆碱能PPN向脑桥网状结构的投射。由于前脑结构以及小脑的传出纤维汇聚到中脑和脑桥延髓网状结构,这些组织的变化可能参与根据行为背景对姿势 - 步态协同作用的适当调节。另一方面,来自高级运动中枢的异常信号可能导致中脑 - 网状脊髓系统功能障碍。在此,我们强调阐明中脑 - 网状脊髓对姿势和运动控制机制的重要性,以便能够深入理解姿势 - 步态障碍的病理生理机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/514d/4919383/c577e7fc3105/702_2015_1475_Fig1_HTML.jpg

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