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脑干运动区域的传入和传出连接:辣根过氧化物酶转运技术研究

Afferent and efferent connections of brainstem locomotor regions: study by means of horseradish peroxidase transport technique.

作者信息

Bayev K V, Beresovskii V K, Kebkalo T G, Savoskina L A

机构信息

Department of Physiology of the Spinal Cord, A.A. Bogomoletz Institute of Physiology, Academy of Sciences, Kiev, U.S.S.R.

出版信息

Neuroscience. 1988 Sep;26(3):871-91. doi: 10.1016/0306-4522(88)90106-6.

Abstract

Afferent and efferent connections of the hypothalamic and mesencephalic locomotor regions and also the bulbar locomotor strip were studied in cat using retrograde (horseradish peroxidase) transport technique. To study the sources of afferent projections, the enzyme microinjections were performed exactly into the same brain sites eliciting treadmill locomotion by means of electrical stimulation. When studying efferent projections horseradish peroxidase labeled neurons were revealed within locomotor regions after enzyme microinjections into different brain structures. Experimental data have shown that the hypothalamic and mesencephalic locomotor regions have mutual afferent and efferent projections with numerous brain areas including interconnections. Apart from the entopeduncular nucleus, the great number of different sensory nuclei are noted: among the sources of afferent projections are the nucleus tractus spinalis nervi trigemini, nucleus cuneatus, nucleus tractus solitarius and vestibular nuclei. In addition, after horseradish peroxidase injection into the mesencephalic locomotor region labeled neurons were found in the cochlear nuclei. Direct descending neuronal projections of the hypothalamic and mesencephalic locomotor regions are distributed mainly in the ipsilateral brainstem. Only a few of them reach the lumbar spinal cord. The most marked efferent projections of given regions are those to the brainstem reticular formation. After horseradish peroxidase injection into a functionally identified bulbar locomotor strip, labeled neurons were revealed in different stem regions mainly caudal to the enzyme injection site. The existence of a locomotor strip as an independent structural formation is called into question. When studying the locomotor region connections, the structural heterogeneity of these regions is revealed. Transitory fibers of ascending tracts are presumably within their limits side by side with neurons. The role of these fibers in stepping initiation by electrical stimulation of locomotor regions remains uncertain.

摘要

采用逆行(辣根过氧化物酶)运输技术,在猫身上研究了下丘脑和中脑运动区以及延髓运动带的传入和传出连接。为了研究传入投射的来源,将酶微量注射精确地注入通过电刺激引发跑步机运动的相同脑区。在研究传出投射时,将辣根过氧化物酶注入不同脑结构后,在运动区内发现了标记神经元。实验数据表明,下丘脑和中脑运动区与包括相互连接在内的众多脑区有相互的传入和传出投射。除了内苍白球核外,还注意到大量不同的感觉核:传入投射的来源包括三叉神经脊束核、楔束核、孤束核和前庭核。此外,将辣根过氧化物酶注入中脑运动区后,在耳蜗核中发现了标记神经元。下丘脑和中脑运动区的直接下行神经元投射主要分布在同侧脑干。只有少数投射到达腰脊髓。这些区域最明显的传出投射是到脑干网状结构。将辣根过氧化物酶注入功能确定的延髓运动带后,在不同的脑干区域主要在酶注射部位的尾侧发现了标记神经元。运动带作为一个独立结构的存在受到质疑。在研究运动区连接时,发现这些区域存在结构异质性。上行束的过渡纤维可能在其范围内与神经元并排存在。这些纤维在电刺激运动区引发踏步中的作用仍不确定。

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