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中脑猫的受控运动:脑桥被盖内易化区和抑制区的分布

Controlled locomotion in the mesencephalic cat: distribution of facilitatory and inhibitory regions within pontine tegmentum.

作者信息

Mori S, Nishimura H, Kurakami C, Yamamura T, Aoki M

出版信息

J Neurophysiol. 1978 Nov;41(6):1580-91. doi: 10.1152/jn.1978.41.6.1580.

Abstract
  1. The contribution of postural tonus to controlled locomotion elicited by the stimulation of mesencephalic locomotor region (MLR) was studied in the acute precolicular-postmammillary decerebrate (mesencephalic) cat. 2. A microelectrode was placed in the unilateral MLR and another was placed systematically at 1-mm increments throughout the pons (H--4 to H--1O) at level ranging from P2 to P11 dorsoventrally and mediolaterally from 0 to L or R6. Depending on the general condition of the animal, stimuli through this second electrode were delivered preceding, succeeding, or simultaneous with the MLR stimulation. 3. Stimulation of the ventral part of the caudal tegmental field (P3 to P9, H--6 to H--8) increased extensor tonus of the hindlimbs, as assessed by recording muscle activity. Concomitant stimulation of this region converted MLR-elicited hindlimb stepping to coordinated four-legged locomotion and also elicited locomotion even when stimulation of the MLR alone failed to elicit locomotion. Stimulation of this ventral tegmental region alone at a larger stimulus intensity elicited spastic locomotor movements associated with a substantial increase in extensor tonus. 4. Stimulation of the lateral tegmented field surrounding the pontine locomotor region (PLR) also facilitated MLR effects, but had a relatively weaker facilitatory effect on postural tonus then stimulation of the ventrocaudal tegmental field. PLR stimulation alone was also ineffective when postural tonus was not well maintained. 5 Stimulation of the dorsal part of caudal tegmental field (P3 to P9, H--4 to H--6) in its midline dramatically decreased extensor tonus of the hindlimbs. MLR-elicited controlled locomotion was completely suppressed during concomitant stimulation of this inhibitory region. 6. These results indicated clearly that the degree of existing postural tonus greatly affects MLR-elicited locomotor movements and that an increase in postural tonus and an activation of the spinal stepping generator are not separate phenomenia.
摘要
  1. 在急性脑桥前-乳头体后去大脑(中脑)猫中,研究了姿势紧张对中脑运动区(MLR)刺激诱发的受控运动的贡献。2. 将微电极置于单侧MLR中,另一个电极以1毫米的增量系统地放置在整个脑桥(H-4至H-10),在从P2到P11的背腹水平以及从0到L或R6的内外侧水平。根据动物的一般状况,通过第二个电极的刺激在MLR刺激之前、之后或同时进行。3. 通过记录肌肉活动评估,刺激尾侧被盖区腹侧部分(P3至P9,H-6至H-8)可增加后肢的伸肌紧张。同时刺激该区域可将MLR诱发的后肢踏步转变为协调的四足运动,并且即使单独刺激MLR未能诱发运动时也能诱发运动。以更大的刺激强度单独刺激该腹侧被盖区会引发与伸肌紧张大幅增加相关的痉挛性运动。4. 刺激脑桥运动区(PLR)周围的外侧被盖区也促进了MLR的作用,但对姿势紧张的促进作用相对弱于刺激尾侧腹侧被盖区。当姿势紧张维持不佳时,单独刺激PLR也无效。5. 刺激尾侧被盖区背侧部分(P3至P9,H-4至H-6)的中线会显著降低后肢的伸肌紧张。在同时刺激这个抑制区域时,MLR诱发的受控运动被完全抑制。6. 这些结果清楚地表明,现有姿势紧张的程度极大地影响MLR诱发的运动,并且姿势紧张的增加和脊髓踏步发生器的激活不是独立的现象。

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