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刺激小脑中线白质的一个局限区域可在去大脑猫中诱发协调的四足运动。

Stimulation of a restricted region in the midline cerebellar white matter evokes coordinated quadrupedal locomotion in the decerebrate cat.

作者信息

Mori S, Matsui T, Kuze B, Asanome M, Nakajima K, Matsuyama K

机构信息

Department of Biological Control System, National Institute for Physiological Sciences, Myodaiji, Okazaki 444-8585, Japan.

出版信息

J Neurophysiol. 1999 Jul;82(1):290-300. doi: 10.1152/jn.1999.82.1.290.

Abstract

In the reflexively standing acute decerebrate cat, we have previously shown that pulse train microstimulation of the hook bundle of Russel in the midline of the cerebellar white matter, through which crossed fastigiofugal fibers decussate, augments the postural tone of neck, trunk, fore-, and hindlimb extensor muscles. In the present study we examined the possible role of such stimulation in evoking locomotion as the animal is supported by a rubber hammock with its feet contacting the moving surface of a treadmill. We were able to provoke well-coordinated, bilaterally symmetrical, fore- and hindlimb movements, whose cycle time and pattern were controlled by appropriate changes in stimulus intensity and treadmill speed. We carefully and systematically mapped this cerebellar locomotor region (CLR) through repeated dorsoventral penetrations with a glass-coated tungsten microelectrode in a single animal and between animals. We found that the optimal locus for evoking locomotion was centered on the midline, at Horsley-Clarke coordinates H0 and P7.0, and extended over a rostrocaudal and dorsolateral range of approximately 0.5 mm. The lowest effective stimulus intensity at the optimal site was in the range of 5-8 microA. Along penetration tracks to left or right of the midline, effective stimulus intensity increased and evoked locomotor patterns were no longer symmetrical, but rather shifted toward the contralateral limbs. In the same animals, controlled locomotion was evoked by stimulating the mesencephalic locomotor region (MLR). With concomitant stimulation of the optimal sites in the CLR and the MLR, each at subthreshold strength, locomotor movements identical to those seen with suprathreshold stimulation of each site alone were evoked. With concomitant stimulation at suprathreshold strength for each site, locomotion became vigorous, with a shortened cycle time. After making ablative lesions at either the CLR or MLR (unilateral or bilateral), controlled locomotion was still evoked at the prior stimulus strength by stimulating the remaining site. Together, these results demonstrate that selective stimulation of the hook bundle of Russel in the midsagittal plane of the cerebellar white matter evokes "controlled" locomotion identical to that evoked by stimulating the MLR. We have shown that the fastigial nucleus is one of the supraspinal locomotion inducing sites and that it can independently and simultaneously trigger brain stem and spinal locomotor subprograms formerly believed to be the domain of various brain stem regions including the MLR and the subthalamic locomotor region.

摘要

在反射性站立的急性去大脑猫中,我们之前已经表明,对小脑白质中线处的拉塞尔钩束进行脉冲串微刺激,交叉的顶核传出纤维通过该区域交叉,可增强颈部、躯干、前肢和后肢伸肌的姿势张力。在本研究中,我们研究了在动物由橡胶吊床支撑且其脚接触跑步机移动表面时,这种刺激在诱发运动中可能发挥的作用。我们能够引发协调良好、双侧对称的前肢和后肢运动,其周期时间和模式由刺激强度和跑步机速度的适当变化控制。我们通过在单只动物以及不同动物之间用玻璃涂层钨微电极反复进行背腹穿透,仔细且系统地绘制了这个小脑运动区(CLR)。我们发现,诱发运动的最佳位点位于中线,在霍斯利 - 克拉克坐标H0和P7.0处,并在前后和背外侧范围内延伸约0.5毫米。最佳位点处的最低有效刺激强度在5 - 8微安范围内。沿着中线左侧或右侧的穿透轨迹,有效刺激强度增加,诱发的运动模式不再对称,而是向对侧肢体偏移。在同一动物中,刺激中脑运动区(MLR)可诱发受控运动。同时刺激CLR和MLR中的最佳位点,每个位点的刺激强度均低于阈值,可诱发与单独对每个位点进行阈值以上刺激时所见相同的运动。当对每个位点进行阈值以上强度的同时刺激时,运动会变得剧烈,周期时间缩短。在CLR或MLR(单侧或双侧)进行毁损性损伤后,通过刺激剩余位点,仍能以先前的刺激强度诱发受控运动。总之,这些结果表明,在小脑白质矢状面中部选择性刺激拉塞尔钩束可诱发与刺激MLR相同的“受控”运动。我们已经表明,顶核是脊髓上运动诱导位点之一,并且它可以独立且同时触发以前被认为是包括MLR和丘脑底运动区在内的各种脑干区域所特有的脑干和脊髓运动子程序。

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