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去大脑大鼠的皮肤交感运动节律

Cutaneous sympathetic motor rhythms in the decerebrate rat.

作者信息

Collins D R, Gilbey M P

机构信息

Department of Physiology, University College London, Medical School Royal Free Campus, Rowland Hill Street, NW3 2PF, London, UK.

出版信息

Neuroscience. 2003;117(4):981-9. doi: 10.1016/s0306-4522(02)00969-7.

Abstract

Investigation of rhythmic discharges may provide insights into integrative mechanisms underlying nervous system control of effectors. We have previously shown that, in CNS-intact, anesthetized rats, cutaneous sympathetic vasoconstrictor neurones innervating thermoregulatory circulations exhibit a robust rhythmicity in the 0.4-1.2-Hz frequency range (T-rhythm). Here we examined whether the neural circuitry required to generate this rhythm remained intact in decerebrate (at collicular level), paralyzed and artificially ventilated preparations with cervical vagotomy, ligation of common carotid arteries and pneumothorax. Population sympathetic activity was recorded from the ventral collector nerve (VCN) of the tail in nine animals, while monitoring central respiratory drive. We found that rhythmic activity remained a robust feature and that activity behaved in a comparable manner to that previously described in the intact anesthetized preparation. Manifest as peaks in the autospectra, the dominant rhythm was either at the frequency of (f) lung inflation cycle (fLIC), central respiratory drive (fCRD) or in the 'free-run' T-rhythm frequency range. Through manipulation of fLIC we could alter the dominant rhythm of discharges. We show a significant relationship between fLIC and the likelihood of the dominant rhythm in VCN discharges being at fLIC or at a frequency that was neither fLIC nor fCRD. At fLIC of 1 Hz: in seven of nine animals the VCN dominant rhythm was 1 Hz, zero of nine displayed a dominant T-rhythm; at fLIC of 2 Hz: two of nine had a dominant VCN rhythm at 2 Hz and five of nine a T-rhythm. Furthermore, CRD was never observed to entrain to fLIC. These experiments demonstrate that the network underlying the generation of the T-rhythm is located below the collicular level of the neuraxis and that in this preparation LIC-related modulation of discharges may be mediated by spinal (sympathetic) afferents.

摘要

对节律性放电的研究可能有助于深入了解神经系统对效应器控制的整合机制。我们之前已经表明,在中枢神经系统完整的麻醉大鼠中,支配体温调节循环的皮肤交感缩血管神经元在0.4-1.2赫兹频率范围内表现出强烈的节律性(T节律)。在这里,我们研究了在大脑脚切断、麻痹并人工通气的制备物中,在进行颈迷走神经切断、颈总动脉结扎和气胸的情况下,产生这种节律所需的神经回路是否仍然完整。在九只动物中,从尾巴的腹侧收集神经(VCN)记录群体交感神经活动,同时监测中枢呼吸驱动。我们发现节律性活动仍然是一个显著特征,并且其活动方式与之前在完整麻醉制备物中描述的相似。表现为自谱中的峰值,主导节律要么处于肺充气周期频率(fLIC)、中枢呼吸驱动频率(fCRD),要么处于“自由运行”的T节律频率范围内。通过操纵fLIC,我们可以改变放电的主导节律。我们显示fLIC与VCN放电中主导节律处于fLIC或处于既不是fLIC也不是fCRD的频率的可能性之间存在显著关系。在fLIC为1赫兹时:九只动物中有七只VCN主导节律为1赫兹,九只中没有一只显示主导T节律;在fLIC为2赫兹时:九只中有两只VCN主导节律为2赫兹,九只中有五只具有T节律。此外,从未观察到CRD被fLIC所夹带。这些实验表明,产生T节律的网络位于神经轴的大脑脚水平以下,并且在这种制备物中,与LIC相关的放电调制可能由脊髓(交感)传入神经介导。

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