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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Nociceptive c-fos expression in supraspinal areas in avoidance of descending suppression at the spinal relay station.
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Nociceptive c-fos expression in supraspinal areas in avoidance of descending suppression at the spinal relay station.

机译:为了避免在脊柱中继站的下降抑制,在脊髓上区具有伤害性的c-fos表达。

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The number and distribution of Fos-like-immunoreactive neurons in different supraspinal brain areas induced by formalin injection into one hindpaw was estimated in rats with transected dorsal half of the spinal cord at the thoracic level in an attempt to avoid most of the descending modulatory actions. The results showed that: (i) after spinal lesion, the peripheral noxious inputs, going up mainly through the ventral spinal cord, elicited a more widespread and densely located Fos-like-immunoreactive neurons in subcortical areas, many of them showed no Fos expression when noxious stimulation was given in rats with intact spinal cord; (ii) at the same time, a small number of subcortical areas, such as the lateral ventroposterior thalamic nucleus and dorsal raphe nucleus, exhibited no significant increase of nociceptive Fos-like immunoreactive neurons after spinal lesion as compared to that with intact spinal cord; and (iii) there appeared a prominent expansion of cortical areas with densely located Fos-like-immunoreactive neurons in spinal-lesioned rats as compared with the limited labelled areas in the control group with intact spinal cord. These results indicate that: (i) in avoiding the spinally descending modulatory mechanisms, more widespread supraspinal and cortical neurons will be recruited and activated in response to the noxious stimulation; and (ii) the descending systems exert differential actions on the spinal targets which project nociceptive signals to different supraspinal regions. The implication of these facts is discussed.
机译:为了避免大多数下降的调节作用,在一侧胸背横断脊髓的大鼠中,估计了用福尔马林注射到一只后爪中诱导的不同的上棘上大脑区域的Fos样免疫反应性神经元的数量和分布。 。结果表明:(i)脊髓损伤后,周围有害输入主要通过腹侧脊髓上升,在皮层下区域引起更广泛和密集的Fos样免疫反应性神经元,其中许多都没有Fos表达当完整脊髓大鼠受到有害刺激时; (ii)同时,与完整的脊髓相比,少数脊髓皮层下区域,如丘脑外侧后核和背脊核,在伤害后没有表现出伤害性Fos样免疫反应性神经元的显着增加; (iii)与正常脊髓对照组的标记有限区域相比,在脊髓损伤的大鼠中,具有密集分布的Fos样免疫反应神经元的皮质区域出现了明显的扩展。这些结果表明:(i)在避免脊柱下降的调节机制时,将响应有害刺激募集并激活更广泛的脊髓上和皮层神经元; (ii)下降系统对脊髓靶标施加不同的作用,这些靶标将伤害性信号投射到不同的脊髓上区域。讨论了这些事实的含义。

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