首页> 美国卫生研究院文献>The Journal of Physiology >Spinal dorsal horn neuronal responses to myelinated versus unmyelinated heat nociceptors and their modulation by activation of the periaqueductal grey in the rat
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Spinal dorsal horn neuronal responses to myelinated versus unmyelinated heat nociceptors and their modulation by activation of the periaqueductal grey in the rat

机译:脊髓背角神经元对髓鞘和非髓鞘热伤害感受器的反应及其通过激活大鼠导水管周围灰色的调节

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摘要

The aim of this study was to further understand the central processing of inputs arising from unmyelinated and myelinated nociceptors by (i) determining the response characteristics of Class 2 dorsal horn neurones to preferential activation of C- and A-fibre heat nociceptors, and (ii) investigating the control exerted by the dorsolateral/lateral region of the midbrain periaqueductal grey (DL/L-PAG) on C- and A-fibre-evoked responses of these neurones. The use of different rates of skin heating to preferentially activate unmyelinated (C-fibre; 2.5°C s−1) versus myelinated (A-fibre; 7.5°C s−1) heat nociceptors revealed that, in response to C-nociceptor activation, Class 2 neurones encode well only over the first 5°C above threshold, and that at higher temperatures responses decline. In contrast, responses to A-nociceptor activation are linear and encode skin temperature over more than 10°C, and almost certainly into the tissue-damaging range. PAG stimulation raised thresholds and decreased significantly the magnitude of responses to A- and C-nociceptor activation. However, differences were revealed in the effects of descending control on the relationships between skin temperature and neuronal firing rate; the linear relationship that occurred over the first 5°C of slow rates of skin heating was no longer evident, whereas that to fast rates of skin heating was maintained over the entire range, albeit shifted to the right. These data indicate that the sensori-discriminative information conveyed in A-fibre nociceptors is maintained and that the information from C-nociceptors is lost in the presence of descending control from the DL/L-PAG. The data are discussed in relation to the role of the DL/L-PAG in mediating active coping strategies.
机译:这项研究的目的是通过(i)确定2类背角神经元对C和A纤维热伤害感受器的优先激活的响应特征,进一步了解由无髓和有髓伤害感受器引起的输入的集中处理,以及(ii )研究中脑导水管周围灰色(DL / L-PAG)的背外侧/外侧区域对这些神经元的C和A纤维诱发的反应的控制作用。使用不同速率的皮肤加热优先激活未髓鞘化(C纤维; 2.5°C s -1 )与有髓鞘化(A纤维; 7.5°C s -1 ) >)热伤害感受器表明,响应C感受器激活,第2类神经元仅在高于阈值的第一个5°C时编码良好,而在较高温度下,响应下降。相反,对A-伤害感受器激活的响应是线性的,编码的皮肤温度超过10°C,几乎可以肯定进入组织破坏范围。 PAG刺激可提高阈值,并显着降低对A和C感受器激活的反应幅度。但是,降低控制对皮肤温度和神经元放电率之间关系的影响揭示出差异。在缓慢的皮肤加热速率的最初5°C发生的线性关系不再明显,而在整个范围内都保持了快速的皮肤加热速率,尽管向右移动。这些数据表明,在存在来自DL / L-PAG的下降控制时,维持了A纤维伤害感受器中传递的感觉区别信息,并且来自C伤害感受器的信息丢失了。讨论了有关DL / L-PAG在介导主动应对策略中的作用的数据。

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