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全身性低氧和高碳酸血症对猫后肢皮肤和肌肉血管收缩神经元的影响。

Effects of sytemic hypoxia and hypercapnia on cutaneous and muscle vasoconstrictor neurones to the cat's hindlimb.

作者信息

Gregor M

出版信息

Pflugers Arch. 1977 Mar 11;368(1-2):71-81. doi: 10.1007/BF01063457.

Abstract
  1. Reactions of cutaneous and muscle vasoconstrictor neurones to the hindlimb on systemic hypoxia and systemic hypercapnia were investigated in chloralose anaesthetized cats. Mainly four types of preparations were used: brain intact and decrebrate (pontomedullary) animals with and without carotid sinus (CSN) and vagal nerves (VN). 2. In brain intact animals with intact CSN and VN most cutaneous vasoconstrictor neurones were depressed and most muscle vasoconstrictor neurones were excited during systemic hypoxia and hypercapnia. The responses to hypercapnia were smaller than those to hypoxia. 3. In brain intact deafferented animals and in decerebrate animals with and without intact CSN and VN systemic hypoxia and hypercapnia induced excitation in both cutaneous and muscle vasoconstrictor neurones. The responses to hypoxia were significantly smaller in deafferented preparations when compared to those in preparations with intact CSN and VN. Furthermore in muscle vasoconstrictor neurones the size of the responses was not significantly different in decerebrate preparations from that in brain intact preparations. 4. These results indicate a distinct neuronal organization of the chemoreceptor reflexes in the vasoconstrictor systems in the brain stem. Suprapontine brain structures are most important for producing the inhibition of the cutaneous vasoconstrictor neurones during hypoxia and hypercapnia.
摘要
  1. 在氯醛糖麻醉的猫身上,研究了皮肤和肌肉血管收缩神经元对后肢在全身性缺氧和全身性高碳酸血症时的反应。主要使用了四种类型的制备:有和没有颈动脉窦(CSN)及迷走神经(VN)的脑完整和去大脑(脑桥延髓)动物。2. 在脑完整、CSN和VN完整的动物中,大多数皮肤血管收缩神经元在全身性缺氧和高碳酸血症时受到抑制,而大多数肌肉血管收缩神经元则被兴奋。对高碳酸血症的反应小于对缺氧的反应。3. 在脑完整的去传入神经动物以及有和没有完整CSN和VN的去大脑动物中,全身性缺氧和高碳酸血症均诱导皮肤和肌肉血管收缩神经元兴奋。与CSN和VN完整的制备相比,去传入神经制备中对缺氧的反应明显较小。此外,在肌肉血管收缩神经元中,去大脑制备中的反应大小与脑完整制备中的反应大小没有显著差异。4. 这些结果表明脑干血管收缩系统中化学感受器反射具有独特的神经元组织。脑桥上的脑结构对于在缺氧和高碳酸血症期间产生对皮肤血管收缩神经元的抑制最为重要。

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