Kellogg D L
Geriatric Research, Education, and Clinical Center, Department of Veterans Affairs, South Texas Veterans Health Care System, Audie L. Murphy Memorial Veterans Hospital Division, San Antonio, TX, USA.
J Appl Physiol (1985). 2006 May;100(5):1709-18. doi: 10.1152/japplphysiol.01071.2005.
This review focuses on the neural and local mechanisms that have been demonstrated to effect cutaneous vasodilation and vasoconstriction in response to heat and cold stress in vivo in humans. First, our present understanding of the mechanisms by which sympathetic cholinergic nerves mediate cutaneous active vasodilation during reflex responses to whole body heating is discussed. These mechanisms include roles for cotransmission as well as nitric oxide (NO). Next, the mechanisms by which sympathetic noradrenergic nerves mediate cutaneous active vasoconstriction during whole body cooling are reviewed, including cotransmission by neuropeptide Y (NPY) acting through NPY Y1 receptors. Subsequently, current concepts for the mechanisms that effect local cutaneous vascular responses to direct skin warming are examined. These mechanisms include the roles of temperature-sensitive afferent neurons as well as NO in causing vasodilation during local heating of skin. This section is followed by a review of the mechanisms that cause local cutaneous vasoconstriction in response to direct cooling of the skin, including the dependence of these responses on intact sensory and sympathetic, noradrenergic innervation as well as roles for nonneural mechanisms. Finally, unresolved issues that warrant further research on mechanisms that control cutaneous vascular responses to heating and cooling are discussed.
本综述聚焦于已被证实的在人体体内对热应激和冷应激产生反应时影响皮肤血管舒张和收缩的神经及局部机制。首先,讨论了我们目前对交感胆碱能神经在对全身加热的反射反应中介导皮肤主动血管舒张的机制的理解。这些机制包括共传递以及一氧化氮(NO)的作用。接下来,回顾了交感去甲肾上腺素能神经在全身冷却过程中介导皮肤主动血管收缩的机制,包括神经肽Y(NPY)通过NPY Y1受体发挥的共传递作用。随后,研究了影响皮肤对直接皮肤升温的局部血管反应的机制的当前概念。这些机制包括温度敏感传入神经元以及NO在皮肤局部加热期间引起血管舒张中的作用。在这部分内容之后,回顾了因皮肤直接冷却而导致局部皮肤血管收缩的机制,包括这些反应对完整的感觉和交感去甲肾上腺素能神经支配的依赖性以及非神经机制的作用。最后,讨论了在控制皮肤对加热和冷却的血管反应机制方面有待进一步研究的未解决问题。