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模拟微重力或微重力时血容量减少对立位耐力影响的研究进展 被引量:8
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作者 汪德生 任维 +1 位作者 向求鲁 孙磊 《航天医学与医学工程》 CSCD 2000年第2期152-156,共5页
航天后立位耐力降低普遍存在 ,其机理仍不清楚。一般认为血容量减少是航天后立位耐力降低的一个重要因素。现有对抗航天后立位耐力降低的措施均与血容量有关。微重力 ( μG)和模拟 μG时研究表明 :μG与现有模拟 μG模型时人体生理学变... 航天后立位耐力降低普遍存在 ,其机理仍不清楚。一般认为血容量减少是航天后立位耐力降低的一个重要因素。现有对抗航天后立位耐力降低的措施均与血容量有关。微重力 ( μG)和模拟 μG时研究表明 :μG与现有模拟 μG模型时人体生理学变化的主要差异表现在低压区循环和体液、电解质代谢。细胞外体液主要受心肺反射调节。因此 ,采用适当的模拟 μG模型研究低压区循环、心肺反射变化的时间过程 ,对认识立位耐力降低机理和制定更有效的对抗立位耐力降低的措施具有重要意义。 展开更多
关键词 微重力 立位耐力 血容量 心肺反射 航天
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Nitric oxide inhibits excitatory vagal afferent input to nucleus tractus solitarius neurons in anaesthetized rats
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作者 孔淑贞 樊明欣 +2 位作者 张滨鸿 王振宇 王云 《Neuroscience Bulletin》 SCIE CAS CSCD 2009年第6期325-334,共10页
Objective Endogenous nitric oxide (NO) has been implicated in the regulation of neuronal activity which mediates cardiovascular reflexes. However, there is controversy concerning the role of NO in the nucleus tractu... Objective Endogenous nitric oxide (NO) has been implicated in the regulation of neuronal activity which mediates cardiovascular reflexes. However, there is controversy concerning the role of NO in the nucleus tractus solitarius (NTS). The present study aims to elucidate the possible physiological role of endogenous NO in modulating the excitatory vagal afferent input to NTS neurons. Methods All the experiments in the rat were conducted under anaesthetic conditions. Ionophoresis method was used for the application of NO donor or nitric oxide synthase (NOS) inhibitor, and single unit recording method was employed to detect the effects of these applications on vagal afferentor cardio-pulmonary C-fibre reflex-evoked neuronal excitation in NTS. Results Ionophoresis applications of L-arginine (L-Arg), a substrate of NOS, and sodium nitroprusside (SNP), a NO donor, both attenuated the vagal afferent-evoked discharge by (51.5±7.6)% (n = 17) and (68.3±7.1)% (n = 9), respectively. In contrast, application of D-Arg at the same current exerted no overall effect on this input. Also, both L-Arg and SNP inhibited spontaneous firing of most of the recorded neurons. In contrast, ionophoresis application of NG-nitro-Larginine methyl ester (L-NAME) enhanced vagal afferent-evoked excitation by (66.3±11.4)% (n = 7). In addition, ionophoresis application of L-Arg and SNP significantly attenuated cardio-pulmonary C-fibre reflex-induced excitation in the tested NTS neurons. Conclusion Activation of local NO pathway in the NTS could suppress vagal afferent-evoked excitation, suggesting that NO is an important neuromodulator of visceral sensory input in the NTS. 展开更多
关键词 nitric oxide nucleus tractus solitarius (NTS) ionophoresis vagus afferents cardiopulmonary reflex rat
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