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首页> 外文期刊>The Journal of Experimental Biology >Distribution of regional cerebral blood flow in voluntarily diving rats
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Distribution of regional cerebral blood flow in voluntarily diving rats

机译:自愿潜水大鼠局部脑血流的分布

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The distribution of regional cerebral blood flow (rCBF) was examined in conscious, voluntarily diving rats using the brain blood flow tracer N-[C-14]isopropyl-piodoamphetamine and quantitative autoradiography. A detailed examination of the regional distribution of cerebral blood flow revealed that almost all brain regions were hyperperfused during diving, During diving, rCBF increased by an average of 1.7-fold in 29 of the 33 brain regions examined, despite a 69.2 % decrease in cardiac output, Only some regions of the basal ganglia (caudate-putamen and globus pallidus) and limbic areas (hippocampus and amygdala) did not increase rCBF significantly during diving, We determined that the increase in rCBF during diving is primarily due to a corresponding 20.9 % decrease in cerebrovascular resistance, A significant increase in perfusion pressure during diving also potentially contributed to the increase in rCBF, Because some brain regions did not increase flow significantly during diving, these results suggest that not all brain regions participate equally in the global cerebrovascular response to diving, This study provides evidence to support the view that the brain is preferentially perfused during conscious voluntary diving in the rat, The mechanism(s) that probably produce the cerebrovascular changes during diving are discussed. [References: 45]
机译:使用脑血流示踪剂N- [C-14]异丙基-苯异丙基苯丙胺和定量放射自显影技术检查有意识的,自愿跳水的大鼠的区域脑血流(rCBF)的分布。对大脑血流区域分布的详细检查显示,在潜水过程中几乎所有的大脑区域都被过度灌注。在潜水过程中,尽管心脏的心脏区域减少了69.2%,rCBF在被检查的33个大脑区域中的29个区域中平均增加了1.7倍输出,仅在潜水期间基底神经节的某些区域(尾状-丘脑和苍白球)和边缘区域(海马和杏仁核)并未显着增加rCBF,我们确定潜水期间rCBF的增加主要是由于相应的20.9%脑血管抵抗力降低,潜水过程中灌注压力的显着增加也可能导致rCBF的增加。由于某些大脑区域在潜水过程中并未显着增加流量,因此这些结果表明,并非所有的大脑区域都平等地参与了对脑血管的反应潜水,这项研究提供证据支持大脑优先灌注的观点在大鼠有意识的自愿潜水中,讨论了在潜水过程中可能引起脑血管变化的机制。 [参考:45]

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