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首页> 外文期刊>Acta physiologica Scandinavica >The Kety-Schmidt technique for repeated measurements of global cerebral blood flow and metabolism in the conscious rat.
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The Kety-Schmidt technique for repeated measurements of global cerebral blood flow and metabolism in the conscious rat.

机译:使用Kety-Schmidt技术重复测量清醒大鼠的整体脑血流量和新陈代谢。

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摘要

Cerebral activation will increase cerebral blood flow (CBF) and cerebral glucose uptake (CMRglc) more than it increases cerebral uptake of oxygen (CMR(O2)). To study this phenomenon, we present an application of the Kety-Schmidt technique that enables repetitive simultaneous determination of CBF, CMR(O2), CMRglc and CMRlac on awake, non-stressed animals. After constant intravenous infusion with 133Xenon, tracer infusion is terminated, and systemic arterial blood and cerebral venous blood are continuously withdrawn for 9 min. In this paper, we evaluate if the assumptions applied with the Kety-Schmidt technique are fulfilled with our application of the method. When measured twice in the same animal, the intra-individual variation for CBF, CMR(O2), and CMRglc were 10% (SD: 25%), 8% (SD: 25%), and 9% (SD: 28%), respectively. In the awake rat the values obtained for CBF, CMR(O2) and CMRglc were 106 mL [100 g](-1) min(-1), 374 micromole [100 g](-1) min(-1) and 66 micromole [100 g](-1) min(-1), respectively. The glucose taken up by the brain during wakefulness was fully accounted for by oxidation and cerebral lactate efflux. Anaesthesia with pentobarbital induced a uniform reduction of cerebral blood flow and metabolism by approximately 40%. During halothane anaesthesia CBF and CMRglc increased by approximately 50%, while CMR(O2) was unchanged.
机译:脑激活将增加脑血流量(CBF)和脑葡萄糖摄取(CMRglc),而不是增加脑氧摄取(CMR(O2))。为了研究这种现象,我们介绍了Kety-Schmidt技术的应用,该技术能够在清醒,无压力的动物上同时重复测定CBF,CMR(O2),CMRglc和CMRlac。在连续静脉注射133Xenon后,终止示踪剂输注,并连续抽取全身动脉血和脑静脉血9分钟。在本文中,我们评估了Kety-Schmidt技术所适用的假设是否可以满足我们方法的应用。在同一只动物中两次测量时,CBF,CMR(O2)和CMRglc的个体内差异分别为10%(SD:25%),8%(SD:25%)和9%(SD:28%) ), 分别。在清醒的大鼠中,CBF,CMR(O2)和CMRglc的值分别为106 mL [100 g](-1)min(-1),374微摩尔[100 g](-1)min(-1)和66微摩尔[100 g](-1)min(-1)。大脑在清醒过程中所吸收的葡萄糖完全由氧化和脑乳酸排出引起。戊巴比妥麻醉可导致脑血流量和新陈代谢均匀降低约40%。在氟烷麻醉期间,CBF和CMRglc增加约50%,而CMR(O2)不变。

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