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The effects of cardiopulmonary bypass and deep hypothermic circulatory arrest on blood viscoelasticity and cerebral blood flow in a neonatal piglet model.

机译:在新生仔猪模型中,体外循环和深低温循环停搏对血液粘弹性和脑血流的影响。

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The purpose of this study is to determine the effects of cardiopulmonary bypass (CPB) and deep hypothermic circulatory arrest (DHCA) on the viscoelasticity (viscosity and elasticity) of blood and global and regional cerebral blood flow (CBF) in a neonatal piglet model. After initiation of CPB, all animals (n = 3) were subjected to core cooling for 20 min to reduce the piglets' nasopharyngeal temperatures to 18 degrees C. This was followed by 60 min of DHCA, then 45 min of rewarming. During cooling and rewarming, the alpha-stat technique was used. Arterial blood samples were taken for viscoelasticity measurements and differently labeled microspheres were injected at pre-CPB, pre- and post-DHCA, 30 and 60 min after CPB for global and regional cerebral blood flow calculations. Viscosity and elasticity were measured at 2 Hz, 22 degrees C and at a strain of 0.2, 1, and 5 using a Vilastic-3 Viscoelasticity Analyzer. Elasticity of blood at a strain = 1 decreased to 32%, 83%, 57%, and 61% (p = 0.01, ANOVA) while the viscosity diminished 8.4%, 38%, 22%, 26% compared to the baseline values (p = 0.01, ANOVA) at pre-DHCA, post-DHCA, 30 and 60 min after CPB, respectively. The viscoelasticity of blood at a strain of 0.2 and 5 also had similar statistically significant drops (p < 0.05). Global and regional cerebral blood flow were also decreased 30%, 66%, 64% and 63% at the same experimental stages (p < 0.05, ANOVA). CPB procedure with 60 min of DHCA significantly alters the blood viscoelasticity, global and regional cerebral blood flow. These large changes in viscoelasticity may have a significant impact on organ blood flow, particularly in the brain.
机译:这项研究的目的是确定新生儿仔猪模型中体外循环(CPB)和深低温循环停止(DHCA)对血液的粘弹性(黏度和弹性)以及整体和局部脑血流(CBF)的影响。开始CPB后,对所有动物(n = 3)进行核心冷却20分钟,以将仔猪的鼻咽温度降至18摄氏度。随后进行60分钟的DHCA,然后进行45分钟的加温。在冷却和重新加热期间,使用了alpha-stat技术。在CPB之前,DHCA之前和之后,CPCA之后30分钟和60分钟,分别采集动脉血样品进行粘弹性测量并注射不同标记的微球,以进行整体和区域脑血流量计算。使用Vilastic-3粘弹性分析仪在2Hz,22℃和0.2、1和5的应变下测量粘度和弹性。与基线值相比,应变为1时血液的弹性降低到32%,83%,57%和61%(p = 0.01,ANOVA),而粘度降低了8.4%,38%,22%,26%(分别在CPB后30分钟和60分钟后在DHCA之前,DHCA之后的p = 0.01(ANOVA)。血液在0.2和5应变下的粘弹性也有相似的统计学显着下降(p <0.05)。在相同的实验阶段,全球和区域性脑血流量也分别减少了30%,66%,64%和63%(p <0.05,ANOVA)。 60分钟的DHCA进行CPB程序会显着改变血液的粘弹性,整体和局部脑血流量。粘弹性的这些大变化可能会对器官的血液流动产生重大影响,尤其是在大脑中。

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