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Intracardiac Echocardiography Guided Transeptal Catheter Injection of Microspheres for Assessment of Cerebral Microcirculation in Experimental Models

机译:心内超声心动图引导下经皮导管微球注射法评估实验模型中脑微循环

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摘要

The use of microspheres for the determination of regional microvascular blood flow (RMBF) has previously used different approaches. This study presents for the first time the intracardiac injection of microspheres using transeptal puncture under intracardiac echocardiography guidance. Five Merino sheep were instrumented and cardiovascularly supported according to local guidelines. Two catheter sheaths into the internal jugular vein facilitated the introduction of an intracardiac probe and transeptal catheter, respectively. Five million colour coded microspheres were injected into the left atrium via this catheter. After euthanasia the brain was used as proof of principle and the endpoint for determination of microcirculation at different time points. Homogeneous allocation of microspheres to different regions of the brain was found over time. Alternate slices from both hemispheres showed the following flow ranges: for slice 02; 0.57–1.02 mL/min/g, slice 04; 0.45–1.42 mL/min/g, slice 06; 0.35–1.87 mL/min/g, slice 08; 0.46–1.77 mL/min/g, slice 10; 0.34–1.28 mL/min/g. A mixed effect regression model demonstrated that the confidence interval did include zero suggesting that the apparent variability intra- and intersubject was not statistically significant, supporting the stability and reproducibility of the injection technique. This study demonstrates the feasibility of the transeptal injection of microspheres, showing a homogeneous distribution of blood flow through the brain unchanged over time and has established a new interventional model for the measurement of RMBF in ovine models.
机译:微球用于确定区域微血管血流量(RMBF)的用途先前已使用了不同的方法。这项研究首次提出在心内超声心动图指导下使用经膜穿刺进行心内微球注射。根据当地指南,对五只美利奴绵羊进行了检测并为其提供了心血管支持。颈内静脉有两个导管套,分别促进了心内探针和经膜导管的引入。通过该导管将五百万个颜色编码的微球体注入左心房。安乐死后,将大脑用作原理证明,并在不同时间点确定微循环的终点。随着时间的推移,发现了微球在大脑不同区域的均匀分配。来自两个半球的交替切片显示以下流动范围:切片02; 0.57–1.02 mL / min / g,切片04; 0.45–1.42 mL / min / g,切片06; 0.35–1.87 mL / min / g,切片08; 0.46–1.77 mL / min / g,切片10; 0.34–1.28 mL / min / g。混合效应回归模型表明,置信区间确实包括零,这表明受试者内部和受试者之间的表观变异性在统计学上不显着,从而支持了注射技术的稳定性和可重复性。这项研究证明了经微球透皮注射的可行性,显示了随时间变化的均匀分布于大脑的血流分布,并建立了一种新的干预模型,用于测量绵羊模型中的RMBF。

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