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Measuring Ascending Aortic Stiffness In Vivo in Mice Using Ultrasound

机译:使用超声波测量小鼠体内升主动脉僵硬度

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摘要

We present a protocol for measuring in vivo aortic stiffness in mice using high-resolution ultrasound imaging. Aortic diameter is measured by ultrasound and aortic blood pressure is measured invasively with a solid-state pressure catheter. Blood pressure is raised then lowered incrementally by intravenous infusion of vasoactive drugs phenylephrine and sodium nitroprusside. Aortic diameter is measured for each pressure step to characterize the pressure-diameter relationship of the ascending aorta. Stiffness indices derived from the pressure-diameter relationship can be calculated from the data collected. Calculation of arterial compliance is described in this protocol.This technique can be used to investigate mechanisms underlying increased aortic stiffness associated with cardiovascular disease and aging. The technique produces a physiologically relevant measure of stiffness compared to ex vivo approaches because physiological influences on aortic stiffness are incorporated in the measurement. The primary limitation of this technique is the measurement error introduced from the movement of the aorta during the cardiac cycle. This motion can be compensated by adjusting the location of the probe with the aortic movement as well as making multiple measurements of the aortic pressure-diameter relationship and expanding the experimental group size.
机译:我们提出了使用高分辨率的超声成像测量小鼠体内主动脉僵硬度的协议。通过超声测量主动脉直径,并使用固态压力导管有创地测量主动脉血压。通过静脉内输注血管活性药物去氧肾上腺素和硝普钠,可以升高血压,然后逐渐降低血压。对每个压力步长测量主动脉直径,以表征升主动脉的压力直径关系。可以从收集到的数据中计算出由压力-直径关系得出的刚度指数。该协议中描述了动脉顺应性的计算。该技术可用于研究与心血管疾病和衰老相关的主动脉僵硬增加的潜在机制。与离体方法相比,该技术产生了与生理学相关的硬度测量值,因为在测量中纳入了对主动脉僵硬度的生理影响。该技术的主要局限性是在心动周期期间由主动脉的运动引起的测量误差。这种运动可以通过用主动脉运动调整探头的位置以及对主动脉压力与直径的关系进行多次测量并扩大实验组的大小来补偿。

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