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首页> 外文期刊>American Journal of Physiology >Noninvasive ultrasonic measurement of arterial wall motion in mice.
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Noninvasive ultrasonic measurement of arterial wall motion in mice.

机译:小鼠动脉壁运动的无创超声测量。

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摘要

Despite the extensive use of genetically altered mice to study cardiovascular physiology and pathology, it remains difficult to quantify arterial function noninvasively in vivo. We have developed a noninvasive Doppler method for quantifying vessel wall motion in anesthetized mice. A 20-MHz probe was held by an alligator clip and positioned over the carotid arteries of 16 mice, including six 3- to 5-mo-old wild-type (WT), four 30-mo-old senescent (old), two apolipoprotein E null (ApoE), and four alpha-smooth muscle actin null (alpha-SMA) mice. Doppler signals were obtained simultaneously from both vessel walls and from blood flow. The calculated displacement signals from the near and far walls were subtracted to generate a diameter signal from which the excursion and an augmentation index were calculated. The excursion ranged between 13 microm (in ApoE) and 95 microm (in alpha-SMA). The augmentation index was lowest in the WT mice (0.06) and highest in the old mice (0.29). We conclude that Doppler signal processing may be used to measure vessel wall motion in mice with high spatial and temporal resolution and that diameter signals can replace pressure signals for calculating the augmentation index. This noninvasive method is able to identify and confirm characteristic changes in arterial properties previously associated with age, atherosclerosis, and the absence of vascular tone.
机译:尽管广泛使用了基因改变的小鼠来研究心血管生理和病理学,但仍然难以在体内无创地量化动脉功能。我们已经开发出了一种无创多普勒方法来定量麻醉小鼠的血管壁运动。用鳄鱼夹夹住20 MHz探针,并将其放置在16只小鼠的颈动脉上,其中包括六只3至5个月大的野生型(WT),四只30个月大的衰老(老),两只载脂蛋白E无效(ApoE)和四只α-平滑肌肌动蛋白无效(alpha-SMA)小鼠。同时从血管壁和血流中获得多普勒信号。从近壁和远壁计算出的位移信号相减,以生成直径信号,从中计算出偏移和增强指数。偏移范围在13微米(在ApoE中)和95微米(在α-SMA中)之间。增强指数在野生型小鼠中最低(0.06),在老年小鼠中最高(0.29)。我们得出的结论是,多普勒信号处理可用于测量具有高空间和时间分辨率的小鼠的血管壁运动,并且直径信号可以代替压力信号来计算增强指数。这种非侵入性方法能够识别和确认先前与年龄,动脉粥样硬化和缺乏血管张力相关的动脉特性的特征性变化。

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