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首页> 外文期刊>Journal of hypertension >Pressure but not angiotensin II-induced increases in wall mass or tone influences static and dynamic aortic mechanics.
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Pressure but not angiotensin II-induced increases in wall mass or tone influences static and dynamic aortic mechanics.

机译:压力而不是由血管紧张素II引起的壁质量或音调的增加会影响静态和动态主动脉力学。

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摘要

OBJECTIVE: To distinguish between static (due to slow changes in pressure) and dynamic (due to pressure pulsatility) components of aortic compliance over a large pressure range in vivo and to examine the effects of increased vascular mass and smooth muscle tone on these components. METHODS: Using ultrasound wall tracking, aortic lumen area-pressure curves were generated in anaesthetized rats over a broad range of pressures by altering blood volume. The compliance coefficient calculated at each mean pressure was considered the dynamic compliance at that pressure; the slope of the diastolic lumen area-pressure curve represents static compliance. Experiments were performed in control rats and rats treated with angiotensin II (ANG II) acutely (500 ng/kg per min intravenously) to modify vascular tone or chronically (250 ng/kg per min subcutaneously for 2 weeks) to modify vascular mass. RESULTS: The dynamic compliance-pressure curve approximated a parabola. Maximal dynamic compliance (0.272+/-0.026 mm2/kPa in control rats) was achieved at near-normotensive pressure (+/-105 mm Hg). The diastolic lumen area-pressure curve showed an exponential relationship within a physiological range (30-130 mm Hg). ANG II-induced increases in aortic wall mass or smooth muscle tone did not modify the relationship between static or dynamic compliance and pressure. CONCLUSIONS: These findings demonstrate that static and dynamic mechanics of the rat thoracic aorta depend differently on blood pressure. Static compliance increases slightly with pressure in a physiological range, while dynamic compliance is auto-regulated around normotensive pressures. Neither static nor dynamic compliance of the rat thoracic aorta are influenced by ANG II-induced increases in aortic wall mass or smooth muscle tone.
机译:目的:在较大的体内压力范围内区分主动脉顺应性的静态(由于压力变化缓慢)和动态(由于压力脉动)引起的成分,并检查血管质量增加和平滑肌张力对这些成分的影响。方法:使用超声壁追踪技术,通过改变血容量,在宽范围的压力下,在麻醉的大鼠中产生主动脉腔面积-压力曲线。在每个平均压力下计算出的柔量系数被认为是在该压力下的动态柔量。舒张期管腔面积-压力曲线的斜率表示静态顺应性。实验在对照组大鼠和急性接受血管紧张素II(ANG II)(静脉内每分钟500 ng / kg)以改变血管张力的大鼠或长期接受皮下(250 ng / kg每分钟皮下注射2周)以改变血管质量的大鼠中进行。结果:动态顺应性-压力曲线近似于抛物线。在接近血压正常的压力(+/- 105 mm Hg)下达到最大动态顺应性(对照组大鼠为0.272 +/- 0.026 mm2 / kPa)。舒张期管腔面积-压力曲线显示出在生理范围(30-130 mm Hg)内的指数关系。 ANG II诱导的主动脉壁质量或平滑肌张力增加并未改变静态或动态顺应性与压力之间的关系。结论:这些发现表明大鼠胸主动脉的静态和动态力学对血压的依赖性不同。静态顺应性在生理范围内的压力下略有增加,而动态顺应性则在血压正常压力附近自动调节。大鼠胸主动脉的静态或动态顺应性均不受ANG II诱导的主动脉壁质量或平滑肌张力增加的影响。

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