首页> 外文期刊>Annals of the New York Academy of Sciences >Vibrometry: A Novel Noninvasive Application of Ultrasonographic Physics to Estimate Wall Stress in Native Aneurysms
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Vibrometry: A Novel Noninvasive Application of Ultrasonographic Physics to Estimate Wall Stress in Native Aneurysms

机译:振动法:超声物理学的一种新的非侵入性应用,以估计自然动脉瘤中的壁应力。

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Our objective was to test vibrometry as a means to measure changes in aneurysm sac pressure in an in vitro aneurysm model. Ex-planted porcine abdominal aortas and nitrile rubber tubes were used to model an aneurysm sac. An ultrasound beam was used to vibrate the surface of the aneurysm model. The motion generated on the surface was detected either by reflected laser light or by a second ultrasound probe. This was recorded at different aneurysm pressures. The phase of the propagating wave was measured to assess changes in velocity and to see if there was a correlation with aneurysm pressure. The cumulative phase shift detected by laser or Doppler correlated well with increasing hydrostatic pressure in both the rubber and the porcine aorta model. The square of the mean pressure correlated well with the cumulative phase shift when dynamic pressure was generated by a pump. However, the pulse pressure was poorly correlated with the cumulative phase shift. Noninvasive measurement of changes in aortic aneurysm sac tension is feasible in an in vitro setting using the concept of vibrometry. This could potentially be used to noninvasively detect wall stress in native aneurysms and endotension after endovascular aneurysm repair (EVAR) and to predict the risk of rupture.
机译:我们的目标是测试振动测量法,以测量体外动脉瘤模型中动脉瘤囊压力的变化。外植猪腹主动脉和丁腈橡胶管用于模拟动脉瘤囊。超声束用于振动动脉瘤模型的表面。表面上产生的运动通过反射激光或第二超声探头检测。这是在不同的动脉瘤压力下记录的。测量传播波的相位,以评估速度的变化并查看是否与动脉瘤压力相关。在橡胶模型和猪主动脉模型中,通过激光或多普勒检测到的累积相移与静水压力的增加密切相关。当泵产生动压时,平均压力的平方与累积相移很好地相关。但是,脉冲压力与累积相移的相关性很差。使用振动测量的概念,在体外设置中,无创测量主动脉瘤囊张力的变化是可行的。这可能被用于非侵入性地检测血管内动脉瘤修复(EVAR)后自然动脉瘤的壁应力和内压,并预测破裂的风险。

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