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利用超声实现动脉无创血压评估。

Toward noninvasive blood pressure assessment in arteries by using ultrasound.

机构信息

Section Cardiovascular Biomechanics, Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, The Netherlands.

出版信息

Ultrasound Med Biol. 2011 May;37(5):788-97. doi: 10.1016/j.ultrasmedbio.2011.01.020. Epub 2011 Mar 25.

Abstract

A new method has been developed to measure local pressure waveforms in large arteries by using ultrasound. The method is based on a simultaneous estimation of distension waveforms and velocity profiles from a single noninvasive perpendicular ultrasound B-mode measurement. Velocity vectors were measured by applying a cross-correlation based technique to ultrasound radio-frequency (RF) data. From the ratio between changes in flow and changes in cross-sectional area of the vessel, the local pulse wave velocity (PWV) was estimated. This PWV value was used to convert the distension waveforms into pressure waveforms. The method was validated in a phantom set-up. Physiologically relevant pulsating flows were considered, employing a fluid which mimics both the acoustic and rheologic properties of blood. A linear array probe attached to a commercially available ultrasound scanner was positioned parallel to the vessel wall. Since no steering was used, the beam was perpendicular to the flow. The noninvasively estimated pressure waveforms showed a good agreement with the reference pressure waveforms. Pressure values were predicted with a precision of 0.2 kPa (1.5 mm Hg). An accurate beat to beat pressure estimation could be obtained, indicating that a noninvasive pressure assessment in large arteries by means of ultrasound is feasible.

摘要

一种新的方法已经被开发出来,通过使用超声来测量大动脉中的局部压力波形。该方法基于从单次非侵入性垂直超声 B 型测量中同时估计膨胀波形和速度分布。通过将基于互相关的技术应用于超声射频 (RF) 数据来测量速度向量。通过血管横截面积的变化与血流量的变化之间的比值,估计局部脉搏波速度 (PWV)。该 PWV 值用于将膨胀波形转换为压力波形。该方法在一个体模装置中进行了验证。考虑了与生理相关的脉动流,使用了一种模拟血液的声学和流变学特性的流体。线性阵列探头附接到市售的超声扫描仪上,并与血管壁平行放置。由于没有进行转向,因此光束垂直于流动方向。非侵入性估计的压力波形与参考压力波形吻合良好。压力值的预测精度为 0.2 kPa(1.5 mmHg)。可以获得准确的逐拍压力估计,表明通过超声对大动脉进行非侵入性压力评估是可行的。

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