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Loss of Contrast Intensity During Systole in the Left Ventricular Cavity with the Use of the Contrast Agent AlbunexAn Analysis of its Correlation with Pressure and Velocity

机译:使用造影剂 Albunex 在左心室腔收缩期间失去造影剂的对比强度分析其与压力和速度的相关性

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RATIONALE AND OBJECTIVESSeveral investigators have observed a decrease in video intensity in the left ventricular cavity during systole when using contrast echocardiography. It has been suggested that this phenomenon is related to microbubble instability. The authors propose that this phenomenon is, in part, related to the effects of pressure and velocity on the acoustic reflectance of ultrasound contrast agents.METHODSUsing an in vitro flow tube model and varying concentrations of Albunex contrast agent, the effects of pressure and velocity on microbubble video intensity were investigated. Velocity and pressure were varied independently and the imaging tube was scanned using three transducer frequencies at different concentrations of Albunex. Contrast video intensity was analyzed using high and low velocities (at constant pressure) and high and low pressures (at constant velocity). In addition, the fluid from the system was collected and imaged in a nonflowing reservoir tank to investigate the video intensity of the microbubbles when exposed to variable velocity and pressure.RESULTSThe video-intensity measurements were inversely and irreversibly related to ambient pressure changes (independent of velocity) in a tube model. However, video intensity varied inversely but reversibly with velocity independent of pressure). This observation could not be explained simply by the “laminar flow” theory, by a change in transducer angulation, nor by a change in ultrasound imaging frame rate. This phenomenon was limited to Albunex microbubbles and was not observed with a contrast medium (corn starch) devoid of the acoustic properties of Albunex.
机译:基本原理和目的一些研究人员观察到,使用对比超声心动图时,收缩期左心室腔的视频强度降低。有人认为这种现象与微泡不稳定性有关。作者提出,这种现象在一定程度上与压力和速度对超声造影剂声反射率的影响有关。方法采用体外流管模型和不同浓度的Albunex造影剂,研究了压力和速度对微泡视频强度的影响。速度和压力独立变化,并使用三个换能器频率在不同浓度的Albunex下扫描成像管。使用高速和低速(恒压)和高压和低压(恒速)分析对比视频强度。此外,还收集了来自系统的流体,并在非流动的储罐中成像,以研究微气泡在暴露于可变速度和压力时的视频强度。结果在管子模型中,视频强度测量与环境压力变化(与速度无关)呈负相关且不可逆相关。然而,视频强度与速度成反比,但与压力无关。这一观察结果不能简单地用“层流”理论、换能器角度的变化或超声成像帧速率的变化来解释。这种现象仅限于Albunex微气泡,并且在没有Albunex声学特性的造影剂(玉米淀粉)中没有观察到。

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