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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Optimization of Microbubble Concentration and Acoustic Pressure for Left Ventricular High-Frame-Rate EchoPIV in Patients
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Optimization of Microbubble Concentration and Acoustic Pressure for Left Ventricular High-Frame-Rate EchoPIV in Patients

机译:患者左心室高帧速率echopiv的微胶凝浓度和声压的优化

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摘要

High-frame-rate (HFR) echo-particle image velocimetry (echoPIV) is a promising tool for measuring intracardiac blood flow dynamics. In this study, we investigate the optimal ultrasound contrast agent (UCA: SonoVue) infusion rate and acoustic output to use for HFR echoPIV (PRF = 4900 Hz) in the left ventricle (LV) of patients. Three infusion rates (0.3, 0.6, and 1.2 ml/min) and five acoustic output amplitudes (by varying transmit voltage: 5, 10, 15, 20, and 30 V-corresponding to mechanical indices of 0.01, 0.02, 0.03, 0.04, and 0.06 at 60-mm depth) were tested in 20 patients admitted for symptoms of heart failure. We assess the accuracy of HFR echoPIV against pulsed-wave Doppler acquisitions obtained for mitral inflow and aortic outflow. In terms of image quality, the 1.2-ml/min infusion rate provided the highest contrast-to-background ratio (CBR) (3-dB improvement over 0.3 ml/min). The highest acoustic output tested resulted in the lowest CBR. Increased acoustic output also resulted in increased microbubble disruption. For the echoPIV results, the 1.2-ml/min infusion rate provided the best vector quality and accuracy; mid-range acoustic outputs (corresponding to 15-20-V transmit voltages) provided the best agreement with the pulsed-wave Doppler. Overall, the highest infusion rate (1.2 ml/min) and mid-range acoustic output amplitudes provided the best image quality and echoPIV results.
机译:高帧速率(HFR)回波粒子图像VELOCIMETRY(ECHOPIV)是用于测量肠内血流动力学的有希望的工具。在这项研究中,我们研究了最佳超声造影剂(UCA:Sonovue)输注速率和声输出用于患者左心室(LV)中的HFR Echopiv(PRF = 4900 Hz)。三个输注速率(0.3,0.6和1.2毫升/分钟)和五个声学输出幅度(通过不同的发射电压:5,10,15,20和30 V-相对应为0.01,0.02,0.03,0.04,在预处理心力衰竭症状的20名患者中测试了0.06毫米的深度)。我们评估HFR Echopiv对二尖瓣流入和主动脉流出的脉冲波多普勒采集的准确性。在图像质量方面,1.2ml / min输注速率提供了最高的对比度 - 背景比(CBR)(3-DB超过0.3ml / min)。测试最高的声输出导致最低CBR。增加的声输出也导致微泡破坏增加。对于Echopiv结果,1.2ml / min输液速率提供了最佳的载体质量和准确性;中档声学输出(对应于15-20-V传输电压)提供了与脉冲波多普勒的最佳协议。总体而言,最高输液速率(1.2毫升/分钟)和中档声学输出幅度提供了最佳的图像质量和echopiv结果。

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