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体外 10-40mmHg 超压下 SonoVue 微泡的次谐波散射。

Subharmonic Scattering of SonoVue Microbubbles Within 10-40-mmHg Overpressures In Vitro.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Dec;68(12):3583-3591. doi: 10.1109/TUFFC.2021.3101694. Epub 2021 Nov 23.

Abstract

Ultrasound contrast agent microbubbles are considered promising sensors to measure portal vein pressure noninvasively. In this study, we investigated the subharmonic scattering power and optimal incident acoustic pressure of SonoVue microbubbles (concentration: [Formula: see text]/mL 0.9% NaCl solution) in the ambient pressure range of 10-40 mmHg with 10-mmHg increments at a temperature of 25 °C. The results demonstrated that the subharmonic response of the SonoVue microbubbles existed in three stages: the first growth stage (40-300 kPa), saturation (300-400 kPa), and the second growth stage (400-540 kPa). In the first growth stage, the subharmonic amplitude increased with ambient pressure. However, while the ambient pressure increased, the subharmonic amplitude decreased in the second growth stage. The best correlation of the subharmonic amplitudes with the ambient pressures was obtained at a high incident acoustic pressure of 520 kPa (sensitivity: 0.15 dB/mmHg, r = 0.99 , and root-mean-square error = 0.49 mmHg), which indicated that the subharmonic signals in the second growth stage might be suitable for estimating low ambient pressures. The results presented in our study may pave the way for portal vein pressure estimation using SonoVue microbubbles as sensors in clinical applications.

摘要

超声造影微泡被认为是一种很有前途的无创测量门静脉压力的传感器。在这项研究中,我们在 25°C 的温度下,研究了 SonoVue 微泡(浓度:[公式:见文本])在环境压力范围为 10-40mmHg 时的次谐波散射功率和最佳入射声压,以 10mmHg 为增量。结果表明,SonoVue 微泡的次谐波响应存在三个阶段:第一增长阶段(40-300kPa)、饱和阶段(300-400kPa)和第二增长阶段(400-540kPa)。在第一增长阶段,次谐波幅度随环境压力的增加而增加。然而,随着环境压力的增加,次谐波幅度在第二增长阶段下降。在 520kPa 的高入射声压下,次谐波幅度与环境压力之间的最佳相关性最高(灵敏度:0.15dB/mmHg,r=0.99,均方根误差=0.49mmHg),这表明第二增长阶段的次谐波信号可能适合估计低环境压力。我们研究中的结果可能为临床应用中使用 SonoVue 微泡作为传感器来估计门静脉压力铺平道路。

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