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Toward noninvasive pressue estimation using ultrasound and phase-change contrast agents

机译:利用超声波和相变造影剂对非侵入性估计

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It is well known now that a phase-change contrast agent (PCCA) can be activated from a liquid (nanodroplet) state using pulsed ultrasound (US) energy to form a larger highly echogenic microbubble (MB). Since nanodroplet activation is highly dependent on the hydrostatic pressure exerted on it, any increases in this stabilizing force demands higher US energies to induce phase transition. Herein we explore this basic relationship as a potential direction for noninvasive pressure measurement and foundation of a new technology we are developing termed tumor interstitial pressure estimation using US (TIPE-US). TIPE-US was developed using a programmable US research scanner (Vantage 256, Verasonics Inc). A custom scan sequence was implemented and interleaved pulsed US transmissions for both PCCA activation and subsequent MB detection. An automated US pressure sweep is performed (peak negative pressures from 3 to 6 MPa, N = 200 discrete intervals), and US images are acquired at each increment. PCCAs were formulated in house using the popular condensation method. Pressurized samples were then studied using the TIPE-US system. The activation threshold required to convert PCCA from the liquid to gaseous state was recorded for various PCCA conditions. Overall, PCCA activation threshold was lowered with increasing sample temperature while PCCA concentration appeared to play no role.
机译:现在众所周知,可以使用脉冲超声(US)能量从液体(纳米纳米电流)状态激活相变造影剂(PCCA)以形成较大的高度回声的微泡(MB)。由于纳米射线活化高度依赖于施加在其上的静压压力上,因此这种稳定力的任何增加都需要提高美国能量以诱导相转变。在此,我们探讨了这种基本关系,作为非侵入性压力测量的潜在方向和新技术的基础,我们正在使用我们(钻石 - 美国)发展被称为肿瘤间隙估计。 Tipe-Us是使用可编程美国研究扫描仪(Vantage 256,Verasonics Inc)开发的。为PCCA激活和随后的MB检测实现了自定义扫描序列和交织脉冲的脉冲传输。执行自动化的US压力扫描(峰值负压从3到6MPa,n = 200个离散间隔),并且在每个增量中获取美国图像。使用流行的冷凝法在房屋中配制了PCCA。然后使用磨石 - 美国系统研究加压样品。记录从液体转化为气态的PCCA所需的激活阈值,用于各种PCCA条件。总的来说,随着样品温度的增加,PCCA激活阈值降低,而PCCA浓度似乎没有作用。

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