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A comparison of the fragmentation thresholds and inertial cavitation doses of different ultrasound contrast agents

机译:不同超声造影剂的碎裂阈值和惯性空化剂量的比较

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Contrast bubble destruction is important in several new diagnostic and therapeutic applications. The pressure threshold of destruction is determined by the shell material, while the propensity for of the bubbles to undergo inertial cavitation (IC) depends both on the gas and shell properties of the ultrasound contrast agent (UCA). The ultrasonic fragmentation thresholds of three specific UCAs (Optison, Sonazoid, and biSpheres), each with different shell and gas properties, were determined under various acoustic conditions. The acoustic emissions generated by the agents, or their derivatives, characteristic of IC after fragmentation, was also compared, using cumulated broadband-noise emissions (IC "dose"). Albumin-shelled Optison and surfactant-shelled Sonazoid had low fragmentation thresholds (mean-0.13 and 0.15 MPa at 1.1 MHz, 0.48 and 0.58 MPa at 3.5 MHz, respectively), while polymer-shelled biSpheres had a significant higher threshold (mean = 0.19 and 0.23 MPa at 1.1 MHz, 0.73 and 0.96 MPa for thin- and thick-shell biSpheres at 3.5 MHz, respectively, p<0.01). At comparable initial concentrations, surfactant-shelled Sonazoid produced a much larger IC dose after shell destruction than did either biSpheres or Optison (p<0.01). Thick-shelled biSpheres had the highest fragmentation threshold and produced the lowest IC dose. More than two and five acoustic cycles, respectively, were necessary for the thin- and thick-shell biSpheres to reach a steady-state fragmentation threshold.
机译:对比气泡破坏在几种新的诊断和治疗应用中很重要。破坏的压力阈值由外壳材料确定,而气泡经历惯性空化(IC)的倾向取决于超声造影剂(UCA)的气体和外壳特性。在各种声学条件下,确定了三种特定的UCA(Optison,Sonazoid和biSpheres)的超声碎裂阈值,每种都有不同的壳和气体性质。使用累积的宽带噪声发射(IC“剂量”),还比较了碎片化后IC特有的这些试剂或其衍生物产生的声发射。白蛋白壳的Optison和表面活性剂壳的Sonazoid具有较低的碎裂阈值(在1.1 MHz时分别为0.13和0.15 MPa,在3.5 MHz时分别为0.48和0.58 MPa),而聚合物壳的biSpheres的碎裂阈值更高(均值= 0.19和薄壳双球和厚壳双球在3.5 MHz时的频率分别为1.1 MHz,0.23 MPa,0.73和0.96 MPa,p <0.01)。在可比的初始浓度下,带壳表面活性剂的Sonazoid在壳破坏后产生的IC剂量比biSpheres或Optison更大(p <0.01)。厚壳的biSpheres具有最高的碎裂阈值,产生的IC剂量最低。要使薄壳和厚壳双球达到稳态破碎阈值,分别需要两个以上和五个声学循环。

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