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A theoretical study of inertial cavitation from acoustic radiation force impulse (ARFI) imaging and implications for the mechanical index

机译:声辐射力脉冲(ARFI)成像的惯性空化的理论研究及其对机械指标的影响

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摘要

The mechanical index (MI) attempts to quantify the likelihood that exposure to diagnostic ultrasound will produce an adverse biological effect by a nonthermal mechanism. The current formulation of the MI implicitly assumes that the acoustic field is generated using the short pulse durations appropriate to B-mode imaging. However, acoustic radiation force impulse (ARFI) imaging employs high-intensity pulses up to several hundred acoustic periods long. The effect of increased pulse durations on the thresholds for inertial cavitation was studied computationally in water, urine, blood, cardiac and skeletal muscle, brain, kidney, liver and skin. The results show that while the effect of pulse duration on cavitation thresholds in the three liquids can be considerable, reducing them by, e.g., 6% – 24% at 1 MHz, the effect in tissue is minor. More importantly, the frequency dependence of the MI appears to be unnecessarily conservative, i.e., that the magnitude of the exponent on frequency could be increased to 0.75. Comparison of these theoretical results with experimental measurements suggests that some tissues do not contain the pre-existing, optimally sized bubbles assumed for the MI. This means that in these tissues the MI is not necessarily a strong predictor of the probability for an adverse biological effect.
机译:机械指数(MI)试图量化暴露于诊断性超声将通过非热机制产生不利的生物学效应的可能性。 MI的当前公式隐式假设使用适合B模式成像的短脉冲持续时间来产生声场。但是,声辐射力脉冲(ARFI)成像采用长达数百个声波周期的高强度脉冲。在水,尿液,血液,心脏和骨骼肌,脑,肾,肝和皮肤中,通过计算研究了脉冲持续时间增加对惯性空化阈值的影响。结果表明,虽然脉冲持续时间对三种液体中的气蚀阈值的影响可能很大,例如在1 MHz时降低了6%– 24%,但对组织的影响却很小。更重要的是,MI的频率依赖性似乎是不必要的保守,即,频率上的指数幅度可以增加到0.75。这些理论结果与实验测量结果的比较表明,某些组织不包含为MI假设的预先存在的最佳尺寸的气泡。这意味着在这些组织中,MI不一定是生物学不良影响可能性的强有力的预测指标。

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