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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Pulsed Focused Ultrasound-Induced Displacements in Confined In Vitro Blood Clots
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Pulsed Focused Ultrasound-Induced Displacements in Confined In Vitro Blood Clots

机译:局限性体外血液凝块的脉冲聚焦超声诱导位移

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Ultrasound has been shown to potentiate the effects of tissue plasminogen activator to improve clot lysis in a range of in vitro and in vivo studies as well as in clinical trials. One possible mechanism of action is acoustic radiation force-induced clot displacements. In this study, we investigate the temporal and spatial dynamics of clot displacements and strain initiated by focused ultrasound pulses. Displacements were produced by a 1.51 MHz f-number 1 transducer over a range of acoustic powers (1–85 W) in clots constrained within an agar vessel phantom channel. Displacements were tracked during and after a 5.45 ms therapy pulse using a 20 MHz high-frequency ultrasound imaging probe. Peak thrombus displacements were found to be linear as a function of acoustic power up to 60 W before leveling off near 128 μm for the highest transmit powers. The time to peak displacement and recovery time of blood clots was largely independent of acoustic powers with measured values near 2 ms. A linear relationship between peak axial strain and transmit power was observed, reaching a peak value of 11% at 35 W. The peak strain occurred ∼0.75 mm from the focal zone for all powers investigated in both lateral and axial directions. These results indicate that substantial displacements can be induced by focused ultrasound in confined blood clots, and that the spatial and temporal displacement patterns are complex and highly dependent on exposure conditions, which has implications for future work investigating their link to clot lysis and for developing approaches to exploit these effects.
机译:在一系列体外和体内研究以及临床试验中,超声波已显示出增强组织纤溶酶原激活物的作用,以改善血块溶解。一种可能的作用机理是声辐射力引起的血块位移。在这项研究中,我们调查了由聚焦超声脉冲引发的血块位移和应变的时空动态。 1.51 MHz f数为1的换能器在一定范围的声功率范围(1-85 W)中产生的位移是由琼脂血管幻象通道内的血块引起的。使用20 MHz高频超声成像探头在5.45 ms治疗脉冲期间和之后跟踪位移。发现峰值血栓位移是高达60 W的声功率的线性函数,然后在最高发射功率稳定在128μm附近。血凝块达到峰值置换的时间和恢复时间在很大程度上与声功率无关,测量值接近2 ms。观察到峰值轴向应变与发射功率之间存在线性关系,在35 W时达到11%的峰值。对于在横向和轴向上研究的所有功率,峰值应变都出现在距焦点区域约0.75 mm处。这些结果表明聚焦超声可以在受限的血凝块中引起大量置换,并且空间和时间置换模式复杂且高度依赖于暴露条件,这对于研究其与血块溶解的联系以及开发方法具有重要意义。利用这些影响。

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