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首页> 外文期刊>Ultrasound in Medicine and Biology >Acoustic radiation force in vivo: a mechanism to assist targeting of microbubbles.
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Acoustic radiation force in vivo: a mechanism to assist targeting of microbubbles.

机译:体内声辐射力:一种辅助微气泡靶向的机制。

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摘要

The goal of targeted imaging is to produce an enhanced view of physiological processes or pathological tissue components. Contrast agents may improve the specificity of imaging modalities through selective targeting, and this may be particularly significant when using ultrasound (US) to image inflammatory processes or thrombi. One means of selective targeting involves the attachment of contrast agents to the desired site with the use of a specific binding mechanism. Because molecular binding mechanisms are effective over distances on the order of nanometers, targeting effectiveness would be greatly increased if the agent is initially concentrated in a particular region, and if the velocity of the agent is decreased as it passes the potential binding site. Ultrasonic transmission produces a primary radiation force that can manipulate microbubbles with each acoustic pulse. Observations demonstrate that primary radiation force can displace US contrast agents from the center of the streamline to the wall of a 200-microm cellulose vessel in vitro. Here, the effects of radiation force on contrast agents in vivo are presented for the first time. Experimental results demonstrate that radiation force can displace a contrast agent to the wall of a 50-microm blood vessel in the mouse cremaster muscle, can significantly reduce the velocity of flowing contrast agents, and can produce a reversible aggregation. Acoustic radiation force presents a means to localize and concentrate contrast agents near a vessel wall, which may assist the delivery of targeted agents.
机译:靶向成像的目的是增强生理过程或病理组织成分的视野。造影剂可通过选择性靶向改善成像方式的特异性,当使用超声(US)对炎症过程或血栓成像时,这一点尤为重要。选择性靶向的一种方法涉及使用特定的结合机制将造影剂附着到所需部位。因为分子结合机制在纳米级的距离上是有效的,所以如果试剂最初集中在特定区域,并且当试剂经过潜在的结合位点时速度降低,靶向作用将大大提高。超声波传输产生一次辐射力,该辐射力可操纵每个声脉冲产生的微气泡。观察结果表明,体外主要辐射力可将US造影剂从流线的中心移至200微米纤维素容器的壁。在此,首次提出了辐射力对体内造影剂的影响。实验结果表明,辐射力可以将造影剂置换到小鼠提睾肌中50微米血管的壁上,可以显着降低流动的造影剂的速度,并可以产生可逆的聚集。声辐射力提供了一种在血管壁附近定位和集中造影剂的手段,这可以帮助目标药剂的输送。

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