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Investigation of cavitation bubble dynamics using particle image velocimetry: implications for photoacoustic drug delivery

机译:使用粒子图像速度研究空化泡沫动力学的研究:光声药物递送的影响

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Photoacoustic drug delivery is a technique for delivering drugs to localized areas in the body. In cardiovascular applications, it uses a laser pulse to generate a cavitation bubble in a blood vessel due to the absorption of laser energy by targets (e.g., blood clots) or surrounding liquids (e.g., blood or injected saline). The hydrodynamic pressure arising from the expansion and collapse of the cavitation bubble can force the drug into the clots and tissue wall tissue. Time-resolved particle image velocimetry was used to investigate the flow of liquids during the expansion and collapse of cavitation bubbles near a soft boundary. A gelatin-based thrombus model was used to simulate the blood clot present during laser thrombolysis. An argon laser chopped by an acousto-optic modulator was used for illumination and photography was achieved using a CCD camera. The implications of this phenomenon on practical photoacoustic drug delivery implementation are discussed.
机译:光声药物递送是一种将药物递送到身体局部区域的技术。在心血管应用中,它使用激光脉冲由于靶(例如血栓)或周围液体(例如血液或注射盐水)吸收激光能量而产生血管中的空化泡。膨胀泡沫的膨胀和塌陷产生的流体动力学压力可以迫使药物进入凝块和组织壁组织。时间分辨粒子图像速度测量法用于研究柔软边界附近的膨胀和塌陷期间液体流动。将凝胶酶的血栓模型用于模拟激光溶栓期间存在的血凝块。由声光调制器切碎的氩气激光用于照明,使用CCD相机实现摄影。讨论了这种现象对实际光声药物递送实施的影响。

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