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Pulsed Liquid Microjet for Intravascular Injection

机译:脉冲液体微喷射器用于血管内注射

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Occlusions of the retinal veins and arteries are associated with common diseases such as hypertension and arteriosclerosis and usually cause severe and irreversible loss of vision. Treatments for these vascular diseases have been unsatisfactory to date in part because of the difficulty of delivering thrombolytic drugs locally within the eye. In this article we describe a pulsed liquid microjet for minimally invasive intra-vascular drug delivery. The microjet is driven by a vapor bubble following an explosive evaporation of saline, produced by a microsecond-long electric discharge in front of the 25 μm electrode inside the micronozzle. Expansion of the transient vapor bubble produces a water jet with a diameter equal to the diameter of the nozzle, and with a velocity and duration that are controlled by the pulse energy. We found that fluid could be injected through the wall of a 60-μm-diameter artery in choriallantoic membrane using a 15-μm diameter liquid jet traveling at more than 60 m/s. Histological analysis of these arteries showed that the width of the perforation is limited to the diameter of the micronozzle, and the penetration depth of the jet is controlled by the discharge energy. The pulsed liquid microjet offers a promising technique for precise and needle-free intravascular delivery of thrombolytic drugs for localized treatment of retinal vascular occlusions.
机译:视网膜静脉和动脉的阻塞与常见疾病如高血压和动脉硬化有关,通常会导致严重且不可逆的视力丧失。迄今为止,这些血管疾病的治疗尚不令人满意,部分原因是难以在眼内局部递送溶栓药。在本文中,我们描述了一种用于微创血管内药物输送的脉冲液体微喷射器。微喷头由盐水爆炸性蒸发后的气泡引起,该蒸汽通过微喷嘴内部25μm电极前面的微秒长的放电产生。瞬态蒸气气泡的膨胀产生直径等于喷嘴直径的水射流,并且水流的速度和持续时间受脉冲能量控制。我们发现,可以使用直径超过60 m / s的15μm液体射流通过胆囊壁膜中直径为60μm的动脉壁注入液体。这些动脉的组织学分析表明,穿孔的宽度受限于微喷嘴的直径,并且射流的穿透深度由放电能量控制。脉冲液体微喷射技术提供了一种有前途的技术,可以精确无针地向血管内输送溶栓药,用于局部治疗视网膜血管闭塞。

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