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Biomedical device prototype based on small scale hydrodynamic cavitation

机译:基于小规模流体动力空化的生物医学装置原型

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This study presents a biomedical device prototype based on small scale hydrodynamic cavitation. The application of small scale hydrodynamic cavitation and its integration to a biomedical device prototype is offered as an important alternative to other techniques, such as ultrasound therapy, and thus constitutes a local, cheap, and energy-efficient solution, for urinary stone therapy and abnormal tissue ablation (e.g., benign prostate hyperplasia (BPH)). The destructive nature of bubbly, cavitating, flows was exploited, and the potential of the prototype was assessed and characterized. Bubbles generated in a small flow restrictive element (micro-orifice) based on hydrodynamic cavitation were utilized for this purpose. The small bubbly, cavitating, flow generator (micro-orifice) was fitted to a small flexible probe, which was actuated with a micromanipulator using fine control. This probe also houses an imaging device for visualization so that the emerging cavitating flow could be locally targeted to the desired spot. In this study, the feasibility of this alternative treatment method and its integration to a device prototype were successfully accomplished.
机译:本研究提出了一种基于小规模流体动力空化的生物医学装置原型。小规模流体动力空化及其与生物医学装置原型的一体化作为其他技术的重要替代方案,如超声治疗,因此构成了局部,廉价,节能的解决方案,用于泌尿石疗法和异常组织消融(例如,良性前列腺增生(BPH))。利用气泡,空化,流动的破坏性,并评估原型的潜力。基于流体动力空化的小型流动限制元件(微孔)产生的气泡用于此目的。小气泡,空化,流动器(微孔)安装在小型柔性探针上,使用微量控制用微操纵器致动。该探头还容纳用于可视化的成像装置,使得新出现的空化流动可以局部地瞄准所需的斑点。在这项研究中,成功​​完成了这种替代处理方法的可行性及其与设备原型的集成。

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