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ULTRASOUND IN VITRECTOMY An Alternative Approach to Traditional Vitrectomy Techniques

机译:超声波玻璃切除术中的替代方法传统的玻璃体切除技术

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Purpose: To study a prototype of an ultrasound-based vitrector, and to try to understand the physical phenomena underlying this new technology. Methods: We tested the ultrasound-based vitrector prototype (UV) (ultrasonically-driven handpiece obtained from a modified version of the Alcon CONSTELLATION Vision System [Alcon]) using an automatic experimental setup. Balanced saline solution (BSS) and vitreous (from fresh postmortem enucleated porcine eyes) flow rates were analyzed using three different tips. Results: In general, BSS solution flow rates increased with increasing aspiration levels and decreased when we used % US power. Vitreous flow rates were influenced by aspiration levels, % US power, and ultrasound-related phenomena: cavitation phenomenon and "jet streaming." Conclusion: Ultrasound-based vitrectomy may represent an important alternative to traditional vitrectomy. Such a tool, capable of liquefying and excising the vitreous body using ultrasound, could overcome all the limits of the guillotine-based technique (GV). Knowledge of the physical phenomena underlying ultrasound-based technology is a necessary prerequisite for further development of this new technology.
机译:目的:研究超声波型蒸料的原型,并试图了解这项新技术的物理现象。方法:使用自动实验设置测试了基于超声的蒸频原型(UV)(超声波驱动的手机从Alcon星座视觉系统[Alcon]的修改版)。使用三种不同的尖端分析平衡盐水溶液(BSS)和玻璃体(来自新鲜的后期猪猪眼)流速。结果:一般来说,BSS溶液流量随着抽吸水平的增加而增加,当我们使用%美国权力时,增加。玻璃体流速受到抽吸水平,%美国力量和超声相关现象的影响:空化现象和“喷射流”。结论:基于超声的玻璃体切除术可以代表传统玻璃体切除术的重要替代品。这种工具,能够使用超声液化和切除玻璃体的工具,可以克服基于断头台的技术(GV)的所有限制。了解超声波技术潜在的物理现象是进一步发展这项新技术的必要先决条件。

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