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Performance analysis of ultrahigh-speed vitreous cutter system

机译:超高速玻璃切割机系统性能分析

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PURPOSE: To evaluate flow rates and duty cycle for different sizes of ultra-high-speed pneumatic vitreous cutters. METHODS: A precision balance measured the mass of water and vitreous removed from a vial. Porcine vitreous was obtained within 12 hours of killed at a local slaughterhouse and kept at 4 C. Twenty-, 23- and 25-gauge (n = 3 of each gauge) pneumatic cutters were tested at 0 (water), 1,000, 2,000, 3,000, 4,000, and 5,000 cuts per minute with aspiration levels of 100, 200, 300, 400, 500, and 600 mmHg. Frame-by-frame analysis of high-speed video was used to determine the duty cycle. RESULTS: Larger gauge cutters associated with higher aspiration levels produced greater vitreous and water flow rates (P < 0.05). As the cut rate increased, the vitreous flow rate increased (maximum flow at 5,000 cuts per minute) and the water flow rate decreased (P < 0.05). The duty cycle of the new-generation cutters decreased as cut speeds increased, using all 3 gauges (P < 0.001). Vitreous flow rates averaged 10 times less than water flow rates using the same cutter at the same settings. CONCLUSION: Ultra-high-speed vitreous cutters produce consistent vitreous and water flow rates across the tested range of cuts per minute and aspiration levels.
机译:目的:评估不同尺寸的超高速气动玻璃体切割器的流量和占空比。方法:精密天平测量从小瓶中取出的水和玻璃体的质量。在本地屠宰场杀死12小时内获得了猪玻璃体,并将其保持在4C。对20、23和25规格(每种规格的n = 3)的气动切割机在0(水),1,000、2,000,每分钟切割3,000、4,000和5,000,抽吸水平为100、200、300、400、500和600 mmHg。高速视频的逐帧分析用于确定占空比。结果:较大规格的切割器与更高的抽吸水平相关,产生了更大的玻璃体和水流速(P <0.05)。随着切割速率的增加,玻璃体流速增加(每分钟5,000次切割时的最大流速),水流速降低(P <0.05)。使用所有三种规格的刀片,新一代切割机的占空比随着切割速度的增加而降低(P <0.001)。在相同的设置下,使用相同的切割机,玻璃的流速平均比水的流速低10倍。结论:超高速玻璃体切割器在测试的每分钟切割范围和抽吸水平范围内产生一致的玻璃体和水流率。

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