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Introducing new vitreous cutter blade shapes: A fluid dynamics study

机译:引入新型玻璃切割器刀片形状:流体动力学研究

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PURPOSE:: To assess the efficacy of novel vitreous cutter blades compared with the regular guillotine by means of particle image velocimetry. Tested blades included a regular blade (RB) and newer designs where a circular (hole blade [HB]) or a slit aperture (slit blade [SB]) had been opened proximal to the cutting edge. METHODS:: Twenty-three-gauge probes were immersed in BSS or egg albumen, and high-speed video (1,000 frames per second) was recorded. Duty cycle, flow rate, and acceleration generated by Venturi and peristaltic pumps were measured under cutter settings simulating "low-speed" vitrectomy (1600 cuts per minute, 200 mmHg vacuum) and "high speed" vitrectomy (3000 cuts per minute, 300 mmHg vacuum). RESULTS:: The SB and HB had a significantly more favorable duty cycle than that of the RB (P < 0.01) and higher BSS flow rate regardless of the aspiration. The SB flow rate in albumen was significantly higher than that of the HB and RB only over 1,000 cuts per minute using a peristaltic pump and at any cut rate with Venturi pump (P < 0.001). The SB also yielded the lowest fluid acceleration than both the HB and SB (P < 0.001 in all cases). CONCLUSION:: The HB and SB proved to be significantly more efficient than the RB, with better duty cycle and higher flow rate. The SB generated significantly less fluid acceleration than any other tested blade, regardless of the fluid viscosity and pump technology. The SB design is significantly more efficient and possibly safer than both HB and RB.
机译:目的:通过粒子图像测速技术评估新型玻璃体切割刀片与常规断头台相比的功效。经过测试的刀片包括常规刀片(RB)和较新的设计,其中圆形(孔刀片[HB])或狭缝孔径(狭缝刀片[SB])已在切削刃附近打开。方法:将二十三号探针浸入BSS或卵蛋白中,并记录高速视频(每秒1,000帧)。在模拟“低速”玻璃体切割术(每分钟1600切割,200 mmHg真空)和“高速”玻璃体切割术(每分钟3000切割,300 mmHg)的切割机设置下测量文丘里管和蠕动泵产生的占空比,流量和加速度。真空)。结果:SB和HB的占空比明显优于RB(P <0.01),而BSS流量更高,与抽吸无关。仅使用蠕动泵每分钟切割1000次以上,并且使用文丘里泵以任何切割速度进行,蛋白中的SB流速均显着高于HB和RB的流速(P <0.001)。与HB和SB相比,SB产生的流体加速度也最低(在所有情况下P <0.001)。结论:HB和SB的效率明显高于RB,具有更好的占空比和更高的流速。不管流体粘度和泵技术如何,SB产生的流体加速度都比其他测试叶片小得多。 SB设计比HB和RB效率更高,并且可能更安全。

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