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EFFECTS OF A MODIFIED VITRECTOMY PROBE IN SMALL-GAUGE VITRECTOMY: An Experimental Study on the Flow and on the Traction Exerted on the Retina

机译:改良的玻璃体直肠探针在小规格玻璃体视网膜炎中的作用:对视网膜血流和牵引力的实验研究

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摘要

PURPOSE:: Thorough this experimental study, the physic features of a modified 23-gauge vitrectomy probe were evaluated in vitro. METHODS:: A modified vitrectomy probe to increase vitreous outflow rate with a small-diameter probe, that also minimized tractional forces on the retina, was created and tested. The “new” probe was created by drilling an opening into the inner duct of a traditional 23-gauge probe with electrochemical or electrodischarge micromachining. Both vitreous outflow and tractional forces on the retina were examined using experimental models of vitreous surgery. RESULTS:: The additional opening allowed the modified probe to have a cutting rate of 5,000 cuts per minute, while sustaining an outflow approximately 45% higher than in conventional 23-gauge probes. The modified probe performed two cutting actions per cycle, not one, as in standard probes. Because tractional force is influenced by cutting rate, retinal forces were 2.2 times lower than those observed with traditional cutters. CONCLUSION:: The modified probe could be useful in vitreoretinal surgery. It allows for faster vitreous removal while minimizing tractional forces on the retina. Moreover, any available probe can be modified by creating a hole in the inner duct.
机译:目的::通过本实验研究,在体外评估了改良的23号玻璃体切除术探针的物理特性。方法:创建并测试了一种改良的玻璃体切除术探针,该探针采用小直径探针增加了玻璃体的流出速度,并且还最小化了对视网膜的牵引力。 “新”探针是通过在传统的23号探针的内部管道中钻出一个带有电化学或放电微加工的开口而创建的。使用玻璃体手术的实验模型检查了玻璃体流出和视网膜上的牵引力。结果:额外的开口使改进型探针的切割速率为每分钟5,000个切口,同时保持的流出量比传统的23号探针高约45%。修改后的探针每个循环执行两次切削动作,而不是标准探针中的一种。由于牵引力受切割速度的影响,因此视网膜力比传统切割器低2.2倍。结论:改良探针可用于玻璃体视网膜手术。它可以加快玻璃体切除的速度,同时最大程度地减小视网膜上的牵引力。而且,任何可用的探头都可以通过在内管上开孔来进行修改。

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