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A Novel “Slit Side View” Method to Evaluate Fluid Dynamics during Phacoemulsification

机译:一种新的“狭缝侧视图”方法,用于评估沉默乳化过程中的流体动力学

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摘要

Due to recent technical advances in cataract surgeries, there has been a significant improvement in the safety and surgical outcomes of phacoemulsification. However, the corneal endothelium can be damaged during phacoemulsification by multiple factors. Therefore, we used a slit lamp to analyze the fluid dynamics of ophthalmic viscosurgical devices (OVDs) in the anterior chamber during phacoemulsification. In this experimental study, extracted porcine eyes were injected with OVDs stained with fluorescein through a side port of the eye and then fixed on a slit lamp microscope. After inserting a phaco tip, phacoemulsification simulation was then performed on the iris plane. Subsequent movements of OVDs in the anterior chamber were observed during the procedure by using a slit lamp microscope. Aspiration and removal of cohesive OVDs from the inside of the anterior chamber occurred within a few seconds after the ultrasonic vibration. Aspiration of dispersive OVDs occurred gradually, with some of the OVDs remaining on the side of the anterior chamber side in an irregular shape. This shape enabled the OVD to trap the air, thereby preventing the air from directly touching the corneal endothelium. Viscoadaptive OVDs remained inside the anterior chamber as a lump, with the infusion solution flowing between the corneal endothelium and the OVD, thus leading to the eventual aspiration of the OVD. Viscous dispersive OVDs remained as a lump between the corneal endothelium and the phaco tip. However, once the infusion solution flowed between the cornea and the OVD, the OVD detached from the corneal endothelium, indicating that this type would likely be aspirated and removed. This method, termed the “slit side view,” enables viewing of the movement of OVDs during surgery, as well as observation of the fluid dynamics in the anterior chamber.
机译:由于最近的白内障手术技术进步,术治乳化的安全性和手术结果有显着改善。然而,角膜内皮可以通过多因素在沉乳化期间受损。因此,我们使用了一个狭缝灯来分析沉重乳化期间前腔腔内的眼科吸附件(OVDS)的流体动力学。在该实验研究中,通过用眼睛的侧壁用荧光素染色的OVDs注入ZORCINE眼睛,然后固定在狭缝灯显微镜上。在插入Phaco尖端之后,然后在虹膜平面上进行奇乳化模拟。通过使用狭缝灯显微镜在手术期间观察在前室中的OVDS的随后移动。在超声波振动之后的几秒钟内发生从前腔内部发生的吸入和移除粘性OVD。分散OVD的抽吸逐渐发生,其中一些OVD在前室侧的侧面处于不规则形状。这种形状使得OVD捕获空气,从而防止空气直接接触角膜内皮。压力进展OVD仍然在前房内部作为肿块,输液溶液在角膜内皮和OVD之间流动,从而导致OVD的最终抽吸。粘性分散卵体仍然是角膜内皮和噬菌体尖端之间的肿块。然而,一旦输注溶液在角膜和OVD之间流动,OVD就与角膜内皮脱离,表明这种类型可能会吸出并除去并除去。该方法称为“狭缝侧视图”,使得能够在手术期间观察OVD的运动,以及观察前房中的流体动力学。

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