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Evaluation of a new method of irrigation and aspiration for removal of ophthalmic viscoelastic device during cataract surgery in a porcine model

机译:猪模型白内障手术期间冲洗和抽吸的新方法对眼科粘弹性器械的去除

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Background To determine if a method for irrigation and aspiration (I/A) during cataract surgery provides effective removal of ophthalmic viscoelastic device (OVD). Methods Japanese porcine eyes were used to evaluate I/A performance with Technique 1 (the I/A tip placed on the center of the anterior surface of the IOL), Technique 2 (the I/A tip alternately pressed near the edge of the IOL optic anterior surface on one side and then the other to tilt the IOL back and forth), and Technique 3 (the I/A tip inserted behind the IOL optic, between it and the posterior capsule). Techniques 1 and 2 were compared using the Miyake-Apple posterior view video technique to visualize the flow of irrigation fluid containing triamcinolone acetonide particles behind the IOL. To check the efficacy of OVD removal from behind the IOL for of all three I/A techniques, OVD with fluorescein beads were inserted inside the lens capsule before implantation of the IOL. After each I/A technique, eyes were prepared for Miyake–Apple viewing and pictures of the lens capsule were taken using fluorescent microscopy. Residual fluorescein beads in the capsular bag were analyzed. Results Technique 1 resulted in a straight flow of fluid behind the IOL, while Technique 2 resulted in a vortex flow. The average amount of OVD retained inside the capsule after using Technique 2 or 3 was significantly lower than after using Technique 1 (p Conclusions Technique 2 proved to remove more effectively fluorescein bead-labelled OVD under the IOL than Technique 1.
机译:背景技术为了确定白内障手术期间的冲洗和抽吸方法(I / A)是否可以有效去除眼科粘弹性装置(OVD)。方法使用日本猪眼通过技术1(将I / A尖端置于IOL前表面的中心),技术2(将I / A尖端交替压在IOL的边缘附近)来评估I / A性能光学眼前侧的一侧,然后另一侧向前或向后倾斜IOL),以及技术3(将I / A尖端插入到IOL光学体的后方,在其与后囊之间)。使用Miyake-Apple后视视频技术对技术1和2进行了比较,以可视化IOL背后含有曲安奈德丙酮化物颗粒的冲洗液的流动。为了检查所有三种I / A技术从IOL后面去除OVD的功效,在植入IOL之前,将带有荧光素珠的OVD插入晶状体囊内。每种I / A技术之后,都准备好进行三宅一族观察的眼睛,并使用荧光显微镜拍摄晶状体囊的照片。分析了囊袋中的残留荧光素珠。结果技术1导致IOL后面的流体直线流动,而技术2导致涡流。使用技术2或技术3后,保留在胶囊内的OVD的平均量显着低于使用技术1后的结果(p结论结论:在IOL下,技术2被证明比技术1更有效地去除了荧光素珠标记的OVD。

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