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Quantitative method to determine the cohesion of viscoelastic agents by dynamic aspiration.

机译:动态抽吸测量粘弹性剂粘合的定量方法。

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PURPOSE: To quantitatively determine the cohesion of ophthalmic viscoelastic agents using an in vitro method based on dynamic aspiration kinetics. SETTING: Alcon Laboratories, Inc., Fort Worth, Texas, USA. METHOD: Five viscoelastic agents were tested: Healon GV (sodium hyaluronate 1.4%); Provisc (sodium hyaluronate 1.0%); Healon (sodium hyaluronate 1.0%); Amvisc Plus (sodium hyaluronate 1.6%); Viscoat (sodium hyaluronate 3.0%-chondroitin sulfate 4.0%). Samples were placed into a tared polypropylene container using a positive displacement pipette. Calibrated vacuum was applied for 2 seconds to a polypropylene tip (inner diameter 0.5 mm) lowered into the viscoelastic sample. The quantity of viscoelastic agent remaining in the container after aspiration was determined gravimetrically. The procedure was repeated at various vacuum levels between 100 and 700 mm Hg. The percentage of viscoelastic agent aspirated was plotted against vacuum pressure. The slopes of these curves indicate the relative cohesion of the viscoelastic sample. RESULTS: The cohesion-dispersion indices (percentage viscoelastic agent aspirated/100 mm Hg) were Healon GV (72.3) > Provisc (46.0) > Healon (31.2) = Amvisc Plus (21.4) > Viscoat (3.4). CONCLUSION: The method provided a quantitative basis for the clinical classification of viscoelastic materials as cohesive or dispersive. The aspiration kinetics profile (curve shape), maximum rate of removal, and vacuum levels at which the bolus removal of the viscoelastic agent started (break point) were useful in characterizing the viscoelastic agents. Because the results agree with the clinical impression of cohesion/dispersion, this method may be used to predict the surgical performance of viscoelastic agents.
机译:目的:使用基于动态抽吸动力学的体外方法定量地确定眼科粘弹性剂的内聚力。环境:Alcon Laboratories,Inc。,沃斯特,德克萨斯州,美国。方法:测试五种粘弹性剂:酸康GV(透明质酸钠1.4%); Provisc(透明质酸钠1.0%);酸阳(透明质酸钠1.0%); Amvisc Plus(透明质酸钠1.6%); Viscoat(透明质酸钠3.0%-Chondroitin硫酸盐4.0%)。使用正排量移液管将样品置于焦化的聚丙烯容器中。将校准的真空施加2秒,以降低到粘弹性样品中的聚丙烯尖端(内径0.5mm)。在复印后残留在容器中残留在容器中的粘弹剂的量。在100-700mm Hg之间的各种真空水平重复该方法。吸入的粘弹性剂的百分比绘制抗真空压力。这些曲线的斜率表示粘弹性样品的相对内聚力。结果:凝聚力 - 分散索引(粘弹性剂吸入/ 100mm Hg)是HealOn GV(72.3)> Provisc(46.0)>酸橙(31.2)= Amvisc加(21.4)> Viscoat(3.4)。结论:该方法为粘弹性材料的临床分类提供了定量基础,作为粘性或分散性。吸气动力学曲线(曲线形状),最大去除率和真空水平的粘弹性剂开始(断裂点)可用于表征粘弹性剂。因为结果同意内聚体/分散体的临床印象,所以该方法可用于预测粘弹性剂的手术性能。

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