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A novel method for the measurement of reflux from intravitreal injections: Data from 20 porcine eyes

机译:一种测量玻璃体内注射反流的新方法:来自20只猪眼的数据

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Background: Reflux following intravitreal injection is a common phenomenon, but it is unknown how much, if any, medication is lost as a result. Reflux is known to be a combination of vitreous and the injected agent, but the relative composition is unknown. This article describes a novel method for the measurement of the volume and composition of reflux and presents data from porcine eyes. Methods: Twenty porcine eyes were injected with 0.05 ml of dye at intraocular pressures (IOPs) of 15, 20, 25 and 30 mmHg (five eyes per subgroup). Reflux was captured on filter paper and the area of saturation and color intensity of the dye were digitally analyzed. Total refluxed volume and proportion of dye versus vitreous fluid were calculated from linear regression lines created from known standards. Results: Average (median) total volume of reflux from all eyes was 1.19 μl (0.93 μl), volume of injected dye refluxed was 0.47 μl (0.11 μl) and composition of reflux was 20.8% dye (15.5%). Less than 1% of the injected dye was lost to reflux. There were no differences between IOP groups in the total volume refluxed, the total amount of dye refluxed, the average composition of the reflux or the amount of injected dye refluxed (df = 3 for all comparisons; p = 0.58, p = 0.51, p = 0.55, p = 0.51, respectively). Conclusions: This novel method allows for measurement of quantity and composition of reflux following intravitreal injection in vitro. While reflux occurs frequently, it is predominantly composed of vitreous, not the injected agent. In fact, <1% of the original injection was lost to reflux.
机译:背景:玻璃体内注射后返流是一种普遍现象,但尚不清楚有多少药物会因此而流失。已知回流是玻璃体和注射剂的组合,但相对组成未知。本文介绍了一种测量反流的体积和成分的新颖方法,并提供了来自猪眼的数据。方法:以15、20、25和30 mmHg的眼内压(IOP)向20只猪眼注射0.05 ml染料(每亚组五只眼)。在滤纸上捕获回流,并对染料的饱和面积和颜色强度进行数字分析。从已知标准建立的线性回归线计算总回流体积和染料与玻璃液的比例。结果:所有眼睛的平均回流总量(中位数)为1.19μl(0.93μl),注入的染料回流量为0.47μl(0.11μl),回流成分为20.8%染料(15.5%)。少于1%的注入染料流失了。 IOP组之间的总回流量,染料总回流量,平均回流组成或回流的注射染料量没有差异(所有比较df = 3; p = 0.58,p = 0.51,p =分别为0.55,p = 0.51)。结论:该新方法可用于体外玻璃体内注射后测量反流的数量和组成。虽然经常发生反流,但它主要由玻璃体而不是注射剂组成。实际上,只有不到1%的原始注射液因回流而丢失。

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