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首页> 外文期刊>Scientific reports. >Estimation of intraocular lens position from full crystalline lens geometry: towards a new generation of intraocular lens power calculation formulas
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Estimation of intraocular lens position from full crystalline lens geometry: towards a new generation of intraocular lens power calculation formulas

机译:从全晶状体的几何形状估算人工晶状体位置:走向新一代人工晶状体屈光力计算公式

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In a cataract surgery, the opacified crystalline lens is replaced by an artificial intraocular lens (IOL). To optimize the visual quality after surgery, the intraocular lens to be implanted must be selected preoperatively for every individual patient. Different generations of formulas have been proposed for selecting the intraocular lens dioptric power as a function of its estimated postoperative position. However, very few formulas include crystalline lens information, in most cases only one-dimensional. The present study proposes a new formula to preoperatively estimate the postoperative IOL position (ELP) based on information of the 3-dimensional full shape of the crystalline lens, obtained from quantitative eye anterior segment optical coherence tomography imaging. Real patients were measured before and after cataract surgery (IOL implantation). The IOL position and the postoperative refraction estimation errors were calculated by subtracting the preoperative estimations from the actual values measured after surgery. The proposed ELP formula produced lower estimation errors for both parameters -ELP and refraction- than the predictions obtained with standard state-of-the-art methods, and opens new avenues to the development of new generation IOL power calculation formulas that improve refractive and visual outcomes.
机译:在白内障手术中,不透明的晶状体被人工晶状体(IOL)取代。为了优化手术后的视觉质量,必须为每个患者术前选择要植入的人工晶状体。已经提出了不同代的公式,用于根据其估计的术后位置来选择人工晶状体的屈光力。但是,很少有公式包含晶状体信息,在大多数情况下仅包含一维信息。本研究提出了一种新的公式,可以根据从定量眼前节光学相干断层扫描成像获得的晶状体的3维完整形状信息,术前估计术后IOL位置(ELP)。实际患者在白内障手术(IOL植入)前后进行测量。通过从手术后测量的实际值中减去术前估计值,计算出IOL位置和术后屈光估计误差。所提出的ELP公式对参数-ELP和折射的估计误差均低于使用标准最新方法获得的预测,并且为开发可改善折射和视觉效果的新一代IOL屈光力计算公式开辟了新途径结果。

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