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Errors Associated with IOLMaster Biometry as a Function of Internal Ocular Dimensions

机译:与IOLMaster生物测定法相关的误差作为内部眼球尺寸的函数

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Purpose: To evaluate the error in the estimation of axial length (AL) with the IOLMaster partial coherence interferometry (PCI) biometer and obtain a correction factor that varies as a function of AL and crystalline lens thickness (LT). Methods: Optical simulations were produced for theoretical eyes using Zemax-EE software. Thirty-three combinations including eleven different AL (from 20mm to 30mm in 1mm steps) and three different LT (3.6mm, 4.2mm and 4.8mm) were used. Errors were obtained comparing the AL measured for a constant equivalent refractive index of 1.3549 and for the actual combinations of indices and intra-ocular dimensions of LT and AL in each model eye. Results: In the range from 20mm to 30mm AL and 3.6-4.8mm LT, the instrument measurements yielded an error between -0.043mm and +0.089mm. Regression analyses for the three LT condition were combined in order to derive a correction factor as a function of the instrument measured AL for each combination of AL and LT in the theoretical eye. Conclusions: The assumption of a single ''average'' refractive index in the estimation of AL by the IOLMaster PCI biometer only induces very small errors in a wide range of combinations of ocular dimensions. Even so, the accurate estimation of those errors may help to improve accuracy of intra-ocular lens calculations through exact ray tracing, particularly in longer eyes and eyes with thicker or thinner crystalline lenses.
机译:目的:利用IOLMaster部分相干干涉术(PCI)生物测量仪评估轴向长度(AL)的估计误差,并获得随AL和晶状体厚度(LT)变化的校正因子。方法:使用Zemax-EE软件对理论眼睛进行光学模拟。使用了33种组合,包括11种不同的AL(以1mm的步长从20mm到30mm)和3种不同的LT(3.6mm,4.2mm和4.8mm)。比较在恒定的等效折光指数1.3549下测得的AL以及在每只模型眼中LT和AL的指数和眼内尺寸的实际组合所得到的误差。结果:在20mm至30mm AL和3.6-4.8mm LT范围内,仪器测量得出的误差在-0.043mm至+ 0.089mm之间。结合三种LT条件的回归分析,以便得出理论上眼睛中AL和LT每种组合的校正因子与仪器测得的AL的函数关系。结论:IOLMaster PCI生物测定仪在AL估计中采用单一“平均”折光率的假设只会在各种眼图组合中引起非常小的误差。即便如此,对这些错误的准确估计也可能有助于通过精确的光线追踪来提高人工晶状体计算的准确性,尤其是在较长的眼睛以及具有较厚或较薄的晶状体的眼睛中。

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