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Estimation of ocular volume from axial length

机译:从轴向长度估算眼容量

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Background/aims To determine which biometric parameters provide optimum predictive power for ocular volume.Methods Sixty-seven adult subjects were scanned with a Siemens 3-T MRI scanner. Mean spherical error (MSE) (D) was measured with a Shin-Nippon autorefractor and a Zeiss IOLMaster used to measure (mm) axial length (AL), anterior chamber depth (ACD) and corneal radius (CR). Total ocular volume (TOV) was calculated from T2- weighted MRIs (voxel size 1.0 mm3) using an automatic voxel counting and shading algorithm. Each MR slice was subsequently edited manually in the axial, sagittal and coronal plane, the latter enabling location of the posterior pole of the crystalline lens and partitioning of TOV into anterior (AV) and posterior volume (PV) regions.Results Mean values (±SD) for MSE (D), AL (mm), ACD (mm) and CR (mm) were -2.62±3.83, 24.51±1.47, 3.55 ±0.34 and 7.75±0.28, respectively. Mean values (±SD) for TOV, AV and PV (mm3) were 8168.21±1141.86, 1099.40±139.24 and 7068.82±1134.05, respectively. TOV showed signi ficant correlation with MSE, AL, PV (all p0.001), CR (p=0.043) and ACD ( p=0.024). Bar CR, the correlations were shown to be wholly attributable to variation in PV. Multiple linear regression indicated that the combination of AL and CR provided optimum R2 values of 79.4% for TOV.Conclusion Clinically useful estimations of ocular volume can be obtained from measurement of AL and CR.
机译:背景/目的为了确定哪些生物统计学参数可为眼容量提供最佳预测能力。方法采用Siemens 3-T MRI扫描仪扫描了67名成人受试者。使用Shin-Nippon自动验光仪和Zeiss IOLMaster测量平均球面误差(MSE)(D),以测量(mm)轴向长度(AL),前房深度(ACD)和角膜半径(CR)。使用自动体素计数和阴影算法从T2加权MRI(体素大小1.0 mm3)计算总眼容量(TOV)。随后在轴向,矢状和冠状面上手动编辑每个MR切片,后者可以定位晶状体的后极并将TOV划分为前(AV)和后体积(PV)区域。结果平均值(± MSE(D),AL(mm),ACD(mm)和CR(mm)的SD)分别为-2.62±3.83、24.51±1.47、3.55±0.34和7.75±0.28。 TOV,AV和PV(mm3)的平均值(±SD)分别为8126.21±1141.86、1099.40±139.24和7068.82±1134.05。 TOV与MSE,AL,PV(所有p <0.001),CR(p = 0.043)和ACD(p = 0.024)显着相关。除去CR,相关性完全归因于PV的变化。多元线性回归表明,AL和CR的组合提供TOV的最佳R2值为79.4%。结论通过测量AL和CR可以得到临床上有用的眼容量估计。

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