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. Author manuscript; available in PMC: 2020 Aug 1.
Published in final edited form as: Exp Eye Res. 2019 May 31;185:107683. doi: 10.1016/j.exer.2019.05.023

Table 1 –

Wave Aberration and Refraction Data.

ID, Eye Refraction (NIDEK; D) Refraction (SHWS; D) SHWS-NIDEK (D) Depth of focus (SHWS; D) HORMS (μm) HORMS+AST (μm)
216OS 1.08* 0.13* −0.95 4.40 0.37 0.40
246OD 1.53 0.88* --- 4.80 0.43 0.57
246OS 0.85 0.09* --- 4.60 0.41 0.47
259OD 1.29 0.14* --- 3.40 0.45 0.68
259OS 0.38 −0.21* --- 5.00 0.53 1.00
261OS 2.03* 0.76* −1.27 5.00 0.51 0.76
263OD 0.79 1.11 0.32 4.60 0.50 0.76
264OD 1.46 1.59 0.13 5.20 0.38 0.67
264OS 1.72 1.05 −0.67 5.00 0.36 0.59
265OD 0.64 0.65 0.01 4.40 0.37 0.47
265OS 1.38 1.61 0.23 5.60 0.47 0.79
Mean 1.01 0.71 −0.41 4.73 0.44 0.65
SD 0.51 0.61 0.65 0.57 0.06 0.17
*

indicates measurements made with atropine cycloplegia. Difference between autorefractor and wavefront measurements of refraction was calculated only for eyes in which both were measured with, or without cycloplegia because cycloplegia causes a small hyperopic shift. SHWS-based refraction and depth of focus estimates used the maximum contrast of the 21 arcmin checkerboard stimulus and were corrected for LCA.