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Published on: February 8, 2014
Spreadsheet-based algorithm for objective assessment of depth of focus from defocus curves
Antonio Calossi1, Francesco Calossi, Riccardo Vinciguerra
1From the Department of Physics (Optics and Optometry), University of Florence, Florence, Italy (A. Calossi, F. Calossi); Humanitas San Pio X Hospital, Milan, Italy (R. Vinciguerra); Cullen Eye Institute, Baylor College of Medicine, Houston, Texas (Koch); IRCCS Humanitas Research Hospital, Milan, Italy (P. Vinciguerra).
Purpose:
To describe and clinically evaluate a spreadsheet-based algorithm for reproducible depth-of-focus (DoF) calculation, incorporating rule-based continuity detection derived from defocus-curve topology.
Setting:
Humanitas Clinical and Research Center, Rozzano, Milan, Italy.
Design:
Methodological description with retrospective clinical validation.
Methods:
The algorithm identifies dioptric crossings of a predefined logMAR threshold by locating bracketing points and applying linear interpolation. Validation involved analyzing defocus curves (-4.0 to +1.5 diopters [D] in 0.50-D steps) from monofocal pseudophakic eyes and comparing automated results with manual measurements by 2 experienced operators. Logic was implemented to classify continuous and discontinuous (multimodal) profiles and flag out-of-range data.
Results:
30 pseudophakic eyes implanted with monofocal intraocular lenses were included. DoF ranged from 1.10 to 3.17 D (mean 1.92 ± 0.47 D). Agreement between the algorithm and the 2 operators was high, with mean differences of -0.01 D (SD 0.08) and 0.00 D (SD 0.05), respectively. The interoperator difference was 0.01 D (SD 0.09). Mean absolute error was <0.05 D. Bland-Altman limits of agreement vs the operators' mean ranged from -0.10 to +0.09 D.
Conclusions:
The proposed method ensures objective and reliable DoF quantification by minimizing subjective interpretation and manual workload. Although clinical validation focused on monofocal profiles, the topology-based continuity logic provides a structured approach for analyzing complex curve profiles. A template spreadsheet is provided for implementation.
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