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When Measurement Conventions Masquerade as Calibration Gains in Cardiac Digital Twins

Authors

Do you know Dang P. M. Cao?You can claim authorship or link another user.Do you know Hieu Pham?You can claim authorship or link another user.

Abstract

Cardiac digital twins convert clinical images into physiological measurements through observation operators, yet calibration studies often assume a fixed reference convention. Across four shared-backbone echocardiographic EF front-ends, phase conditioning appears to remove CAMUS baseline bias. Matched-reference analysis rejects this gain: singleplane ground-truth EF error is statistically indistinguishable across models, while single-plane ground-truth EF exceeds CAMUS biplane clinical EF by +6.30 points, explaining nearly all baseline bias. A prespecified EchoNet-Dynamic replication, with released data and our extractor aligned to the apical four-chamber plane, removes baseline overestimation and reverses the CAMUS ranking. We also quantify haemodynamic effects, conformal residual-width budgets, and EF-stratum changes, yielding a Convention-Aware EF Audit protocol that separates genuine observation operator calibration from measurement artefacts. GitHub: EjectionFraction-Bias-in-Cardiac-Digital-Twin.git

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Publication notes

Author note
Accepted at the 2nd International Workshop on Digital Twin for Healthcare (DT4H 2026), held in conjunction with MICCAI 2026. 10 pages, 2 figures