Sudden Cardiac Death Risk Prediction From QT-RR Adaptation Time Lag Computed From Exercise Stress Test ECG.

Perez, Cristina; Martinez, Juan Pablo; Ramirez, Julia; Kentta, Tuomas; Junttila, Juhani; Kiviniemi, Antti; Perkiomaki, Juha; Huikuri, Heikki et al. · IEEE Trans Biomed Eng · 2026

prospective_cohort · Level II

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Abstract

This study aims to evaluate the QT adaptation time following gradual heart rate changes estimated from exercise stress test (EST) ECGs as a marker of sudden cardiac death (SCD) risk. The predicted risk value for any cardiovascular death (CVD) is also evaluated. Three ECG-derived markers related to QT-RR adaptation time were estimated during the exercise phase of EST, $\check{\tau }_{e}$, during the recovery phase, $\check{\tau }_{r}$, and as the difference between them, $\Delta _{\check{\tau }}$. The values were computed from patients with coronary artery disease (CAD) from ARTEMIS study (N=1472; median follow-up of 8.9 years). These markers are calculated as the delay between the observed RR interval series and a patient-specific memoryless RR series computed from the QT interval (RR-based strategy). Alternatively, the estimates were calculated as the delay between the observed QT intervals and a patient-specific instantaneous QT series computed from the RR intervals (QT-based strategy). The relation between the markers and CAD or SCD was evaluated. The marker $\check{\tau }_{r}$ is more robustly estimateed with the RR-based strategy and is able to stratify survivors and victims of either SCD or CVD (p-value equal to 0.022 and 0.065, respectively). Multivariable regression models for predicting SCD and CVD include the QT-RR adaptation time estimated in the recovery phase of EST using the RR-based strategy. A prolonged QT-RR adaptation time during the recovery phase of the EST ECG, calculated with the RR-based strategy, can predict SCD and CVD, providing complementary information to other clinical markers.

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