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Cardiac CT assessment of left ventricular mass in mid-diastasis and its prognostic value
Ran Klein1, Emmanuelle S Ametepe2, Yeung Yam3
1Division of Nuclear Medicine, The Ottawa hospital, 1053 Carling Ave, Ottawa, ON, Canada, Canada, K1Y 4E9 rklein@toh.on.ca.
Insights
Cardiac CT can accurately measure left ventricular (LV) mass, even with motion. Mid-diastolic LV mass measurements predict major adverse cardiac events and mortality, offering valuable prognostic information.
Area of Science:
- Cardiovascular Imaging
- Cardiac CT Technology
- Prognostic Biomarkers
Background:
- Left ventricular (LV) mass is a predictor of adverse cardiac events.
- Cardiac CT (computed tomography) is susceptible to motion artifacts, often necessitating acquisition during diastasis.
- The prognostic value of LV mass measured at different cardiac phases requires further investigation.
Purpose of the Study:
- To assess the impact of cardiac motion on left ventricular (LV) mass measurements using 64-slice cardiac CT.
- To determine the prognostic significance of LV mass for major adverse cardiac events (MACE) and all-cause mortality.
- To evaluate the utility of mid-diastolic LV mass measurements.
Main Methods:
- Retrospectively gated cardiac CT was performed on two patient cohorts: those with MACE/death and a matched event-free group.
- Left ventricular (LV) mass was quantified at mid-diastole, end-diastole, and end-systole.
- Prognostic value was assessed by comparing LV mass indices (normalized to body surface area or weight) against the National Cholesterol Education Programme (NCEP) risk score.
Main Results:
- LV mass measurements showed strong correlation across all cardiac phases (r > 0.94).
- Mid-diastolic LV mass indices (LVMIBSA and LVMIWeight) were significantly higher in patients who experienced MACE or death.
- LV mass indices provided incremental prognostic value beyond the NCEP risk score.
Conclusions:
- Left ventricular (LV) mass can be reliably measured from cardiac CT images acquired at mid-diastole.
- Mid-diastolic LV mass measurements derived from cardiac CT possess significant prognostic value for adverse cardiac outcomes.
Aims:
To determine the influence of cardiac motion on measurements of left ventricular (LV) mass obtained with 64-slice computed tomography (CT) and to elucidate the prognostic value of LV mass on major adverse cardiac events (MACE) and all-cause mortality. Increased LV mass has been linked with MACE. Although Cardiac CT allows measurement of LV anatomy, it is susceptible to motion artefacts often requiring image acquisition during diastasis. There is a need to understand variability in LV mass measurements across phases of the cardiac cycle, and whether mid-diastolic measurements have prognostic value.
Methods And Results:
The study comprised two equally sized cohorts of patients that had undergone retrospectively gated cardiac CT: patients who had MACE and/or all-cause death at follow-up and a matched (age, sex, and risk factors) event-free cohort. LV mass was measured at mid-diastole, end-diastole, and end-systole. Correlation and agreement between phases were determined. The incremental value of mid-diastolic hypertrophy (LVH) over the National Cholesterol Education Programme (NCEP) risk was performed for LV mass indices normalized to body surface area (LVMIBSA) or weight (LVMIWeight). Of 166 patients, 31.3% experienced MACE and 28.9% died of any cause (follow-up 22.9 ± 13.4 months). LV mass at all cardiac phases were strongly correlated (r > 0.94). Mean mid-diastolic LVMIBSA was higher in the cohort with events (93.7 vs. 80.7 g/m2, P= 0.008) as was LVMIWeight (2.26 vs. 1.88 g/kg, P = 0.001). LVMIBSA and LVMIWeight had prognostic value incremental to NCEP with 1.85 and 2.47 hazard ratios, respectively.
Conclusions:
Measurement of LV mass can be obtained by cardiac CT images obtained at mid-diastasis. LV mass measurements obtained at mid-diastasis have prognostic value.
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