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Prognostic impact of the indexation of left ventricular mass in patients undergoing dialysis
Carmine Zoccali1, Francesco Antonio Benedetto1, Francesca Mallamaci1
1*Centre of Clinical Physiology and Division of Nephrology and Cardiology Unit, Morelli Hospital, Reggio Cal, Italy; and Institute of Internal Medicine "L. Condorelli" and Institute of Internal Medicine and Geriatrics, Catania University, Italy.
Insights
Left ventricular hypertrophy (LVH) is common in dialysis patients. Indexing LV mass by height(2.7) better predicts mortality and cardiovascular outcomes than body surface area (BSA).
Area of Science:
- Nephrology
- Cardiology
- Biostatistics
Background:
- Left ventricular hypertrophy (LVH) is prevalent in dialysis patients.
- Accurate estimation of left ventricular mass (LVM) is crucial due to malnutrition and volume shifts.
- Existing indexing methods may distort LVM estimates in end-stage renal disease.
Purpose of the Study:
- To compare the prognostic impact of LVH indexing by height(2.7) versus body surface area (BSA) on mortality and cardiovascular outcomes.
- To determine the optimal method for assessing LVH in patients undergoing dialysis.
Main Methods:
- Prospective cohort study of 254 dialysis patients.
- Assessed all-cause mortality and cardiovascular events.
- Analyzed LVM indexed by height(2.7) and BSA using Cox models.
Main Results:
- Height(2.7) indexing identified more patients with LVH than BSA.
- Both LVM/height(2.7) and LVM/BSA independently predicted mortality (P < 0.001).
- LVM/height(2.7) provided a more robust predictive model (P ≤ 0.02) and was essential for subcategorizing LVH types.
Conclusions:
- LV mass is a strong, independent predictor of survival and cardiovascular events in dialysis patients.
- Height(2.7) indexing of LVM offers superior prediction of mortality and cardiovascular outcomes compared to BSA indexing.
- Height(2.7) is the recommended index for LVH assessment in dialysis populations.
Abstract:
Left ventricular hypertrophy (LVH) is exceedingly frequent in patients undergoing dialysis. Cardiac mass is proportional to body size, but the influence of various indexing methods has not been studied in patients with end-stage renal disease. The issue is important because malnutrition and volume expansion would both tend to distort the estimate of LV mass (LVM) in these patients. In a cohort of 254 patients, the prognostic impact on all-cause mortality and cardiovascular outcomes of LVH values, calculated according to two established methods of indexing, either body surface area (BSA) or height(2.7), was assessed prospectively. When LVM was analyzed as a categorical variable, the height(2.7)-based method identified a larger number of patients with LVH than the corresponding BSA-based method. One hundred and thirty-seven fatal and nonfatal cardiovascular events occurred during the follow-up period. Overall, 90 patients died, 51 of cardiovascular causes. In separate Cox models, both the LVM/height(2.7) and the LVM/BSA index independently predicted total and cardiovascular mortality (P < 0.001). However, the height(2.7)-based method coherently produced a closer-fitting model (P < or = 0.02) than did the BSA-based method. The height(2.7) index was also important for the subcategorization of patients according to the presence of concentric or eccentric LVH because the prognostic value of such subcategorization was apparent only when the height(2.7)-based criterion was applied. In conclusion, LVM is a strong and independent predictor of survival and cardiovascular events in patients undergoing dialysis. The indexing of LVM by height(2.7) provides more powerful prediction of mortality and cardiovascular outcomes than the BSA-based method, and the use of this index appears to be appropriate in patients undergoing dialysis.
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