Key result
Routine hemodialysis significantly decreased small artery compliance from 5.6 to 3.3 mL/mm Hg x 10 midway through treatment (P=0.04), without significant changes in blood pressure.
Why the study?
Does routine hemodialysis alter large and small artery compliance in chronic hemodialysis patients?
Observational (n=10)
Does routine hemodialysis alter large and small artery compliance in chronic hemodialysis patients?
Absolute Event Rate: 3.3% vs 5.6%
p-value: p=.04
Routine hemodialysis acutely decreases small artery compliance without changing blood pressure, which may help identify patients at increased cardiovascular risk.
Acute small artery compliance drop during hemodialysis may flag CV vulnerability independent of BP; hypothesis-generating for risk stratification in ESRD.
BACKGROUND: Cardiovascular disease is the major cause of mortality and morbidity in patients undergoing hemodialysis. Reduced arterial compliance is an independent predictor of cardiovascular mortality in end stage renal disease and can be measured noninvasively using pulse wave analysis technology. METHODS: Ten chronic hemodialysis patients were evaluated using pulse wave analysis to determine large and small vessel compliance before hemodialysis, midway through the treatment, and at the end of the treatment. Serum calcium was measured before and after hemodialysis. RESULTS: No significant changes in systolic blood pressure (BP), diastolic BP, pulse pressure, or heart rate occurred during hemodialysis. A significant decrease in small vessel compliance (C2) occurred during the treatment, with the mean C2 decreasing from 5.6 +/- 2.7 mL/mm Hg x 10 predialysis to 3.3 +/- 1.5 mL/mm Hg x 10 midway through the treatment (P = .04) and to 3.9 +/- 4.3 mL/mm Hg x 10 at the end of the dialysis treatment. There was no significant change in large vessel compliance (C1). Serum calcium increased significantly during the dialysis treatment from 8.0 +/- 1.2 mg/dL to 9.8 +/- 0.9 mg/dL (P = .003). CONCLUSIONS: Significant decreases in small artery compliance occur without systolic or diastolic BP changes during routine hemodialysis. A significant increase in serum calcium also occurred during hemodialysis. Measurements of arterial compliance during hemodialysis may be an important tool to identify patients with vascular responses, which may place them at greater risk for cardiovascular disease.
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Debbie L. Cohen (2002) conducted an observational in chronic hemodialysis (n=10). hemodialysis vs. predialysis baseline was evaluated on small vessel compliance (C2) (p=.04). Routine hemodialysis significantly decreased small artery compliance from 5.6 to 3.3 mL/mm Hg x 10 midway through treatment (P=0.04), without significant changes in blood pressure.
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