Effect of fluid management guided by bioimpedance spectroscopy on cardiovascular parameters in hemodialysis patients:
Ender Hur1, Mehmet Usta, Huseyin Toz
1Division of Nephrology, Ege University Medical School, Izmir, Turkey. hurender@hotmail.com
Insights
Bioimpedance spectroscopy effectively managed fluid overload in hemodialysis patients, reducing left ventricular mass and blood pressure. This objective assessment improves fluid status and cardiovascular health outcomes.
Area of Science:
- Nephrology
- Cardiology
- Biomedical Engineering
Background:
- Fluid overload is a primary driver of hypertension and left ventricular hypertrophy in hemodialysis patients.
- Accurate assessment of fluid overload is clinically challenging.
- Bioimpedance spectroscopy (BIS) offers an objective method for fluid status evaluation.
Purpose of the Study:
- To investigate if objective fluid overload measurement using BIS can optimize fluid status in hemodialysis patients.
- To assess the impact of BIS-guided fluid management on cardiovascular parameters.
Main Methods:
- A prospective, randomized, controlled study involving 156 hemodialysis patients.
- Patients were assigned to an intervention group (BIS data used for fluid management) or a control group (standard care).
- Fluid overload was assessed using BIS, with interventions based on measurements; primary outcome was regression of left ventricular mass index over 12 months.
Main Results:
- The intervention group showed a significant decrease in time-averaged fluid overload (mean difference -0.5 L) compared to the control group.
- Left ventricular mass index regressed significantly in the intervention group (mean difference -10.2 g/m²) but not in the control group.
- Improvements were also observed in left atrial volume index, blood pressure, and arterial stiffness in the intervention group.
Conclusions:
- Objective assessment and management of fluid overload using bioimpedance spectroscopy significantly improve fluid status in hemodialysis patients.
- BIS-guided management leads to regression of left ventricular hypertrophy, reduced blood pressure, and improved arterial stiffness.
- Bioimpedance spectroscopy is a valuable tool for optimizing fluid management and cardiovascular outcomes in hemodialysis.
Background:
Fluid overload is the main determinant of hypertension and left ventricular hypertrophy in hemodialysis patients. However, assessment of fluid overload can be difficult in clinical practice. We investigated whether objective measurement of fluid overload with bioimpedance spectroscopy is helpful in optimizing fluid status.
Study Design:
Prospective, randomized, and controlled study.
Setting & Participants:
156 hemodialysis patients from 2 centers were randomly assigned to 2 groups.
Intervention:
Dry weight was assessed by routine clinical practice and fluid overload was assessed by bioimpedance spectroscopy in both groups. In the intervention group (n = 78), fluid overload information was provided to treating physicians and used to adjust fluid removal during dialysis. In the control group (n = 78), fluid overload information was not provided to treating physicians and fluid removal during dialysis was adjusted according to usual clinical practice.
Outcomes:
The primary outcome was regression of left ventricular mass index during a 1-year follow-up. Improvement in blood pressure and left atrial volume were the main secondary outcomes. Changes in arterial stiffness parameters were additional outcomes.
Measurements:
Fluid overload was assessed twice monthly in the intervention group and every 3 months in the control group before the mid- or end-week hemodialysis session. Echocardiography, 48-hour ambulatory blood pressure measurement, and pulse wave analysis were performed at baseline and 12 months.
Results:
Baseline fluid overload parameters in the intervention and control groups were 1.45 ± 1.11 (SD) and 1.44 ± 1.12 L, respectively (P = 0.7). Time-averaged fluid overload values significantly decreased in the intervention group (mean difference, -0.5 ± 0.8 L), but not in the control group (mean difference, 0.1 ± 1.2 L), and the mean difference between groups was -0.5 L (95% CI, -0.8 to -0.2; P = 0.001). Left ventricular mass index regressed from 131 ± 36 to 116 ± 29 g/m(2) (P < 0.001) in the intervention group, but not in the control group (121 ± 35 to 120 ± 30 g/m(2); P = 0.9); mean difference between groups was -10.2 g/m(2) (95% CI, -19.2 to -1.17 g/m(2); P = 0.04). In addition, values for left atrial volume index, blood pressure, and arterial stiffness parameters decreased in the intervention group, but not in the control group.
Limitations:
Ambulatory blood pressure data were not available for all patients.
Conclusions:
Assessment of fluid overload with bioimpedance spectroscopy provides better management of fluid status, leading to regression of left ventricular mass index, decrease in blood pressure, and improvement in arterial stiffness.
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