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Published on: July 28, 2018
Bedside sonographic assessments for predicting predialysis fluid overload in children with end-stage kidney disease
Ahmet Yontem1, Cagla Cagli2, Dincer Yildizdas3
1Faculty of Medicine, Division of Pediatric Intensive Care Unit, Çukurova University, Sarıçam, Adana, Turkey. drayontem@gmail.com.
Insights
Lung ultrasound and inferior vena cava collapsibility index accurately predict fluid overload in children undergoing dialysis. Combining these methods offers high sensitivity for detecting predialysis overhydration in pediatric end-stage kidney disease patients.
Area of Science:
- Pediatric Nephrology
- Diagnostic Imaging
- Critical Care Medicine
Background:
- Accurate assessment of fluid status is crucial in pediatric patients with end-stage kidney disease (ESKD) on dialysis, as fluid overload is linked to increased morbidity and mortality.
- Current methods for determining fluid status in these children often lack precision.
- Lung ultrasound (LUS) and inferior vena cava collapsibility index (cIVC) show promise in evaluating fluid overload.
Purpose of the Study:
- To evaluate the predictive capability of LUS (specifically, the total number of B-lines) and cIVC for predialysis fluid overload in children with ESKD.
- To assess the combined diagnostic performance of LUS and cIVC in identifying overhydration in this population.
Main Methods:
- A study involving ten pediatric ESKD patients on intermittent hemodialysis.
- Clinical hydration status evaluation, alongside predialysis and postdialysis measurements of LUS, cIVC, and bioimpedance spectroscopy (BIS).
- Correlation and receiver operating characteristic (ROC) curve analyses were performed to assess predictive accuracy.
Main Results:
- A strong positive correlation was found between the number of B-lines on LUS and predialysis fluid overload (r=0.764, p<0.001).
- A moderate negative correlation was observed between cIVC and predialysis fluid overload (r=-0.599, p=0.002).
- Both LUS (AUROC 0.82) and cIVC (AUROC 0.80) effectively predicted predialysis fluid overload (>7% hydration by BIS). The combined approach achieved 94% sensitivity (16/17 sessions) and 100% sensitivity for severe overload (8/8 sessions) using specific cutoff values.
Conclusions:
- Lung ultrasound (total B-lines) and cIVC are valuable tools for predicting predialysis fluid overload in children with ESKD.
- The combination of LUS and cIVC demonstrates high sensitivity and accuracy in assessing fluid status.
- Further randomized controlled trials are warranted to confirm the reliability of the combined use of LUS and cIVC for managing fluid overload in pediatric dialysis patients.
Abstract:
Although the number of studies evaluating methods to predict fluid overload is increasing, the assessment of fluid status in children on dialysis is still fraught with inaccuracies. We aimed to evaluate the predictive capability of lung ultrasounds and the inferior vena cava collapsibility index (cIVC) in predialysis overhydration in children with end-stage kidney disease. Ten children with end-stage kidney disease who were on an intermittent hemodialysis program were included. The hydration status of the patients was clinically evaluated. Moreover, 30 predialysis and 30 postdialysis lung ultrasound, cIVC, and bioimpedance spectroscopy (BIS) measurements were performed. The median age of the participants was 14 (IQR, 13-15) years, and two (20%) were male. There was a strong positive correlation between the predialysis total number of B-lines and predialysis fluid overload (r=0.764, p<0.001). Additionally, there was a moderate negative correlation between predialysis cIVC and predialysis fluid overload (r=-0.599, p=0.002). Although the moderate correlation was determined between the postdialysis fluid overload and total number of B-lines, no correlation was determined using cIVC. Receiver operating characteristic curves demonstrated that the total number of B-lines and cIVC could successfully predict the predialysis fluid overload (relative hydration >7% derived from the BIS; AUROC 0.82 and 0.80, respectively). When both evaluations were combined, if either the total number of B-lines or the cIVC was outside the corresponding cutoff range (>10.5 and ≤23.5, respectively), it was detected in 16 out of 17 sessions (sensitivity 94%). If either one was outside the corresponding cutoff range (total number of B-lines >10.5 and cIVC ≤18.2), the severe predialysis fluid overload was predicted successfully in all eight (100%) sessions. Conclusion: Randomized controlled studies are needed to prove the reliability of the combined use of lung ultrasounds and cIVC in the assessment of predialysis fluid overload. What is Known: • The association of chronic fluid overload with increased morbidity and mortality raises the need for optimal determination of fluid overload in pediatric patients who are dialysis-dependent at a young age. • The linear correlation between the total number of B-lines on lung ultrasound images and fluid overload by weight has been shown. What is New: • This study evaluates the lung ultrasound and inferior vena cava collapsibility index combined in predicting fluid overload in dialytic children. • If either the total number of B-lines or the cIVC was outside the corresponding cutoff range (>10.5 and cIVC ≤18.2, respectively), the severe predialysis fluid overload was predicted successfully in all eight (100%) sessions.
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