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.

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