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Published on: August 19, 2020
Renal Parenchymal Area Growth Curves for Children 0 to 10 Months Old
Katherine Fischer1, Chunming Li2, Huixuan Wang2
1Division of Urological Surgery, Department of Surgery, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
Insights
This study defines normal renal parenchymal area in infants, establishing reference curves to track kidney growth and identify early signs of chronic kidney disease risk.
Area of Science:
- Pediatric Nephrology
- Renal Ultrasound Imaging
- Growth Monitoring
Background:
- Low renal parenchymal area is linked to end-stage renal disease in boys with posterior urethral valves.
- Normal reference values for infant renal parenchymal area are currently lacking.
- This measure's clinical utility is limited without established norms.
Purpose of the Study:
- To define normal renal parenchymal area values in infants.
- To create reference centile curves for renal parenchymal area.
- To enhance the clinical application of renal parenchymal area measurement.
Main Methods:
- Cross-sectional study of infants (0-10 months) with prenatally detected mild unilateral hydronephrosis.
- Renal parenchymal area measured via ultrasound in normal kidneys.
- LMS method used to generate gender and side-stratified centile curves.
Main Results:
- 975 normal kidneys analyzed to create renal parenchymal area centile curves.
- Established margins of error for unilateral, bilateral, and stratified curves.
- Identified a total renal parenchymal area of 12.4 cm² at 1-2 weeks post-gestation as the 3rd percentile (z-score -1.96).
Conclusions:
- Developed normative renal parenchymal area curves for infants.
- These curves aid in monitoring kidney growth in infants.
- Facilitates early identification of infants at risk for chronic kidney disease progression.
Purpose:
Low renal parenchymal area, which is the gross area of the kidney in maximal longitudinal length minus the area of the collecting system, has been associated with increased risk of end stage renal disease during childhood in boys with posterior urethral valves. To our knowledge normal values do not exist. We aimed to increase the clinical usefulness of this measure by defining normal renal parenchymal area during infancy.
Materials And Methods:
In a cross-sectional study of children with prenatally detected mild unilateral hydronephrosis who were evaluated between 2000 and 2012 we measured the renal parenchymal area of normal kidney(s) opposite the kidney with mild hydronephrosis. Measurement was done with ultrasound from birth to post-gestational age 10 months. We used the LMS method to construct unilateral, bilateral, side and gender stratified normalized centile curves. We determined the z-score and the centile of a total renal parenchymal area of 12.4 cm(2) at post-gestational age 1 to 2 weeks, which has been associated with an increased risk of kidney failure before age 18 years in boys with posterior urethral valves.
Results:
A total of 975 normal kidneys of children 0 to 10 months old were used to create renal parenchymal area centile curves. At the 97th centile for unilateral and single stratified curves the estimated margin of error was 4.4% to 8.8%. For bilateral and double stratified curves the estimated margin of error at the 97th centile was 6.6% to 13.2%. Total renal parenchymal area less than 12.4 cm(2) at post-gestational age 1 to 2 weeks had a z-score of -1.96 and fell at the 3rd percentile.
Conclusions:
These normal renal parenchymal area curves may be used to track kidney growth in infants and identify those at risk for chronic kidney disease progression.
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