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Published on: June 21, 2024
Diagnostic performance of renal cortical elasticity by supersonic shear wave imaging in pediatric glomerular disease
Li-Qiong Shi1, Jie Sun1, Li Yuan1
1Department of Ultrasound Imaging, Wuhan Children's Hospital (Wuhan Maternal and Child Healthcare Hospital), Tongji Medical College, Huazhong University of Science & Technology, No. 100 Xianggang Road, Wuhan City, Hubei 430016, China.
Insights
Supersonic shear wave imaging (SSI) effectively diagnoses pediatric glomerular disease by measuring renal cortical elasticity (Young
Area of Science:
- Nephrology
- Biomedical Engineering
- Medical Imaging
Background:
- Pediatric glomerular disease diagnosis often relies on invasive methods like biopsy.
- Non-invasive imaging techniques are needed to assess kidney health in children.
- Renal cortical elasticity may indicate disease progression and severity.
Purpose of the Study:
- To evaluate the diagnostic accuracy of renal cortical elasticity using supersonic shear wave imaging (SSI) in pediatric glomerular disease.
- To determine the Young's modulus (YM) of the renal cortex as a diagnostic marker.
- To compare YM values between children with glomerular disease and healthy controls.
Main Methods:
- Seventy-one children with biopsy-confirmed glomerular disease and sixty healthy volunteers were included.
- Both conventional and SSI ultrasound examinations were performed on both kidneys.
- Renal dimensions, resistive index (RI), and YM of the renal cortex were measured.
Main Results:
- The YM was significantly higher in the glomerular disease group compared to controls (P < 0.001).
- The YM of the left kidney's middle pole showed the highest diagnostic performance (AUC = 0.936), with a cut-off of 15.48 kPa (sensitivity 87.3%, specificity 86.7%).
- No significant differences in YM were found among different pathological types or grades of glomerular disease, nor were there significant correlations with most clinical and laboratory parameters.
Conclusions:
- Supersonic shear wave imaging (SSI) is a feasible and non-invasive method for diagnosing pediatric glomerular disease.
- Renal cortical elasticity measured by SSI shows potential as a diagnostic tool.
- SSI did not effectively differentiate between various pathological subtypes or disease severity grades in this pediatric cohort.
Purpose:
To explore the diagnostic performance of renal cortical elasticity expressed by Young's modulus (YM) using the supersonic shear wave imaging (SSI) technique in pediatric glomerular disease.
Materials And Methods:
Seventy-one children with glomerular disease confirmed by renal biopsy and sixty healthy volunteers were enrolled in this study. Conventional and SSI ultrasound examinations were performed in all individuals for both kidneys. We measured renal length, renal width, renal thickness, parenchyma thickness, interlobar arterial resistive index (RI) and the YM of the middle and lower pole.
Results:
Regardless of which pole and which side of the kidney, the YM in the disease group was significantly higher than that in the control group (P < 0.001). The YM of the middle pole in the left kidney demonstrated the largest AUC (0.936, P < 0.001), and the corresponding cut-off value was 15.48 kPa with a sensitivity of 87.3% and a specificity of 86.7%. There was no significant difference in the YM among different pathological types of pediatric glomerular disease in the disease group, and the same in different grades of patients with Immunoglobulin A (IgA) nephropathy by Lee classification and the Oxford Classification as well as Henoch-Schonlein purpura nephritis (HSPN) by International Study of Kidney Disease in Children (ISKDC) classification (P > 0.05). We found positive but weak correlations between the YM and renal length (r = 0.299, P = 0.001), renal width (r = 0.408, P < 0.001), renal thickness (r = 0.299, P = 0.001), and parenchyma thickness (r = 0.212, P = 0.015), whereas the YM had no significant correlations with age, sex, BMI, interlobar arterial RI, and laboratory findings (P > 0.05).
Conclusions:
SSI technology is a non-invasive and feasible method for the diagnosis of pediatric glomerular disease. However, SSI did not show good performance in distinguishing different pathological types and disease grades in our study.
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