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Updated: Mar 22, 2026

A High-throughput Method for Measurement of Glomerular Filtration Rate in Conscious Mice
Published on: May 10, 2013
Measurement of glomerular filtration rate by dynamic contrast-enhanced magnetic resonance imaging using a
Aaryani Tipirneni-Sajja1, Ralf B Loeffler2, Niels Oesingmann3
1Department of Diagnostic Imaging, St. Jude Children's Research Hospital, Memphis, Tennessee Department of Biomedical Engineering, University of Memphis, Memphis, Tennessee.
Abstract:
Measuring glomerular filtration rate (GFR) by dynamic contrast-enhanced (DCE) magnetic resonance imaging (MRI) as part of standard of care clinicalMRIexams (e.g., in pediatric solid tumor patients) has the potential to reduce diagnostic burden. However, enthusiasm for this relatively newGFRtest may be curbed by the limited amount of cross-calibration studies with referenceGFRtechniques and the vast variety ofMRtracer model algorithms causing confusion on the choice of model. To advanceMRI-basedGFRquantification via improvedGFRmodeling and comparison with associated(99m)Tc-DTPA-GFR, 29 long-term Wilms' tumor survivors (19.0-43.3 years, [median 32.0 ± 6.0 years]) treated with nephrectomy, nonnephrotoxic chemotherapy ± radiotherapy underwentMRIwith Gd-DTPAadministration and a(99m)Tc-DTPA GFRtest. ForDCE-MRI-basedGFRestimation, a subject-specific two-compartment (SS-2C) model was developed that uses individual hematocrit values, automatically defines subject-specific uptake intervals, and fits tracer-uptake curves by incorporating these measures. The association between reference(99m)Tc-DTPA GFRandMR-GFRs obtained bySS-2C, three published 2C uptake, and inflow-outflow models was investigated via linear regression analysis. Uptake intervals varied from 64 sec to 141 sec [96 sec ± 21 sec] and hematocrit values ranged from 30% to 49% [41% ± 4%]; these parameters can therefore not be assumed as constants in 2C modeling. OurMR-GFRestimates using theSS-2C model showed accordingly the highest correlation with(99m)Tc-DTPA-GFRs (R(2) = 0.76,P < 0.001) compared with other models (R(2)-range: 0.36-0.66). In conclusion,SS-2C modeling ofDCE-MRIdata improved the association betweenGFRobtained by(99m)Tc-DTPAand Gd-DTPA DCE-MRIto such a degree that this approach could turn into a viable, diagnosticGFRassay without radiation exposure to the patient.
Insights
Dynamic contrast-enhanced MRI (DCE-MRI) offers a radiation-free method for measuring glomerular filtration rate (GFR). A new subject-specific two-compartment (SS-2C) model significantly improved GFR estimation accuracy compared to existing methods.
Area of Science:
- Nephrology
- Radiology
- Medical Imaging
Background:
- Glomerular filtration rate (GFR) measurement is crucial for kidney function assessment.
- Dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) shows potential for GFR estimation, reducing patient radiation exposure.
- Existing DCE-MRI GFR models lack standardization and cross-calibration with reference methods.
Purpose of the Study:
- To develop and validate an improved DCE-MRI model for GFR quantification.
- To compare the performance of the new model against established GFR estimation techniques.
- To assess the feasibility of DCE-MRI as a diagnostic GFR assay.
Main Methods:
- A subject-specific two-compartment (SS-2C) model was developed for DCE-MRI GFR estimation.
- The SS-2C model incorporated individual hematocrit values and subject-specific uptake intervals.
- GFR measurements were compared between the SS-2C model, other DCE-MRI models, and a reference (99m)Tc-DTPA GFR test in 29 Wilms' tumor survivors.
Main Results:
- The SS-2C model demonstrated the highest correlation (R² = 0.76, P < 0.001) with reference (99m)Tc-DTPA GFR measurements.
- Other tested DCE-MRI models showed lower correlations (R² range: 0.36–0.66).
- Individual hematocrit and uptake intervals varied significantly, highlighting the need for subject-specific modeling.
Conclusions:
- The developed SS-2C DCE-MRI model significantly enhances the accuracy of GFR estimation.
- This approach offers a viable, radiation-free alternative for diagnostic GFR assessment.
- Further validation could establish DCE-MRI as a standard clinical tool for kidney function evaluation.
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