Renal cortical volume: High correlation with pre- and post-operative renal function in living kidney donors

European Journal of Radiology - Tập 99 - Trang 118-123 - 2018
Edouard Gardan1, Lola Jacquemont2,3,4, Christophe Perret1, Pierre-Marie Heudes1, Pierre-Antoine Gourraud2,3,4, Maryvonne Hourmant2, Eric Frampas1, Sophie Limou3,4,5
1Radiology Department, CHU, Nantes, France
2Nephrology Department, CHU, Nantes, France
3Centre de recherche en Transplantation et Immunologie (CRTI) UMR 1064, INSERM, Université de Nantes, France
4Institut de Transplantation Urologie et Néphrologie (ITUN), CHU, Nantes, France
5Ecole Centrale de Nantes, France

Tài liệu tham khảo

Ogutmen, 2006, Health-related quality of life after kidney transplantation in comparison intermittent hemodialysis, peritoneal dialysis, and normal controls, Transplant. Proc., 38, 419, 10.1016/j.transproceed.2006.01.016 United States Renal Data System, 2016, 2016 Segev, 2010, Perioperative mortality and long-term survival following live kidney donation, JAMA, 303, 59, 10.1001/jama.2010.237 Muzaale, 2014, Risk of end-stage renal disease following live kidney donation, JAMA, 311, 79, 10.1001/jama.2013.285141 Mjøen, 2014, Long-term risks for kidney donors, Kidney Int., 86, 162, 10.1038/ki.2013.460 Grams, 2016, Kidney-failure risk projection for the living kidney-donor candidate, N Engl. J. Med., 374, 411, 10.1056/NEJMoa1510491 Rook, 2008, Nephrectomy elicits impact of age and BMI on renal hemodynamics: lower postdonation reserve capacity in older or overweight kidney donors, Am. J. Transplant., 8, 2077, 10.1111/j.1600-6143.2008.02355.x Miyazaki, 2010, (99m)Tc-DTPA dynamic SPECT and CT volumetry for measuring split renal function in live kidney donors, Ann. Nucl. Med., 24, 189, 10.1007/s12149-010-0349-y Morrisroe, 2010, Differential renal function estimation using computerized tomography based renal parenchymal volume measurement, J. Urol., 183, 2289, 10.1016/j.juro.2010.02.024 Mitsui, 2017, The assessment of renal cortex and parenchymal volume using automated CT volumetry for predicting renal function after donor nephrectomy, Clin Exp. Nephrol., 10.1007/s10157-017-1454-1 Lee, 2017, Usefulness of multi-detector computed tomography scanning as a replacement for diethylenetriamine pentaacetic acid, Transplant. Proc., 49, 1023, 10.1016/j.transproceed.2017.03.056 Shimoyama, 2017, Automated renal cortical volume measurement for assessment of renal function in patients undergoing radical nephrectomy, Clin. Exp. Nephrol., 10.1007/s10157-017-1404-y Diez, 2014, Correlation between CT-based measured renal volumes and nuclear-renography-based split renal function in living kidney donors. Clinical diagnostic utility and practice patterns, Clin. Transplant., 28, 675, 10.1111/ctr.12365 Patankar, 2014, Comparison of computer tomographic volumetry versus nuclear split renal function to determine residual renal function after living kidney donation, Acta Radiol., 55, 53, 10.1177/0284185113504195 Soga, 2012, Comprehensive comparative study of computed tomography-based estimates of split renal function for potential renal donors: modified ellipsoid method and other CT-based methods, J. Comput. Assist. Tomogr., 36, 323, 10.1097/RCT.0b013e318251db15 Kato, 2011, Rapid estimation of split renal function in kidney donors using software developed for computed tomographic renal volumetry, Eur. J. Radiol., 79, 15, 10.1016/j.ejrad.2009.11.013 Summerlin, 2008, Determination of split renal function by 3D reconstruction of CT angiograms: a comparison with gamma camera renography, AJR Am. J. Roentgenol., 191, 1552, 10.2214/AJR.07.4023 Wahba, 2016, Computed tomography volumetry in preoperative living kidney donor assessment for prediction of split renal function, Transplantation, 100, 1270, 10.1097/TP.0000000000000889 Halleck, 2013, Volume matters: CT-based renal cortex volume measurement in the evaluation of living kidney donors, Transplant Int., 26, 1208, 10.1111/tri.12195 Barbas, 2016, CT volumetry is superior to nuclear renography for prediction of residual kidney function in living donors, Clin. Transplant., 30, 1028, 10.1111/ctr.12784 Yokoyama, 2015, Usefulness of three-dimensional computerized tomographic volumetry for determining split renal function in donors for living-related kidney transplantation, Transplant. Proc., 47, 588, 10.1016/j.transproceed.2014.11.044 Nyengaard, 1992, Glomerular number and size in relation to age, kidney weight, and body surface in normal man, Anat. Rec., 232, 194, 10.1002/ar.1092320205 Gaillard, 2017, Use of computed tomography assessed kidney length to predict split renal GFR in living kidney donors, Eur. Radiol., 27, 651, 10.1007/s00330-016-4410-7 Breau, 2013, A simple method to estimate renal volume from computed tomography, Can. Urol. Assoc. J., 7, 189, 10.5489/cuaj.1338 Yano, 2012, Renal measurements on CT angiograms: correlation with graft function at living donor renal transplantation, Radiology, 265, 51, 10.1148/radiol.12112338