Möller E, McIntosh JF, Van Slycke DD Studies of urea excretion. II. Relationship between urine volume and the rate of urea excretion by normal adults. J Clin Invest 1929, 6(3):427-465.
Smith HW The kidney: Structure and function in health and disease 1951, Oxford University Press Inc, New York.
KDIGO 2012 Clinical Practice Guideline for the Evaluation and Management of Chronic Kidney Disease. Kidney Int Suppl 2013, 3(1):1-150.
Moranne O, Froissart M, Rossert J, Gauci C, Boffa JJ, Haymann JP, et al. Timing of onset of CKD-related metabolic complications. J Am Soc Nephrol 2009, 20(1):164-171.
Go AS, Chertow GM, Fan D, McCulloch CE, Hsu CY Chronic kidney disease and the risks of death, cardiovascular events, and hospitalization. N Engl J Med 2004, 351(13):1296-1305.
Matsushita K, van der Velde M, Astor BC, Woodward M, Levey AS, de Jong PE, et al. Association of estimated glomerular filtration rate and albuminuria with all-cause and cardiovascular mortality in general population cohorts: a collaborative meta-analysis. Lancet 2010, 375(9731):2073-2081.
Smith HW Comparative physiology of the kidney. The kidney: stucture and function in health and disease 1951, 520-574. Oxford University Press, New York. H.W. Smith (Ed.).
Wesson LG Renal hemodynamics in physiologic states. Physiology of the human kidney 1969, 96-108. Grune & Stratton, New York. L.G. Wesson (Ed.).
Delanaye P, Schaeffner E, Ebert N, Cavalier E, Mariat C, Krzesinski JM, et al. Normal reference values for glomerular filtration rate: what do we really know?. Nephrol Dial Transplant 2012, 27(7):2664-2672.
Poggio ED, Rule AD, Tanchanco R, Arrigain S, Butler RS, Srinivas T, et al. Demographic and clinical characteristics associated with glomerular filtration rates in living kidney donors. Kidney Int 2009, 75(10):1079-1087.
Rule AD, Gussak HM, Pond GR, Bergstralh EJ, Stegall MD, Cosio FG, et al. Measured and estimated GFR in healthy potential kidney donors. Am J Kidney Dis 2004, 43(1):112-119.
Ricos C, Cava F, Garcia-Lario JV, Hernandez A, Iglesias N, Jimenez CV, et al. The reference change value: a proposal to interpret laboratory reports in serial testing based on biological variation. Scand J Clin Lab Invest 2004, 64(3):175-184.
Visser FW, Muntinga JH, Dierckx RA, Navis G Feasibility and impact of the measurement of extracellular fluid volume simultaneous with GFR by 125I-iothalamate. Clin J Am Soc Nephrol 2008, 3(5):1308-1315.
Wilkinson J, Fleming JS, Waller DG Effect of food and activity on the reproducibility of isotopic GFR estimation. Nucl Med Commun 1990, 11(10):697-700.
Merrill AJ, Cargill WH The effect of exercise on the renal plasma flow and filtration rate of normal and cardiac subjects. J Clin Invest 1948, 27(2):272-277.
Sirota JH, Baldwin DS, Villareal H Diurnal variations of renal function in man. J Clin Invest 1950, 29(2):187-192.
Koopman MG, Koomen GC, Krediet RT, de Moor EA, Hoek FJ, Arisz L Circadian rhythm of glomerular filtration rate in normal individuals. Clin Sci (Lond) 1989, 77(1):105-111.
Brochner-Mortensen J, Rodbro P Selection of routine method for determination of glomerular filtration rate in adult patients. Scand J Clin Lab Invest 1976, 36(1):35-43.
Delanaye P, Cavalier E, Froissart M, Krzesinski JM Reproducibility of GFR measured by chromium-51-EDTA and iohexol. Nephrol Dial Transplant 2008, 23(12):4077-4078.
Gaspari F, Perico N, Matalone M, Signorini O, Azzollini N, Mister M, et al. Precision of plasma clearance of iohexol for estimation of GFR in patients with renal disease. J Am Soc Nephrol 1998, 9(2):310-313.
Davies DF, Shock NW Age changes in glomerular filtration rate, effective renal plasma flow, and tubular excretory capacity in adult males. J Clin Invest 1950, 29(5):496-507.
Rule AD, Amer H, Cornell LD, Taler SJ, Cosio FG, Kremers WK, et al. The association between age and nephrosclerosis on renal biopsy among healthy adults. Ann Intern Med 2010, 152(9):561-567.
Back SE, Ljungberg B, Nilsson-Ehle I, Borga O, Nilsson-Ehle P Age dependence of renal function: clearance of iohexol and p-amino hippurate in healthy males. Scand J Clin Lab Invest 1989, 49(7):641-646.
Slack TK, Wilson DM Normal renal function: CIN and CPAH in healthy donors before and after nephrectomy. Mayo Clin Proc 1976, 51(5):296-300.
Lindeman RD, Tobin J, Shock NW Longitudinal studies on the rate of decline in renal function with age. J Am Geriatr Soc 1985, 33(4):278-285.
Wetzels JF, Kiemeney LA, Swinkels DW, Willems HL, den HM Age- and gender-specific reference values of estimated GFR in Caucasians: the Nijmegen Biomedical Study. Kidney Int 2007, 72(5):632-637.
Glassock RJ, Rule AD The implications of anatomical and functional changes of the aging kidney: with an emphasis on the glomeruli. Kidney Int 2012, 82(3):270-277.
Fehrman-Ekholm I, Skeppholm L Renal function in the elderly (>70 years old) measured by means of iohexol clearance, serum creatinine, serum urea and estimated clearance. Scand J Urol Nephrol 2004, 38(1):73-77.
Schaeffner ES, Ebert N, Delanaye P, Frei U, Gaedeke J, Jakob O, et al. Two novel equations to estimate kidney function in persons aged 70 years or older. Ann Intern Med 2012, 157(7):471-481.
Shannon JA The renal excretion of creatinine in man. J Clin Invest 1935, 14(4):403-410.
Richards AN, Westfall BB, Bott PA Renal excretion of inulin, creatinine, and xylose in normal dogs. Proc Soc Exp Biol Med 1934, 32:73.
Gutman Y, Gottschalk C, Lassiter WE Micropuncture study of inulin absorption in the rat kidney. Science 1965, 147:753-754.
Schanker LS, Hogben CA Biliary excretion of inulin, sucrose, and mannitol: analysis of bile formation. Am J Physiol 1961, 200:1087-1090.
Delanaye P, Thibaudin L, Souvignet M, Maillard N, Alamartine E, Rozet E, et al. Comparison of acid and enzymatic methods for inulin dosage: analytical performances and impact on glomerular filtration rate evaluation. Clin Chim Acta 2012, 413(5-6):556-560.
Brochner-Mortensen J A simple method for the determination of glomerular filtration rate. Scand J Clin Lab Invest 1972, 30(3):271-274.
Medeiros FS, Sapienza MT, Prado ES, Agena F, Shimizu MH, Lemos FB, et al. Validation of plasma clearance of 51Cr-EDTA in adult renal transplant recipients: comparison with inulin renal clearance. Transpl Int 2009, 22(3):323-331.
Owen JE, Walker RG, Willems D, Guignard PA, d'Apice AJ Cadmium telluride detectors in the external measurement of glomerular filtration rate using 99mTc-DTPA (Sn): comparison with 51Cr-EDTA and 99mTc-DTPA (Sn) plasma sample methods. Clin Nephrol 1982, 18(4):200-203.
Jeghers O, Piepsz A, Ham HR What does protein binding of radiopharmaceuticals mean exactly?. Eur J Nucl Med 1990, 17(3-4):101-102.
Xie P, Huang JM, Liu XM, Wu WJ, Pan LP, Lin HY (99m)Tc-DTPA renal dynamic imaging method may be unsuitable to be used as the reference method in investigating the validity of CDK-EPI equation for determining glomerular filtration rate. PLoS One 2013, 8(5):e62328.
Back SE, Krutzen E, Nilsson-Ehle P Contrast media as markers for glomerular filtration: a pharmacokinetic comparison of four agents. Scand J Clin Lab Invest 1988, 48(3):247-253.
Botev R, Mallie JP, Wetzels JF, Couchoud C, Schuck O The clinician and estimation of glomerular filtration rate by creatinine-based formulas: current limitations and quo vadis. Clin J Am Soc Nephrol 2011, 6(4):937-950.
Perrone RD, Steinman TI, Beck GJ, Skibinski CI, Royal HD, Lawlor M, et al. Utility of radioisotopic filtration markers in chronic renal insufficiency: simultaneous comparison of 125I-iothalamate, 169Yb-DTPA, 99mTc-DTPA, and inulin. The Modification of Diet in Renal Disease Study. Am J Kidney Dis 1990, 16(3):224-235.
Ott NT A simple technique for estimating glomerular filtration rate with subcutaneous injection of (125I)lothalamate. Mayo Clin Proc 1975, 50(11):664-668.
Cavalier E, Rozet E, Dubois N, Charlier C, Hubert P, Chapelle JP, et al. Performance of iohexol determination in serum and urine by HPLC: validation, risk and uncertainty assessment. Clin Chim Acta 2008, 396(1-2):80-85.
Gaspari F, Perico N, Ruggenenti P, Mosconi L, Amuchastegui CS, Guerini E, et al. Plasma clearance of nonradioactive iohexol as a measure of glomerular filtration rate. J Am Soc Nephrol 1995, 6(2):257-263.
Sterner G, Frennby B, Mansson S, Nyman U, van Westen D, Almen T Determining "true" glomerular filtration rate in healthy adults using infusion of inulin and comparing it with values obtained using other clearance techniques or prediction equations. Scand J Urol Nephrol 2008, 42(3):278-285.
Brandstrom E, Grzegorczyk A, Jacobsson L, Friberg P, Lindahl A, Aurell M GFR Measurement with iohexol and 51Cr-EDTA. A comparison of the two favoured GFR markers in Europe. Nephrol Dial Transplant 1998, 13(5):1176-1182.
Pucci L, Bandinelli S, Penno G, Nannipieri M, Rizzo L, Navalesi R Iohexol plasma clearance in determining glomerular filtration rate in diabetic patients. Ren Fail 1998, 20(2):277-284.
Rule AD, Bergstralh EJ, Slezak JM, Bergert J, Larson TS Glomerular filtration rate estimated by cystatin C among different clinical presentations. Kidney Int 2006, 69(2):399-405.
Frennby B, Sterner G Contrast media as markers of GFR. Eur Radiol 2002, 12(2):475-484.
Skluzacek PA, Szewc RG, Nolan CR, Riley DJ, Lee S, Pergola PE Prediction of GFR in liver transplant candidates. Am J Kidney Dis 2003, 42(6):1169-1176.
Agarwal R, Bills JE, Yigazu PM, Abraham T, Gizaw AB, Light RP, et al. Assessment of iothalamate plasma clearance: duration of study affects quality of GFR. Clin J Am Soc Nephrol 2009, 4(1):77-85.
Stolz A, Hoizey G, Toupance O, Lavaud S, Vitry F, Chanard J, et al. Evaluation of sample bias for measuring plasma iohexol clearance in kidney transplantation. Transplantation 2010, 89(4):440-445.
Hsu CY, Propert K, Xie D, Hamm L, He J, Miller E, et al. Measured GFR does not outperform estimated GFR in predicting CKD-related complications. J Am Soc Nephrol 2011, 22(10):1931-1937.
Barri YM, Parker T, Daoud Y, Glassock RJ Definition of chronic kidney disease after uninephrectomy in living donors: what are the implications?. Transplantation 2010, 90(5):575-580.
Cobbaert CM, Baadenhuijsen H, Weykamp CW Prime time for enzymatic creatinine methods in pediatrics. Clin Chem 2009, 55(3):549-558.
Myers GL, Miller WG, Coresh J, Fleming J, Greenberg N, Greene T, et al. Recommendations for improving serum creatinine measurement: a report from the laboratory working group of the national kidney disease education program. Clin Chem 2006, 52(1):5-18.
Pieroni L, Delanaye P, Boutten A, Bargnoux AS, Rozet E, Delatour V, et al. A multicentric evaluation of IDMS-traceable creatinine enzymatic assays. Clin Chim Acta 2011, 412(23-24):2070-2075.
Boutten A, Bargnoux AS, Carlier MC, Delanaye P, Rozet E, Delatour V, et al. Enzymatic but not compensated Jaffe methods reach the desirable specifications of NKDEP at normal levels of creatinine. Results of the French multicentric evaluation. Clin Chim Acta 2013, 419:132-135.
Perrone RD, Madias NE, Levey AS Serum creatinine as an index of renal function: new insights into old concepts. Clin Chem 1992, 38(10):1933-1953.
Shemesh O, Golbetz H, Kriss JP, Myers BD Limitations of creatinine as a filtration marker in glomerulopathic patients. Kidney Int 1985, 28(5):830-838.
Heymsfield SB, Arteaga C, McManus C, Smith J, Moffitt S Measurement of muscle mass in humans: validity of the 24-hour urinary creatinine method. Am J Clin Nutr 1983, 37(3):478-494.
Rule AD, Bailey KR, Schwartz GL, Khosla S, Lieske JC, Melton LJ For estimating creatinine clearance measuring muscle mass gives better results than those based on demographics. Kidney Int 2009, 75(10):1071-1078.
Mitch WE, Walser M A proposed mechanism for reduced creatinine excretion in severe chronic renal failure. Nephron 1978, 21(5):248-254.
Mayersohn M, Conrad KA, Achari R The influence of a cooked meat meal on creatinine plasma concentration and creatinine clearance. Br J Clin Pharmacol 1983, 15(2):227-230.
Preiss DJ, Godber IM, Lamb EJ, Dalton RN, Gunn IR The influence of a cooked-meat meal on estimated glomerular filtration rate. Ann Clin Biochem 2007, 44(Pt 1):35-42.
Delanaye P, Cohen EP Formula-based estimates of the GFR: equations variable and uncertain. Nephron Clin Pract 2008, 110(1):c48-c53.
van Acker BA, Koomen GC, Koopman MG, de Waart DR, Arisz L Creatinine clearance during cimetidine administration for measurement of glomerular filtration rate. Lancet 1992, 340(8831):1326-1329.
Morgan DB, Dillon S, Payne RB The assessment of glomerular function: creatinine clearance or plasma creatinine?. Postgrad Med J 1978, 54(631):302-310.
Toto RD, Kirk KA, Coresh J, Jones C, Appel L, Wright J, et al. Evaluation of serum creatinine for estimating glomerular filtration rate in African Americans with hypertensive nephrosclerosis: results from the African-American Study of Kidney Disease and Hypertension (AASK) Pilot Study. J Am Soc Nephrol 1997, 8(2):279-287.
Abrahamson M Human cysteine proteinase inhibitors. Isolation, physiological importance, inhibitory mechanism, gene structure and relation to hereditary cerebral hemorrhage. Scand J Clin Lab Invest Suppl 1988, 191:21-31.
Abrahamson M, Olafsson I, Palsdottir A, Ulvsback M, Lundwall A, Jensson O, et al. Structure and expression of the human cystatin C gene. Biochem J 1990, 268(2):287-294.
Tenstad O, Roald AB, Grubb A, Aukland K Renal handling of radiolabelled human cystatin C in the rat. Scand J Clin Lab Invest 1996, 56(5):409-414.
Stevens LA, Schmid CH, Greene T, Li L, Beck GJ, Joffe MM, et al. Factors other than glomerular filtration rate affect serum cystatin C levels. Kidney Int 2009, 75(6):652-660.
Macdonald J, Marcora S, Jibani M, Roberts G, Kumwenda M, Glover R, et al. GFR estimation using cystatin C is not independent of body composition. Am J Kidney Dis 2006, 48(5):712-719.
Vinge E, Lindergard B, Nilsson-Ehle P, Grubb A Relationships among serum cystatin C, serum creatinine, lean tissue mass and glomerular filtration rate in healthy adults. Scand J Clin Lab Invest 1999, 59(8):587-592.
Fricker M, Wiesli P, Brandle M, Schwegler B, Schmid C Impact of thyroid dysfunction on serum cystatin C. Kidney Int 2003, 63(5):1944-1947.
Naour N, Fellahi S, Renucci JF, Poitou C, Rouault C, Basdevant A, et al. Potential contribution of adipose tissue to elevated serum cystatin C in human obesity. Obesity (Silver Spring) 2009, 17(12):2121-2126.
Knight EL, Verhave JC, Spiegelman D, Hillege HL, de Zeeuw D, Curhan GC, et al. Factors influencing serum cystatin C levels other than renal function and the impact on renal function measurement. Kidney Int 2004, 65(4):1416-1421.
Gagneux-Brunon A, Mariat C, Delanaye P Cystatin C in HIV-infected patients: promising but not yet ready for prime time. Nephrol Dial Transplant 2012, 27(4):1305-1313.
Risch L, Huber AR Glucocorticoids and increased serum cystatin C concentrations. Clin Chim Acta 2002, 320(1-2):133-134.
Delanaye P, Pieroni L, Abshoff C, Lutteri L, Chapelle JP, Krzesinski JM, et al. Analytical study of three cystatin C assays and their impact on cystatin C-based GFR-prediction equations. Clin Chim Acta 2008, 398(1-2):118-124.
Voskoboev NV, Larson TS, Rule AD, Lieske JC Importance of cystatin C assay standardization. Clin Chem 2011, 57(8):1209-1211.
Larsson A, Hansson LO, Flodin M, Katz R, Shlipak MG Calibration of the Siemens cystatin C immunoassay has changed over time. Clin Chem 2011, 57(5):777-778.
Grubb A, Blirup-Jensen S, Lindstrom V, Schmidt C, Althaus H, Zegers I First certified reference material for cystatin C in human serum ERM-DA471/IFCC. Clin Chem Lab Med 2010, 48(11):1619-1621.
Miyata T, Jadoul M, Kurokawa K, Van Ypersele de SC Beta-2 microglobulin in renal disease. J Am Soc Nephrol 1998, 9(9):1723-1735.
Shea PH, Maher JF, Horak E Prediction of glomerular filtration rate by serum creatinine and beta 2-microglobulin. Nephron 1981, 29(1-2):30-35.
Clausen J Proteins in normal cerebrospinal fluid not found in serum. Proc Soc Exp Biol Med 1961, 109:91-95.
Hoffmann A, Nimtz M, Conradt HS Molecular characterization of beta-trace protein in human serum and urine: a potential diagnostic marker for renal diseases. Glycobiology 1997, 7(4):499-506.
Priem F, Althaus H, Birnbaum M, Sinha P, Conradt HS, Jung K Beta-trace protein in serum: a new marker of glomerular filtration rate in the creatinine-blind range. Clinical Chemistry 1999, 45(4):567-568.
Poge U, Gerhardt TM, Stoffel-Wagner B, Palmedo H, Klehr HU, Sauerbruch T, et al. beta-Trace protein is an alternative marker for glomerular filtration rate in renal transplantation patients.[see comment]. Clin Chem 2005, 51(8):1531-1533.
Foster MC, Inker LA, Levey AS, Selvin E, Eckfeldt J, Juraschek SP, et al. Novel filtration markers as predictors of all-cause and cardiovascular mortality in US adults. Am J Kidney Dis 2013, 18.
Bhavsar NA, Appel LJ, Kusek JW, Contreras G, Bakris G, Coresh J, et al. Comparison of measured GFR, serum creatinine, cystatin C, and beta-trace protein to predict ESRD in African Americans with hypertensive CKD. Am J Kidney Dis 2011, 58(6):886-893.
Rule AD, Glassock RJ GFR estimating equations: getting closer to the truth?. Clin J Am Soc Nephrol 2013, 8(8):1414-1429.
Murata K, Baumann NA, Saenger AK, Larson TS, Rule AD, Lieske JC Relative performance of the MDRD and CKD-EPI equations for estimating glomerular filtration rate among patients with varied clinical presentations. Clin J Am Soc Nephrol 2011, 6(8):1963-1972.
Rule AD, Larson TS, Bergstralh EJ, Slezak JM, Jacobsen SJ, Cosio FG Using serum creatinine to estimate glomerular filtration rate: accuracy in good health and in chronic kidney disease. Ann Intern Med 2004, 141(12):929-937.
K/DOQI clinical practice guidelines for chronic kidney disease: evaluation, classification, and stratification. Am J Kidney Dis 2002;39(2 Suppl 1):S1-266.
Levey AS, Bosch JP, Lewis JB, Greene T, Rogers N, Roth D A more accurate method to estimate glomerular filtration rate from serum creatinine: a new prediction equation. Modification of Diet in Renal Disease Study Group. Ann Intern Med 1999, 130(6):461-470.
Levey AS, Stevens LA, Schmid CH, Zhang YL, Castro AF, Feldman HI, et al. A new equation to estimate glomerular filtration rate. Ann Intern Med 2009, 150(9):604-612.
Cockcroft DW, Gault MH Prediction of creatinine clearance from serum creatinine. Nephron 1976, 16(1):31-41.
Froissart M, Rossert J, Jacquot C, Paillard M, Houillier P Predictive performance of the modification of diet in renal disease and Cockcroft-Gault equations for estimating renal function. J Am Soc Nephrol 2005, 16(3):763-773.
Park EJ, Wu K, Mi Z, Dong T, Lawrence JP, Ko CW, et al. A systematic comparison of Cockcroft-Gault and modification of diet in renal disease equations for classification of kidney dysfunction and dosage adjustment. Ann Pharmacother 2012, 46(9):1174-1187.
Nyman HA, Dowling TC, Hudson JQ, Peter WL, Joy MS, Nolin TD Comparative evaluation of the Cockcroft-Gault Equation and the Modification of Diet in Renal Disease (MDRD) study equation for drug dosing: an opinion of the Nephrology Practice and Research Network of the American College of Clinical Pharmacy. Pharmacotherapy 2011, 31(11):1130-1144.
Inker LA, Schmid CH, Tighiouart H, Eckfeldt JH, Feldman HI, Greene T, et al. Estimating glomerular filtration rate from serum creatinine and cystatin C. N Engl J Med 2012, 367(1):20-29.
Shlipak MG, Sarnak MJ, Katz R, Fried LF, Seliger SL, Newman AB, et al. Cystatin C and the risk of death and cardiovascular events among elderly persons. N Engl J Med 2005, 352(20):2049-2060.
Peralta CA, Shlipak MG, Judd S, Cushman M, McClellan W, Zakai NA, et al. Detection of chronic kidney disease with creatinine, cystatin C, and urine albumin-to-creatinine ratio and association with progression to end-stage renal disease and mortality. JAMA 2011, 305(15):1545-1552.
Lafarge JC, Naour N, Clement K, Guerre-Millo M Cathepsins and cystatin C in atherosclerosis and obesity. Biochimie 2010, 92(11):1580-1586.
Staun-Ram E, Miller A Cathepsins (S and B) and their inhibitor cystatin C in immune cells: modulation by interferon-beta and role played in cell migration. J Neuroimmunol 2011, 232(1-2):200-206.
Rule AD, Bailey KR, Lieske JC, Peyser PA, Turner ST Estimating the glomerular filtration rate from serum creatinine is better than from cystatin C for evaluating risk factors associated with chronic kidney disease. Kidney Int 2013, 83(6):1169-1176.
Mathisen UD, Melsom T, Ingebretsen OC, Jenssen T, Njolstad I, Solbu MD, et al. Estimated GFR associates with cardiovascular risk factors independently of measured GFR. J Am Soc Nephrol 2011, 22(5):927-937.
Poge U, Gerhardt T, Stoffel-Wagner B, Palmedo H, Klehr HU, Sauerbruch T, et al. Beta-trace protein-based equations for calculation of GFR in renal transplant recipients. Am J Transplant 2008, 8(3):608-615.
White CA, Akbari A, Doucette S, Fergusson D, Hussain N, Dinh L, et al. A novel equation to estimate glomerular filtration rate using beta-trace protein. Clin Chem 2007, 53(11):1965-1968.
Selistre L, De Souza V, Cochat P, Antonello IC, Hadj-Aissa A, Ranchin B, et al. GFR estimation in adolescents and young adults. J Am Soc Nephrol 2012, 23(6):989-996.
Delanaye P, Ebert N Assessment of kidney function: Estimating GFR in children. Nat Rev Nephrol 2012, 8(9):503-504.
Delanghe JR How to estimate GFR in children. Nephrol Dial Transplant 2009, 24(3):714-716.
Schwartz GJ, Munoz A, Schneider MF, Mak RH, Kaskel F, Warady BA, et al. New equations to estimate GFR in children with CKD. J Am Soc Nephrol 2009, 20(3):629-637.
Schwartz GJ, Schneider MF, Maier PS, Moxey-Mims M, Dharnidharka VR, Warady BA, et al. Improved equations estimating GFR in children with chronic kidney disease using an immunonephelometric determination of cystatin C. Kidney Int 2012, 82(4):445-453.
Coresh J, Toto RD, Kirk KA, Whelton PK, Massry S, Jones C, et al. Creatinine clearance as a measure of GFR in screenees for the African-American Study of Kidney Disease and Hypertension pilot study. Am J Kidney Dis 1998, 32(1):32-42.
Peralta CA, Lin F, Shlipak MG, Siscovick D, Lewis C, Jacobs DR, et al. Race differences in prevalence of chronic kidney disease among young adults using creatinine-based glomerular filtration rate-estimating equations. Nephrol Dial Transplant 2010, 25(12):3934-3939.
Delanaye P, Mariat C, Maillard N, Krzesinski JM, Cavalier E Are the creatinine-based equations accurate to estimate glomerular filtration rate in African American populations?. Clin J Am Soc Nephrol 2011, 6(4):906-912.
van Deventer HE, Paiker JE, Katz IJ, George JA A comparison of cystatin C- and creatinine-based prediction equations for the estimation of glomerular filtration rate in black South Africans. Nephrol Dial Transplant 2011, 26(5):1553-1558.
Maple-Brown LJ, Hughes JT, Lawton PD, Jones GR, Ellis AG, Drabsch K, et al. Accurate assessment of kidney function in indigenous Australians: the estimated GFR study. Am J Kidney Dis 2012, 60(4):680-682.
Delanaye P, Cavalier E, Mariat C, Krzesinski JM, Rule AD Estimating glomerular filtration rate in Asian subjects: where do we stand?. Kidney Int 2011, 80(5):439-440.
Stevens LA, Claybon MA, Schmid CH, Chen J, Horio M, Imai E, et al. Evaluation of the Chronic Kidney Disease Epidemiology Collaboration equation for estimating the glomerular filtration rate in multiple ethnicities. Kidney Int 2011, 79(5):555-562.
Teo BW, Xu H, Wang D, Li J, Sinha AK, Shuter B, et al. GFR estimating equations in a multiethnic Asian population. Am J Kidney Dis 2011, 58(1):56-63.
Koppe L, Klich A, Dubourg L, Ecochard R, Hadj-Aissa A Compared performance of creatinine-based equation in the elderly. J Nephrol 2013, 26(4):716-723.
Poggio ED, Nef PC, Wang X, Greene T, Van Lente F, Dennis VW, et al. Performance of the Cockcroft-Gault and modification of diet in renal disease equations in estimating GFR in ill hospitalized patients. Am J Kidney Dis 2005, 46(2):242-252.
Segarra A, de la Torre J, Ramos N, Quiroz A, Garjau M, Torres I, et al. Assessing glomerular filtration rate in hospitalized patients: a comparison between CKD-EPI and four cystatin C-based equations. Clin J Am Soc Nephrol 2011, 6(10):2411-2420.
Verhave JC, Fesler P, Ribstein J, du CG, Mimran A Estimation of renal function in subjects with normal serum creatinine levels: influence of age and body mass index. Am J Kidney Dis 2005, 46(2):233-241.
Delanaye P, Cavalier E, Radermecker RP, Paquot N, Depas G, Chapelle JP, et al. Cystatin C or Creatinine for Detection of Stage 3 Chronic Kidney Disease in Anorexia Nervosa. Nephron Clin Pract 2008, 110(3):c158-c163.
Xirouchakis E, Marelli L, Cholongitas E, Manousou P, Calvaruso V, Pleguezuelo M, et al. Comparison of cystatin C and creatinine-based glomerular filtration rate formulas with 51Cr-EDTA clearance in patients with cirrhosis. Clin J Am Soc Nephrol 2011, 6(1):84-92.
Gagneux-Brunon A, Delanaye P, Maillard N, Fresard A, Basset T, Alamartine E, et al. Performance of creatinine and cystatin C-based glomerular filtration rate estimating equations in a European HIV-positive cohort. AIDS 2013, 27(10):1573-1581.
Gaspari F, Ruggenenti P, Porrini E, Motterlini N, Cannata A, Carrara F, et al. The GFR and GFR decline cannot be accurately estimated in type 2 diabetics. Kidney Int 2013, 84(1):164-173.
Gera M, Slezak JM, Rule AD, Larson TS, Stegall MD, Cosio FG Assessment of changes in kidney allograft function using creatinine-based estimates of glomerular filtration rate. Am J Transplant 2007, 7(4):880-887.
Rule AD, Torres VE, Chapman AB, Grantham JJ, Guay-Woodford LM, Bae KT, et al. Comparison of methods for determining renal function decline in early autosomal dominant polycystic kidney disease: the consortium of radiologic imaging studies of polycystic kidney disease cohort. J Am Soc Nephrol 2006, 17(3):854-862.
Xie D, Joffe MM, Brunelli SM, Beck G, Chertow GM, Fink JC, et al. A comparison of change in measured and estimated glomerular filtration rate in patients with nondiabetic kidney disease. Clin J Am Soc Nephrol 2008, 3(5):1332-1338.
Delanaye P, Mariat C The applicability of eGFR equations to different populations. Nat Rev Nephrol 2013, 9(9):513-522.