Levey, AS, Stevens, LA, Schmid, CH, A new equation to estimate glomerular filtration rate (2009) Ann Intern Med, 150, pp. 604-612. , for the CKD-EPI (Chronic Kidney Disease Epidemiology Collaboration)
KDIGO 2012 clinical practice guideline for the evaluation and management of chronic kidney disease (2013) Kidney Int Suppl, 3, pp. 1-150. , KDIGO. Kidney Disease: Improving Global Outcomes (KDIGO) CKD Work Group
Murata, K, Baumann, NA, Saenger, AK, Relative performance of the MDRD and CKD-EPI equations for estimating glomerular filtration rate among patients with varied clinical presentations (2011) Clin J Am Soc Nephrol, 6, pp. 1963-1972
Björk, J, Jones, I, Nyman, U, Sjöström, P., Validation of the Lund-Malmö, Chronic Kidney Disease Epidemiology (CKD-EPI) and Modification of Diet in Renal Disease (MDRD) equations to estimate glomerular filtration rate in a large Swedish clinical population (2012) Scand J Urol Nephrol, 46, pp. 212-222
Evans, M, van Stralen, KJ, Schon, S, Glomerular filtration rate-estimating equations for patients with advanced chronic kidney disease (2013) Nephrol Dial Transplant, 28, pp. 2518-2526. , On the behalf of the ERA-EDTA Registry and the Swedish Renal Registry oration
Nyman, U, Grubb, A, Larsson, A, The revised Lund-Malmo GFR estimating equation outperforms MDRD and CKD-EPI across GFR, age and BMI intervals in a large Swedish population (2014) Clin Chem Lab Med, 52, pp. 815-824
Pottel, H, Hoste, L, Dubourg, L, An estimated glomerular filtration rate equation for the full age spectrum (2016) Nephrol Dial Transplant, 31, pp. 798-806
Pottel, H, Delanaye, P, Schaeffner, E, Estimating glomerular filtration rate for the full age spectrum from serum creatinine and cystatin C (2017) Nephrol Dial Transplant, 32, pp. 497-507
Björk, J, Bäck, SE, Ebert, N, GFR estimation based on standardized creatinine and cystatin C: a European multicenter analysis in older adults (2018) Clin Chem Lab Med, 56, pp. 422-435
Leion, F, Hegbrant, J, den Bakker, E, Estimating glomerular filtration rate (GFR) in children. The average between a cystatin C- and a creatinine-based equation improves estimation of GFR in both children and adults and enables diagnosing Shrunken Pore Syndrome (2017) Scand J Clin Lab Invest, 77, pp. 338-344
Selistre, L, Rabilloud, M, Cochat, P, Comparison of the Schwartz and CKD-EPI equations for estimating glomerular filtration rate in children, adolescents, and adults: a retrospective cross-sectional study (2016) PLoS Med, 13, p. e1001979
Selistre, L, De Souza, V, Cochat, P, GFR estimation in adolescents and young adults (2012) J Am Soc Nephrol, 23, pp. 989-996
Pottel, H, Björk, J, Bökenkamp, A, Estimating glomerular filtration rate at the transition from pediatric to adult care (2019) Kidney Int, 95, pp. 1234-1243
Kemperman, FA, Krediet, RT, Arisz, L., Formula-derived prediction of the glomerular filtration rate from plasma creatinine concentration (2002) Nephron, 91, pp. 547-558
Björk, J, Grubb, A, Sterner, G, Performance of GFR estimating equations stratified by measured or estimated GFR: implications for interpretation (2015) Am J Kidney Dis, 66, pp. 1107-1108
Björk, J, Grubb, A, Sterner, G, Accuracy diagrams: a novel way to illustrate uncertainty of estimated GFR (2017) Scand J Clin Lab Invest, 77, pp. 199-204
Björk, J, Grubb, A, Nyman, U., Variability in diagnostic accuracy can be estimated using simple population weighting (2009) J Clin Epidemiol, 62, pp. 54-57
Rule, AD, Kremers, WK., What is the correct approach for comparing GFR by different methods across levels of GFR? (2016) Clin J Am Soc Nephrol, 11, pp. 1518-1521
Rule, AD., The CKD-EPI equation for estimating GFR from serum creatinine: real improvement or more of the same? (2010) Clin J Am Soc Nephrol, 5, pp. 951-953
Björk, J, Nyman, U, Berg, U, Validation of standardized creatinine and cystatin C GFR estimating equations in a large multicentre European cohort of children (2019) Pediatr Nephrol, 34, pp. 1087-1098
Björk, J, Grubb, A, Sterner, G, Revised equations for estimating glomerular filtration rate based on the Lund-Malmö Study cohort (2011) Scand J Clin Lab Invest, 71, pp. 232-239
Pottel, H, Hoste, L, Yayo, E, Glomerular filtration rate in healthy living potential kidney donors: a meta-analysis supporting the construction of the full age spectrum equation (2017) Nephron, 135, pp. 105-119
Gagneux-Brunon, A, Delanaye, P, Maillard, N, Performance of creatinine and cystatin C-based glomerular filtration rate estimating equations in a European HIV-positive cohort (2013) AIDS, 27, pp. 1573-1581
Gaillard, F, Courbebaisse, M, Kamar, N, Impact of estimation versus direct measurement of predonation glomerular filtration rate on the eligibility of potential living kidney donors (2019) Kidney Int, 95, pp. 896-904
Kilbride, HS, Stevens, PE, Eaglestone, G, Accuracy of the MDRD (Modification of Diet in Renal Disease) study and CKD-EPI (CKD Epidemiology Collaboration) equations for estimation of GFR in the elderly (2013) Am J Kidney Dis, 61, pp. 57-66
Schaeffner, ES, Ebert, N, Delanaye, P, Two novel equations to estimate kidney function in persons aged 70 years or older (2012) Ann Intern Med, 157, pp. 471-481
Melsom, T, Mathisen, UD, Eilertsen, BA, Physical exercise, fasting glucose, and renal hyperfiltration in the general population: the Renal Iohexol Clearance Survey in Tromso 6 (RENIS-T6) (2012) Clin J Am Soc Nephrol, 7, pp. 1801-1810
Grubb, A, Horio, M, Hansson, LO, Generation of a new cystatin C-based estimating equation for glomerular filtration rate by use of 7 assays standardized to the international calibrator (2014) Clin Chem, 60, pp. 974-986
Björk, J, Grubb, A, Larsson, A, Accuracy of GFR estimating equations combining standardized cystatin C and creatinine assays: a cross-sectional study in Sweden (2015) Clin Chem Lab Med, 53, pp. 403-414
Feldman, HI, Appel, LJ, Chertow, GM, The Chronic Renal Insufficiency Cohort (CRIC) study: design and methods (2003) J Am Soc Nephrol, 14, pp. S148-S153. , Chronic Renal Insufficiency Cohort (CRIC) Study Investigators
Rule, AD, Bailey, KR, Lieske, JC, Estimating the glomerular filtration rate from serum creatinine is better than from cystatin C for evaluating risk factors associated with chronic kidney disease (2013) Kidney Int, 83, pp. 1169-1176
Soveri, I, Berg, UB, Björk, J, Measuring GFR: a systematic review (2014) Am J Kidney Dis, 64, pp. 411-424
Stevens, LA, Zhang, Y, Schmid, CH., Evaluating the performance of equations for estimating glomerular filtration rate (2008) J Nephrol, 21, pp. 797-807
Inker, LA, Schmid, CH, Tighiouart, H, Estimating glomerular filtration rate from serum creatinine and cystatin C (2012) N Engl J Med, 367, pp. 20-29
K/DOQI clinical practice guidelines for chronic kidney disease: evaluation, classification, and stratification. Part 5. Evaluation of laboratory measurements for clinical assessment of kidney disease. Guideline 4. Estimation of GFR (2002) Am J Kidney Dis, 39, pp. S76-S92. , NKF5
Earley, A, Miskulin, D, Lamb, EJ, Estimating equations for glomerular filtration rate in the era of creatinine standardization: a systematic review (2012) Ann Intern Med, 156, pp. 785-795
Efron, B, Tibshirani, RJ., (1993) An Introduction to the Bootstrap, , New York, NY: Chapman and Hall
Obermeyer, Z, Emanuel, EJ., Predicting the future - big data, machine learning, and clinical medicine (2016) N Engl J Med, 375, pp. 1216-1219
Lepri, B, Oliver, N, Letouzé, E, Fair, transparent, and accountable algorithmic decision-making processes (2018) Philos Technol, 31, pp. 611-627
Hoste, L, Dubourg, L, Selistre, L, A new equation to estimate the glomerular filtration rate in children, adolescents and young adults (2014) Nephrol Dial Transplant, 29, pp. 1082-1091
Levey, AS, Coresh, J, Tighiouart, H, Measured and estimated glomerular filtration rate: current status and future directions (2020) Nat Rev Nephrol, 16, pp. 51-64
Björk, J, Bäck, SE, Nordin, G, How valid are GFR estimation results from the CKD-EPI databases? (2018) Am J Kidney Dis, 71, p. 446
Bird, NJ, Peters, C, Michell, AR, Comparison of GFR measurements assessed from single versus multiple samples (2009) Am J Kidney Dis, 54, pp. 278-288
Delanaye, P, Flamant, M, Dubourg, L, Single- versus multiple-sample method to measure glomerular filtration rate (2018) Nephrol Dial Transplant, 33, pp. 1778-1785
Eriksen, BO, Schaeffner, E, Melsom, T, Comparability of plasma iohexol clearance across population-based cohorts (2019) Am J Kidney Dis, , pii: S0272-6386(19)31122-9, (Epub ahead of print)
Sterner, G, Frennby, B, Hultberg, B, Iohexol clearance for GFR-determination in renal failure-single or multiple plasma sampling? (1996) Nephrol Dial Transplant, 11, pp. 521-525