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Published in: International Urology and Nephrology 11/2017

Open Access 01-11-2017 | Nephrology - Review

Estimating renal function in old people: an in-depth review

Authors: Maharajan Raman, Rachel J. Middleton, Philip A. Kalra, Darren Green

Published in: International Urology and Nephrology | Issue 11/2017

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Abstract

Estimates of glomerular filtration rate (eGFR) should provide accurate measure of an individual’s kidney function because important clinical decisions such as timing of renal replacement therapy and drug dosing may be dependent on eGFR. Formulae from which eGFR is derived are generally based on serum creatinine measurement, such as Cockcroft–Gault, MDRD and CKD-EPI. More recently, calculation of eGFR using other laboratory biomarkers such as cystatin C has emerged with apparent greater accuracy. In old people, there is age-related physiological change in the kidney, which could lead to reduced GFR. Likewise, physiological changes in body composition that occur with the ageing process impede the use of a single creatinine-based calculation of eGFR across all adult age groups. Studies have shown differences in the prevalence of CKD based on the type of equation used to estimate GFR. This review discusses the evolution of eGFR calculations and the relative accuracy of such equations in older population.
Literature
1.
go back to reference Zhou XJ, Rakheja D, Yu X, Saxena R, Vaziri ND, Silva FG (2008) The aging kidney. Kidney Int 74:710–720CrossRefPubMed Zhou XJ, Rakheja D, Yu X, Saxena R, Vaziri ND, Silva FG (2008) The aging kidney. Kidney Int 74:710–720CrossRefPubMed
2.
go back to reference Glassock RJ, Winearls C (2009) Ageing and the glomerular filtration rate: truths and consequences. Trans Am Clin Climatol Assoc 120:419–428PubMedPubMedCentral Glassock RJ, Winearls C (2009) Ageing and the glomerular filtration rate: truths and consequences. Trans Am Clin Climatol Assoc 120:419–428PubMedPubMedCentral
3.
go back to reference Davies DSN (1950) Age change in glomerular filteration rate, effective renal plasma flow and tubular. Clin Invest 29:4965–507 Davies DSN (1950) Age change in glomerular filteration rate, effective renal plasma flow and tubular. Clin Invest 29:4965–507
4.
go back to reference Garg A, Papaioannou A, Ferko N (2004) Estimating the prevalence of renal insufficiency in seniors requiring long-term care. Kidney 65:649–653CrossRef Garg A, Papaioannou A, Ferko N (2004) Estimating the prevalence of renal insufficiency in seniors requiring long-term care. Kidney 65:649–653CrossRef
5.
go back to reference Cockcroft DW, Gault MH (1976) Prediction of creatinine clearance from serum creatinine. Nephron 16(1):31–41CrossRefPubMed Cockcroft DW, Gault MH (1976) Prediction of creatinine clearance from serum creatinine. Nephron 16(1):31–41CrossRefPubMed
6.
go back to reference Levey AS (2000) A simplified equation to predict glomerular filtration rate from serum creatinine. J Am Soc Nephrol 11:A0828 Levey AS (2000) A simplified equation to predict glomerular filtration rate from serum creatinine. J Am Soc Nephrol 11:A0828
7.
go back to reference Schuster VL, Seldin DW (1992) Renal clearance. Kidney Physiol Pathophysiol 1:356–396 Schuster VL, Seldin DW (1992) Renal clearance. Kidney Physiol Pathophysiol 1:356–396
8.
go back to reference Bäck S-E, Krutzén E, Nilsson-Ehle P (1988) Contrast media as markers for glomerular filtration: a pharmacokinetic comparison of four agents. Scand J Clin Lab Invest 48(3):247–253CrossRefPubMed Bäck S-E, Krutzén E, Nilsson-Ehle P (1988) Contrast media as markers for glomerular filtration: a pharmacokinetic comparison of four agents. Scand J Clin Lab Invest 48(3):247–253CrossRefPubMed
9.
go back to reference Gaspari F, Perico N, Ruggenenti P, Mosconi L, Amuchastegui CS, Guerini E, Daina E, Remuzzi G (1995) Plasma clearance of nonradioactive iohexol as a measure of glomerular filtration rate. J Am Soc Nephrol 6(2):257–263PubMed Gaspari F, Perico N, Ruggenenti P, Mosconi L, Amuchastegui CS, Guerini E, Daina E, Remuzzi G (1995) Plasma clearance of nonradioactive iohexol as a measure of glomerular filtration rate. J Am Soc Nephrol 6(2):257–263PubMed
10.
go back to reference Krutzén E, Back S-E, Nilsson-Ehle I, Nilsson-Ehle P (1984) Plasma clearance of a new contrast agent, iohexol: a method for the assessment of glomerular filtration rate. J Lab Clin Med 104(6):955–961PubMed Krutzén E, Back S-E, Nilsson-Ehle I, Nilsson-Ehle P (1984) Plasma clearance of a new contrast agent, iohexol: a method for the assessment of glomerular filtration rate. J Lab Clin Med 104(6):955–961PubMed
11.
go back to reference Levey A, Bosch J, Lewis J (1999) A more accurate method to estimate glomerular filtration rate from serum creatinine; a new prediction equation. Ann Intern 130(6):461–470CrossRef Levey A, Bosch J, Lewis J (1999) A more accurate method to estimate glomerular filtration rate from serum creatinine; a new prediction equation. Ann Intern 130(6):461–470CrossRef
12.
go back to reference Shemesh O, Golbetz H, Kriss JP, Myers BD (1985) Limitations of creatinine as a filtration marker in glomerulopathic patients. Kidney Int 28(5):830–838CrossRefPubMed Shemesh O, Golbetz H, Kriss JP, Myers BD (1985) Limitations of creatinine as a filtration marker in glomerulopathic patients. Kidney Int 28(5):830–838CrossRefPubMed
13.
go back to reference Cowie MR (2005) Prevalence and impact of worsening renal function in patients hospitalized with decompensated heart failure: results of the prospective outcomes study in heart failure (POSH). Eur Heart J 27(10):1216–1222CrossRef Cowie MR (2005) Prevalence and impact of worsening renal function in patients hospitalized with decompensated heart failure: results of the prospective outcomes study in heart failure (POSH). Eur Heart J 27(10):1216–1222CrossRef
14.
go back to reference National Kidney Foundation (2002) K/DOQI clinical practice guidelines for chronic kidney disease: evaluation, clasification and stratification, vol 39 National Kidney Foundation (2002) K/DOQI clinical practice guidelines for chronic kidney disease: evaluation, clasification and stratification, vol 39
15.
go back to reference Levey AS, Coresh J, Greene T, Marsh J, Stevens LA, Kusek J, Van Lente F (2005) Expressing the MDRD study equation for estimating GFR with IDMS traceable (gold standard) serum creatinine values. J Am Soc Nephrol 16:69A Levey AS, Coresh J, Greene T, Marsh J, Stevens LA, Kusek J, Van Lente F (2005) Expressing the MDRD study equation for estimating GFR with IDMS traceable (gold standard) serum creatinine values. J Am Soc Nephrol 16:69A
16.
go back to reference Stevens LA, Coresh J, Feldman HI, Greene T, Lash JP, Nelson RG, Rahman M, Deysher AE, Zhang YL, Schmid CH, Levey AS (2007) Evaluation of the modification of diet in renal disease study equation in a large diverse population. J Am Soc Nephrol 18(10):2749–2757CrossRefPubMed Stevens LA, Coresh J, Feldman HI, Greene T, Lash JP, Nelson RG, Rahman M, Deysher AE, Zhang YL, Schmid CH, Levey AS (2007) Evaluation of the modification of diet in renal disease study equation in a large diverse population. J Am Soc Nephrol 18(10):2749–2757CrossRefPubMed
17.
go back to reference Levey AS, Stevens LA, Schmid CH, Zhang Y, Castro Alejandro F III, Feldman HI, Kusek JW, Eggers P, Van Lente F, Greene T, Coresh J (2009) A new equation to estimate glomerular filtration rate. Ann. Intern. Med. 150(9):604–612CrossRefPubMedPubMedCentral Levey AS, Stevens LA, Schmid CH, Zhang Y, Castro Alejandro F III, Feldman HI, Kusek JW, Eggers P, Van Lente F, Greene T, Coresh J (2009) A new equation to estimate glomerular filtration rate. Ann. Intern. Med. 150(9):604–612CrossRefPubMedPubMedCentral
18.
go back to reference Stevens LA, Schmid CH, Zhang YL, Coresh J, Manzi J, Landis R, Bakoush O, Contreras G, Genuth S, Klintmalm GB, Poggio E, Rossing P, Rule AD, Weir MR, Kusek J, Greene T, Levey AS (2010) Development and validation of GFR-estimating equations using diabetes, transplant and weight. Nephrol Dial Transplant 25(2):449–457CrossRefPubMed Stevens LA, Schmid CH, Zhang YL, Coresh J, Manzi J, Landis R, Bakoush O, Contreras G, Genuth S, Klintmalm GB, Poggio E, Rossing P, Rule AD, Weir MR, Kusek J, Greene T, Levey AS (2010) Development and validation of GFR-estimating equations using diabetes, transplant and weight. Nephrol Dial Transplant 25(2):449–457CrossRefPubMed
19.
go back to reference Stevens LA, Schmid CH, Greene T, Zhang YL, Beck GJ, Froissart M, Hamm LL, Lewis JB, Mauer M, Navis GJ, Steffes MW, Eggers PW, Coresh J, Levey AS (2010) Comparative performance of the CKD Epidemiology Collaboration (CKD-EPI) and the Modification of Diet in Renal Disease (MDRD) Study equations for estimating GFR levels above 60 mL/min/1.73 m2. Am J Kidney Dis 56(3):486–495CrossRefPubMedPubMedCentral Stevens LA, Schmid CH, Greene T, Zhang YL, Beck GJ, Froissart M, Hamm LL, Lewis JB, Mauer M, Navis GJ, Steffes MW, Eggers PW, Coresh J, Levey AS (2010) Comparative performance of the CKD Epidemiology Collaboration (CKD-EPI) and the Modification of Diet in Renal Disease (MDRD) Study equations for estimating GFR levels above 60 mL/min/1.73 m2. Am J Kidney Dis 56(3):486–495CrossRefPubMedPubMedCentral
20.
go back to reference Kilbride HS, Stevens PE, Eaglestone G, Knight S, Carter JL, Delaney MP, Farmer CKT, Irving J, O’Riordan SE, Dalton RN, Lamb EJ (2013) 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. Am J Kidney Dis 61(1):57–66CrossRefPubMed Kilbride HS, Stevens PE, Eaglestone G, Knight S, Carter JL, Delaney MP, Farmer CKT, Irving J, O’Riordan SE, Dalton RN, Lamb EJ (2013) 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. Am J Kidney Dis 61(1):57–66CrossRefPubMed
21.
go back to reference Schaeffner ES, Ebert N, Delanaye P, Frei U, Gaedeke J, Jakob O, Kuhlmann MK et al (2012) Two novel equations to estimate kidney function in persons aged 70 years or older. Ann Intern Med 157(7):471–481CrossRefPubMed Schaeffner ES, Ebert N, Delanaye P, Frei U, Gaedeke J, Jakob O, Kuhlmann MK et al (2012) Two novel equations to estimate kidney function in persons aged 70 years or older. Ann Intern Med 157(7):471–481CrossRefPubMed
22.
go back to reference Lopes MB, Araújo LQ, Passos MT, Nishida SK, Kirsztajn GM, Cendoroglo MS, Sesso RC (2013) Estimation of glomerular filtration rate from serum creatinine and cystatin C in octogenarians and nonagenarians. BMC Nephrol 14:265CrossRefPubMedPubMedCentral Lopes MB, Araújo LQ, Passos MT, Nishida SK, Kirsztajn GM, Cendoroglo MS, Sesso RC (2013) Estimation of glomerular filtration rate from serum creatinine and cystatin C in octogenarians and nonagenarians. BMC Nephrol 14:265CrossRefPubMedPubMedCentral
23.
go back to reference Koppe L, Klich A, Dubourg L, Ecochard R, Hadj-Aissa A (2013) Performance of creatinine-based equations compared in older patients. J Nephrol 26(4):716–723CrossRefPubMed Koppe L, Klich A, Dubourg L, Ecochard R, Hadj-Aissa A (2013) Performance of creatinine-based equations compared in older patients. J Nephrol 26(4):716–723CrossRefPubMed
24.
go back to reference Liu X, Chen J, Wang C, Shi C, Cheng C, Tang H, Lou T (2013) Assessment of glomerular filtration rate in elderly patients with chronic kidney disease. Int Urol Nephrol 45(5):1475–1482CrossRefPubMed Liu X, Chen J, Wang C, Shi C, Cheng C, Tang H, Lou T (2013) Assessment of glomerular filtration rate in elderly patients with chronic kidney disease. Int Urol Nephrol 45(5):1475–1482CrossRefPubMed
25.
go back to reference Pottel H, Hoste L, Dubourg L, Ebert N, Schaeffner E, Eriksen BO, Melsom T, Lamb EJ, Rule AD, Turner ST, Glassock RJ, De Souza V, Selistre L, Mariat C, Martens F, Delanaye P (2016) An estimated glomerular filtration rate equation for the full age spectrum. Nephrol Dial Transplant 31(5):798–806CrossRefPubMedPubMedCentral Pottel H, Hoste L, Dubourg L, Ebert N, Schaeffner E, Eriksen BO, Melsom T, Lamb EJ, Rule AD, Turner ST, Glassock RJ, De Souza V, Selistre L, Mariat C, Martens F, Delanaye P (2016) An estimated glomerular filtration rate equation for the full age spectrum. Nephrol Dial Transplant 31(5):798–806CrossRefPubMedPubMedCentral
26.
go back to reference Fan L, Levey AS, Gudnason V, Eiriksdottir G, Andresdottir MB, Gudmundsdottir H, Indridason OS, Palsson R, Mitchell G, Inker LA (2015) Comparing GFR estimating equations using cystatin C and creatinine in elderly individuals. J Am Soc Nephrol 26(8):1982–1989CrossRefPubMed Fan L, Levey AS, Gudnason V, Eiriksdottir G, Andresdottir MB, Gudmundsdottir H, Indridason OS, Palsson R, Mitchell G, Inker LA (2015) Comparing GFR estimating equations using cystatin C and creatinine in elderly individuals. J Am Soc Nephrol 26(8):1982–1989CrossRefPubMed
27.
go back to reference Alshaer IM, Kilbride HS, Stevens PE, Eaglestone G, Knight S, Carter JL, Delaney MP, Farmer CKT, Irving J, O’Riordan SE, Dalton RN, Lamb EJ (2014) External validation of the Berlin equations for estimation of GFR in the elderly. Am J Kidney Dis 63(5):862–865CrossRefPubMed Alshaer IM, Kilbride HS, Stevens PE, Eaglestone G, Knight S, Carter JL, Delaney MP, Farmer CKT, Irving J, O’Riordan SE, Dalton RN, Lamb EJ (2014) External validation of the Berlin equations for estimation of GFR in the elderly. Am J Kidney Dis 63(5):862–865CrossRefPubMed
28.
30.
go back to reference Fliser D, Ritz E (2001) Serum cystatin C concentration as a marker of renal dysfunction in the elderly. Am J Kidney Dis 37(1):79–83CrossRefPubMed Fliser D, Ritz E (2001) Serum cystatin C concentration as a marker of renal dysfunction in the elderly. Am J Kidney Dis 37(1):79–83CrossRefPubMed
31.
go back to reference Musso CG, Liakopoulos V, Ioannidis I, Eleftheriadis T, Stefanidis I (2006) Acute renal failure in the elderly: particular characteristics. Int Urol Nephrol 38(3–4):787–793PubMed Musso CG, Liakopoulos V, Ioannidis I, Eleftheriadis T, Stefanidis I (2006) Acute renal failure in the elderly: particular characteristics. Int Urol Nephrol 38(3–4):787–793PubMed
32.
go back to reference Coca SG, Yusuf B, Shlipak MG, Garg AX, Parikh CR (2009) Long-term risk of mortality and other adverse outcomes after acute kidney injury: a systematic review and meta-analysis. Am J Kidney Dis 53(6):961–973CrossRefPubMedPubMedCentral Coca SG, Yusuf B, Shlipak MG, Garg AX, Parikh CR (2009) Long-term risk of mortality and other adverse outcomes after acute kidney injury: a systematic review and meta-analysis. Am J Kidney Dis 53(6):961–973CrossRefPubMedPubMedCentral
33.
34.
go back to reference Kellum JA, Lameire N, Aspelin P, Barsoum RS, Burdmann EA, Goldstein SL, Herzog CA, Joannidis M, Kribben A, Levey AS, MacLeod AM, Mehta RL, Murray PT, Naicker S, Opal SM, Schaefer F, Schetz M, Uchino S (2012) KDIGO clinical practice guideline for acute kidney injury. Kidney Int Suppl 2(1):1–138CrossRef Kellum JA, Lameire N, Aspelin P, Barsoum RS, Burdmann EA, Goldstein SL, Herzog CA, Joannidis M, Kribben A, Levey AS, MacLeod AM, Mehta RL, Murray PT, Naicker S, Opal SM, Schaefer F, Schetz M, Uchino S (2012) KDIGO clinical practice guideline for acute kidney injury. Kidney Int Suppl 2(1):1–138CrossRef
35.
go back to reference Kidney Disease: Improving Global Outcomes (KDIGO) CKD Work Group (2013) KDIGO 2012 clinical practice guideline for the evaluation and management of chronic kidney disease. Kidney Int Suppl 3:1–150CrossRef Kidney Disease: Improving Global Outcomes (KDIGO) CKD Work Group (2013) KDIGO 2012 clinical practice guideline for the evaluation and management of chronic kidney disease. Kidney Int Suppl 3:1–150CrossRef
36.
go back to reference Delanaye P, Cavalier E, Saint-Remy A, Lutteri L, Krzesinski J-M (2009) Discrepancies between creatinine-based and cystatin C-based equations in estimating prevalence of stage 3 chronic kidney disease in an elderly population. Scand J Clin Lab Invest 69(3):344–349CrossRefPubMed Delanaye P, Cavalier E, Saint-Remy A, Lutteri L, Krzesinski J-M (2009) Discrepancies between creatinine-based and cystatin C-based equations in estimating prevalence of stage 3 chronic kidney disease in an elderly population. Scand J Clin Lab Invest 69(3):344–349CrossRefPubMed
37.
go back to reference Schock-Kusch D, Xie Q, Shulhevich Y, Hesser J, Stsepankou D, Sadick M, Koenig S, Hoecklin F, Pill J, Gretz N (2011) Transcutaneous assessment of renal function in conscious rats with a device for measuring FITC-sinistrin disappearance curves. Kidney Int 79(10):1254–1258CrossRefPubMed Schock-Kusch D, Xie Q, Shulhevich Y, Hesser J, Stsepankou D, Sadick M, Koenig S, Hoecklin F, Pill J, Gretz N (2011) Transcutaneous assessment of renal function in conscious rats with a device for measuring FITC-sinistrin disappearance curves. Kidney Int 79(10):1254–1258CrossRefPubMed
38.
go back to reference Yu W, Sandoval RM, Molitoris BA (2007) Rapid determination of renal filtration function using an optical ratiometric imaging approach. Am J Physiol Renal Physiol 292(6):F1873–F1880CrossRefPubMed Yu W, Sandoval RM, Molitoris BA (2007) Rapid determination of renal filtration function using an optical ratiometric imaging approach. Am J Physiol Renal Physiol 292(6):F1873–F1880CrossRefPubMed
39.
go back to reference Schock-Kusch D, Sadick M, Henninger N, Kraenzlin B, Claus G, Kloetzer HM, Weiß C, Pill J, Gretz N (2009) Transcutaneous measurement of glomerular filtration rate using FITC-sinistrin in rats. Nephrol Dial Transplant 24(10):2997–3001CrossRefPubMed Schock-Kusch D, Sadick M, Henninger N, Kraenzlin B, Claus G, Kloetzer HM, Weiß C, Pill J, Gretz N (2009) Transcutaneous measurement of glomerular filtration rate using FITC-sinistrin in rats. Nephrol Dial Transplant 24(10):2997–3001CrossRefPubMed
40.
go back to reference Pill J, Kraenzlin B, Jander J, Sattelkau T, Sadick M, Kloetzer H-M, Deus C, Kraemer U, Gretz N (2005) Fluorescein-labeled sinistrin as marker of glomerular filtration rate. Eur J Med Chem 40(10):1056–1061CrossRefPubMed Pill J, Kraenzlin B, Jander J, Sattelkau T, Sadick M, Kloetzer H-M, Deus C, Kraemer U, Gretz N (2005) Fluorescein-labeled sinistrin as marker of glomerular filtration rate. Eur J Med Chem 40(10):1056–1061CrossRefPubMed
41.
go back to reference Poreddy AR, Neumann WL, Freskos JN, Rajagopalan R, Asmelash B, Gaston KR, Fitch RM, Galen KP, Shieh J-J, Dorshow RB (2012) Exogenous fluorescent tracer agents based on pegylated pyrazine dyes for real-time point-of-care measurement of glomerular filtration rate. Bioorg Med Chem 20(8):2490–2497CrossRefPubMed Poreddy AR, Neumann WL, Freskos JN, Rajagopalan R, Asmelash B, Gaston KR, Fitch RM, Galen KP, Shieh J-J, Dorshow RB (2012) Exogenous fluorescent tracer agents based on pegylated pyrazine dyes for real-time point-of-care measurement of glomerular filtration rate. Bioorg Med Chem 20(8):2490–2497CrossRefPubMed
42.
go back to reference Schreiber A, Shulhevich Y, Geraci S, Hesser J, Stsepankou D, Neudecker S, Koenig S, Heinrich R, Hoecklin F, Pill J, Friedemann J, Schweda F, Gretz N, Schock-Kusch D (2012) Transcutaneous measurement of renal function in conscious mice. Am J Physiol Renal Physiol 303(5):F783–F788CrossRefPubMed Schreiber A, Shulhevich Y, Geraci S, Hesser J, Stsepankou D, Neudecker S, Koenig S, Heinrich R, Hoecklin F, Pill J, Friedemann J, Schweda F, Gretz N, Schock-Kusch D (2012) Transcutaneous measurement of renal function in conscious mice. Am J Physiol Renal Physiol 303(5):F783–F788CrossRefPubMed
43.
go back to reference Bjornsson TD, Cocchetto DM, McGowan FX, Verghese CP, Sedor F (1983) Nomogram for estimating creatinine clearance. Clin Pharmacokinet 8(4):365–369CrossRefPubMed Bjornsson TD, Cocchetto DM, McGowan FX, Verghese CP, Sedor F (1983) Nomogram for estimating creatinine clearance. Clin Pharmacokinet 8(4):365–369CrossRefPubMed
44.
go back to reference Hull JH, Hak LJ, Koch GG, Wargin WA, Chi SL, Mattocks AM (1981) Influence of range of renal function and liver disease on predictability of creatinine clearance. Clin Pharmacol Ther 29(4):516–521CrossRefPubMed Hull JH, Hak LJ, Koch GG, Wargin WA, Chi SL, Mattocks AM (1981) Influence of range of renal function and liver disease on predictability of creatinine clearance. Clin Pharmacol Ther 29(4):516–521CrossRefPubMed
45.
go back to reference Gates GF (1985) Creatinine clearance estimation from serum creatinine values: an analysis of three mathematical models of glomerular function. Am J Kidney Dis 5(3):199–205CrossRefPubMed Gates GF (1985) Creatinine clearance estimation from serum creatinine values: an analysis of three mathematical models of glomerular function. Am J Kidney Dis 5(3):199–205CrossRefPubMed
46.
47.
go back to reference Mawer GE, Knowles BR, Lucas SB, Stirland RM, Tooth JA (1972) Computer-assisted prescribing of kanamycin for patients with renal insufficiency. Lancet 299(7740):12–15CrossRef Mawer GE, Knowles BR, Lucas SB, Stirland RM, Tooth JA (1972) Computer-assisted prescribing of kanamycin for patients with renal insufficiency. Lancet 299(7740):12–15CrossRef
48.
go back to reference Jelliffe R (1971) Estimation of creatinine clearance when urine cannot be collected. Lancet 297(7706):975–976CrossRef Jelliffe R (1971) Estimation of creatinine clearance when urine cannot be collected. Lancet 297(7706):975–976CrossRef
Metadata
Title
Estimating renal function in old people: an in-depth review
Authors
Maharajan Raman
Rachel J. Middleton
Philip A. Kalra
Darren Green
Publication date
01-11-2017
Publisher
Springer Netherlands
Published in
International Urology and Nephrology / Issue 11/2017
Print ISSN: 0301-1623
Electronic ISSN: 1573-2584
DOI
https://doi.org/10.1007/s11255-017-1682-z

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