Yonsei Med J.  2012 Jul;53(4):866-869. 10.3349/ymj.2012.53.4.866.

Re: Microalbuminuria in Normal Korean Children

Affiliations
  • 1Department of Pediatrics, Division of Pediatric Nephrology University Hospital, Lausanne, Switzerland. fcachat@hotmail.com

Abstract

No abstract available.


MeSH Terms

Albuminuria/*epidemiology
Female
Humans
Male

Reference

1. Kwak BO, Lee ST, Chung S, Kim KS. Microalbuminuria in normal Korean children. Yonsei Med J. 2011. 52:476–481.
2. Rabi DM, Daskalopoulou SS, Padwal RS, Khan NA, Grover SA, Hackam DG, et al. The 2011 Canadian Hypertension Education Program recommendations for the management of hypertension: blood pressure measurement, diagnosis, assessment of risk, and therapy. Can J Cardiol. 2011. 27:415–433.
3. Sacks DB, Arnold M, Bakris GL, Bruns DE, Horvath AR, Kirkman MS, et al. Guidelines and recommendations for laboratory analysis in the diagnosis and management of diabetes mellitus. Clin Chem. 2011. 57:e1–e47.
Article
4. Lewis EJ, Hunsicker LG, Bain RP, Rohde RD. The Collaborative Study Group. The effect of angiotensin-converting-enzyme inhibition on diabetic nephropathy. N Engl J Med. 1993. 329:1456–1462.
Article
5. Yusuf S, Sleight P, Pogue J, Bosch J, Davies R, Dagenais G. Effects of an angiotensin-converting-enzyme inhibitor, ramipril, on cardiovascular events in high-risk patients. The Heart Outcomes Prevention Evaluation Study Investigators. N Engl J Med. 2000. 342:145–153.
Article
6. Basic J, Golubovic E, Miljkovic P, Bjelakovic G, Cvetkovic T, Milosevic V. Microalbuminuria in children with vesicoureteral reflux. Ren Fail. 2008. 30:639–643.
7. Burgert TS, Dziura J, Yeckel C, Taksali SE, Weiss R, Tamborlane W, et al. Microalbuminuria in pediatric obesity: prevalence and relation to other cardiovascular risk factors. Int J Obes (Lond). 2006. 30:273–280.
Article
8. Cizmecioğlu FM, Noyes K, Bath L, Kelnar C. Audit of microalbumin excretion in children with type I diabetes. J Clin Res Pediatr Endocrinol. 2009. 1:136–143.
Article
9. Bangstad HJ, Dahl-Jørgensen K, Kjaersgaard P, Mevold K, Hanssen KF. Urinary albumin excretion rate and puberty in non-diabetic children and adolescents. Acta Paediatr. 1993. 82:857–862.
Article
10. Sanchez-Bayle M, Rodriguez-Cimadevilla C, Asensio C, Ruiz-Jarabo C, Baena J, Arnaiz P, et al. Niño Jesus Group. Urinary albumin excretion in Spanish children. Pediatr Nephrol. 1995. 9:428–430.
Article
11. Jones CA, Francis ME, Eberhardt MS, Chavers B, Coresh J, Engelgau M, et al. Microalbuminuria in the US population: third National Health and Nutrition Examination Survey. Am J Kidney Dis. 2002. 39:445–459.
Article
12. Tsioufis C, Tsiachris D, Dimitriadis K, Thomopoulos C, Syrseloudis D, Andrikou E, et al. Leontio Lyceum ALbuminuria (3L Study) epidemiological study: aims, design and preliminary findings. Hellenic J Cardiol. 2009. 50:476–483.
Article
13. Horowitz GL. Clinical and Laboratory Standards Institute. Defining, Establishing, and Verifying Reference Intervals in the Clinical Laboratory: Approved Guideline. 2008. 3rd ed. PA: USA: Clinical and Laboratory Standards Institute.
Article
14. Ruilope LM, Bakris GL. Renal function and target organ damage in hypertension. Eur Heart J. 2011. 32:1599–1604.
15. Savino A, Pelliccia P, Chiarelli F, Mohn A. Obesity-related renal injury in childhood. Horm Res Paediatr. 2010. 73:303–311.
16. Sanad M, Gharib A. Evaluation of microalbuminuria in obese children and its relation to metabolic syndrome. Pediatr Nephrol. 2011. 26:2193–2199.
Article
17. Ellam TJ. Albumin: creatinine ratio--a flawed measure? The merits of estimated albuminuria reporting. Nephron Clin Pract. 2011. 118:c324–c330.
Article
18. Franciotta D, Zanardi MC, Albertotti L, Orcesi S, Berardinelli A, Pichiecchio A, et al. Measurement of skeletal muscle mass in Duchenne muscular dystrophy: use of 24-h creatinine excretion. Acta Diabetol. 2003. 40:Suppl 1. S290–S292.
Article
19. Parekh RS, Kao WH, Meoni LA, Ipp E, Kimmel PL, La Page J, et al. Reliability of urinary albumin, total protein, and creatinine assays after prolonged storage: the Family Investigation of Nephropathy and Diabetes. Clin J Am Soc Nephrol. 2007. 2:1156–1162.
Article
20. Schwartz GJ, Muñoz 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. 20:629–637.
Article
21. Griffin A, O'Shea P, FitzGerald R, O'Connor G, Tormey W. Establishment of a paediatric age-related reference interval for the measurement of urinary total fractionated metanephrines. Ann Clin Biochem. 2011. 48(Pt 1):41–44.
22. Jung B, Adeli K. Clinical laboratory reference intervals in pediatrics: the CALIPER initiative. Clin Biochem. 2009. 42:1589–1595.
Article
23. Dixon W. Processing data for outliers. Biometrics. 1953. 9:74–89.
Article
24. Harris EK, Boyd JC. On dividing reference data into subgroups to produce separate reference ranges. Clin Chem. 1990. 36:265–270.
Article
25. Lahti A. Partitioning biochemical reference data into subgroups: comparison of existing methods. Clin Chem Lab Med. 2004. 42:725–733.
Article
26. Harris E, Boyd J. Statistical bases of reference values in laboratory medicine. 1995. New York: Marcel Dekker.
Article
27. Podnar S. Comparison of parametric and nonparametric reference data in motor unit potential analysis. Muscle Nerve. 2008. 38:1412–1419.
Full Text Links
  • YMJ
Actions
Cited
CITED
export Copy
Close
Share
  • Twitter
  • Facebook
Similar articles
Copyright © 2024 by Korean Association of Medical Journal Editors. All rights reserved.     E-mail: koreamed@kamje.or.kr