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Items: 1 to 20 of 100

1.

Derivation and validation of the renal angina index to improve the prediction of acute kidney injury in critically ill children.

Basu RK, Zappitelli M, Brunner L, Wang Y, Wong HR, Chawla LS, Wheeler DS, Goldstein SL.

Kidney Int. 2014 Mar;85(3):659-67. doi: 10.1038/ki.2013.349. Epub 2013 Sep 18.

2.

Urinary biomarker incorporation into the renal angina index early in intensive care unit admission optimizes acute kidney injury prediction in critically ill children: a prospective cohort study.

Menon S, Goldstein SL, Mottes T, Fei L, Kaddourah A, Terrell T, Arnold P, Bennett MR, Basu RK.

Nephrol Dial Transplant. 2016 Apr;31(4):586-94. doi: 10.1093/ndt/gfv457. Epub 2016 Feb 2.

PMID:
26908772
3.

Incorporation of biomarkers with the renal angina index for prediction of severe AKI in critically ill children.

Basu RK, Wang Y, Wong HR, Chawla LS, Wheeler DS, Goldstein SL.

Clin J Am Soc Nephrol. 2014 Apr;9(4):654-62. doi: 10.2215/CJN.09720913. Epub 2014 Mar 27.

4.

Assessment of Worldwide Acute Kidney Injury, Renal Angina and Epidemiology in critically ill children (AWARE): study protocol for a prospective observational study.

Basu RK, Kaddourah A, Terrell T, Mottes T, Arnold P, Jacobs J, Andringa J, Goldstein SL; Prospective Pediatric AKI Research Group (ppAKI).

BMC Nephrol. 2015 Feb 26;16:24. doi: 10.1186/s12882-015-0016-6.

5.

Validation of the KDIGO acute kidney injury criteria in a pediatric critical care population.

Selewski DT, Cornell TT, Heung M, Troost JP, Ehrmann BJ, Lombel RM, Blatt NB, Luckritz K, Hieber S, Gajarski R, Kershaw DB, Shanley TP, Gipson DS.

Intensive Care Med. 2014 Oct;40(10):1481-8. doi: 10.1007/s00134-014-3391-8. Epub 2014 Jul 31.

PMID:
25079008
6.

Utilization of small changes in serum creatinine with clinical risk factors to assess the risk of AKI in critically lll adults.

Cruz DN, Ferrer-Nadal A, Piccinni P, Goldstein SL, Chawla LS, Alessandri E, Belluomo Anello C, Bohannon W, Bove T, Brienza N, Carlini M, Forfori F, Garzotto F, Gramaticopolo S, Iannuzzi M, Montini L, Pelaia P, Ronco C; NEFROINT Investigators.

Clin J Am Soc Nephrol. 2014 Apr;9(4):663-72. doi: 10.2215/CJN.05190513. Epub 2014 Mar 27.

7.

Urine neutrophil gelatinase-associated lipocalin is an early marker of acute kidney injury in critically ill children: a prospective cohort study.

Zappitelli M, Washburn KK, Arikan AA, Loftis L, Ma Q, Devarajan P, Parikh CR, Goldstein SL.

Crit Care. 2007;11(4):R84.

8.

Optimum methodology for estimating baseline serum creatinine for the acute kidney injury classification.

Thongprayoon C, Cheungpasitporn W, Kittanamongkolchai W, Srivali N, Ungprasert P, Kashani K.

Nephrology (Carlton). 2015 Dec;20(12):881-6. doi: 10.1111/nep.12525.

PMID:
26032233
9.

Acute Kidney Injury Incidence in Noncritically Ill Hospitalized Children, Adolescents, and Young Adults: A Retrospective Observational Study.

McGregor TL, Jones DP, Wang L, Danciu I, Bridges BC, Fleming GM, Shirey-Rice J, Chen L, Byrne DW, Van Driest SL.

Am J Kidney Dis. 2016 Mar;67(3):384-90. doi: 10.1053/j.ajkd.2015.07.019. Epub 2015 Aug 28.

10.

Urinary neutrophil gelatinase-associated lipocalin identifies critically ill young children with acute kidney injury following intensive care admission: a prospective cohort study.

Zwiers AJ, de Wildt SN, van Rosmalen J, de Rijke YB, Buijs EA, Tibboel D, Cransberg K.

Crit Care. 2015 Apr 21;19:181. doi: 10.1186/s13054-015-0910-0.

11.

Renal angina: an emerging paradigm to identify children at risk for acute kidney injury.

Basu RK, Chawla LS, Wheeler DS, Goldstein SL.

Pediatr Nephrol. 2012 Jul;27(7):1067-78. doi: 10.1007/s00467-011-2024-5. Epub 2011 Oct 20. Review.

12.

Assessment of Worldwide Acute Kidney Injury, Renal Angina and Epidemiology in Critically Ill Children (AWARE): A Prospective Study to Improve Diagnostic Precision.

Basu RK, Kaddourah A, Terrell T, Mottes T, Arnold P, Jacobs J, Andringa J, Armor M, Hayden L, Goldstein SL.

J Clin Trials. 2015;5(3). pii: 222. Epub 2015 Apr 17.

13.

Development of a Prediction Model of Early Acute Kidney Injury in Critically Ill Children Using Electronic Health Record Data.

Sanchez-Pinto LN, Khemani RG.

Pediatr Crit Care Med. 2016 Jun;17(6):508-15. doi: 10.1097/PCC.0000000000000750.

PMID:
27124567
14.

AKI in hospitalized children: comparing the pRIFLE, AKIN, and KDIGO definitions.

Sutherland SM, Byrnes JJ, Kothari M, Longhurst CA, Dutta S, Garcia P, Goldstein SL.

Clin J Am Soc Nephrol. 2015 Apr 7;10(4):554-61. doi: 10.2215/CJN.01900214. Epub 2015 Feb 3.

15.

A comparison of the systems for the identification of postoperative acute kidney injury in pediatric cardiac patients.

Lex DJ, Tóth R, Cserép Z, Alexander SI, Breuer T, Sápi E, Szatmári A, Székely E, Gál J, Székely A.

Ann Thorac Surg. 2014 Jan;97(1):202-10. doi: 10.1016/j.athoracsur.2013.09.014. Epub 2013 Nov 6.

PMID:
24206964
16.
17.

A pilot study of urinary fibroblast growth factor-2 and epithelial growth factor as potential biomarkers of acute kidney injury in critically ill children.

Wai K, Soler-García AA, Perazzo S, Mattison P, Ray PE.

Pediatr Nephrol. 2013 Nov;28(11):2189-98. doi: 10.1007/s00467-013-2543-3. Epub 2013 Jul 20.

18.

Incidence, risk factors and outcome of acute kidney injury in critically ill children - a developing country perspective.

Rustagi RS, Arora K, Das RR, Pooni PA, Singh D.

Paediatr Int Child Health. 2017 Feb;37(1):35-41. doi: 10.1080/20469047.2015.1120409. Epub 2016 Jan 9.

PMID:
26752169
19.

Kinetic eGFR and Novel AKI Biomarkers to Predict Renal Recovery.

Dewitte A, Joannès-Boyau O, Sidobre C, Fleureau C, Bats ML, Derache P, Leuillet S, Ripoche J, Combe C, Ouattara A.

Clin J Am Soc Nephrol. 2015 Nov 6;10(11):1900-10. doi: 10.2215/CJN.12651214. Epub 2015 Sep 4.

20.

A small post-operative rise in serum creatinine predicts acute kidney injury in children undergoing cardiac surgery.

Zappitelli M, Bernier PL, Saczkowski RS, Tchervenkov CI, Gottesman R, Dancea A, Hyder A, Alkandari O.

Kidney Int. 2009 Oct;76(8):885-92. doi: 10.1038/ki.2009.270. Epub 2009 Jul 29.

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