Page 122 - Exploring the Potential of Self-Monitoring Kidney Function After Transplantation - Céline van Lint
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Chapter 5
23. Kaden, J., et al., Factors impacting short and long-term kidney graft survival: modification by single intra-operative -high-dose induction with ATG-Fresenius. Ann Transplant, 2011. 16(4): p. 81-91.
24. Kasiske, B.L., et al., Hypertension after kidney transplantation. Am J Kidney Dis, 2004. 43(6): p. 1071-81.
25. McDonald, S., et al., Kidney transplant rejection in Australia and New Zealand: relationships between rejection and graft outcome. Am J Transplant, 2007. 7(5): p. 1201-8.
26. Opelz, G. and B. Dohler, Influence of time of rejection on long-term graft survival in renal transplantation. Transplantation, 2008. 85(5): p. 661-6.
27. van Lint, C.L., et al., Patient experiences with self-monitoring renal function after renal transplantation: results from a single-center prospective pilot study. Patient.Prefer.Adherence., 2015. 9: p. 1721-1731.
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30. Petkov, J., P. Harvey, and M. Battersby, The internal consistency and construct validity of the partners in health scale: validation of a patient rated chronic condition self-management measure. Qual.Life Res., 2010. 19(7): p. 1079-1085.
31. Nguyen, T.D., C.C. Attkisson, and B.L. Stegner, Assessment of patient satisfaction: development and refinement of a service evaluation questionnaire. Eval.Program.Plann., 1983. 6(3-4): p. 299-313.
32. Shephard, M., et al., Assessment of the Nova StatSensor whole blood point-of-care creatinine analyzer for the measurement of kidney function in screening for chronic kidney disease. Clin Chem Lab Med, 2010. 48(8): p. 1113-9.
33. Straseski, J.A., et al., Investigating interferences of a whole-blood point-of-care creatinine analyzer: comparison to plasma enzymatic and definitive creatinine methods in an acute-care setting. Clin Chem, 2011. 57(11): p. 1566-73.






















































































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