Optimal Initiation and Management of Dialysis Therapy

Published Online:https://doi.org/10.1287/opre.1080.0613

References

  • Alagoz O., Maillart L. M., Schaefer A. J., Roberts M. S. The optimal timing of living-donor liver transplantation. Management Sci. (2004) 50(10):1420–1430LinkGoogle Scholar
  • Altman E.Constrained Markov Decision Processes (1999) (Chapman & Hall/CRC, London) Google Scholar
  • Beddhu S., Samore M. H., Roberts M. S., Stoddard G. J., Ramkumar N., Pappas L. M., Cheung A. K. Impact of timing of initiation of dialysis on mortality. J. Amer. Soc. Nephrology (2003) 14:2305–2312CrossrefGoogle Scholar
  • Bertsekas D. P.Dynamic Programming and Optimal Control (1995) I and II(Athena Scientific, Belmont, MA) Google Scholar
  • Bertsekas D. P., Tsitsiklis J. N. An analysis of stochastic shortest path problems. Math. Oper. Res. (1991) 16(3):580–595LinkGoogle Scholar
  • Bertsekas D. P., Tsitsiklis J. N.Neuro-Dynamic Programming (1996) (Athena Scientific, Belmont, MA) Google Scholar
  • Boadway R., Bruce N.Welfare Economics (1984) (Basil Blackwell, New York) Google Scholar
  • Bonomini V., Feletti C., Scolari M. P., Stefoni S. Benefits of early initiation of dialysis. Kidney Internat. (1985) 28(17):S57–S59Google Scholar
  • Canada-USA (CANUSA) Peritoneal Dialysis Study Group Adequacy of dialysis and nutrition in continuous peritoneal dialysis: Association with clinical outcomes. J. Amer. Soc. Nephrology (1996) 7:198–207Google Scholar
  • Chadban S. J., Briganti E. M., Kerr P. G., Dunstan D. W., Welborn T. A., Zimmet P. Z., Atkins R. C. Prevalence of kidney damage in Australian adults: The AusDiab kidney study. J. Amer. Soc. Nephrology (2003) 14:S131–S138CrossrefGoogle Scholar
  • Churchill D. N. An evidence-based approach to earlier initiation of dialysis. Amer. J. Kidney Diseases (1997) 30(6):899–906CrossrefGoogle Scholar
  • David I., Yechiali U. Sequential assignment match processes with arrivals of candidates and offers. Probab. Engrg. Inform. Sci. (1990) 4(4):413–430CrossrefGoogle Scholar
  • Dranove D.What's Your Life Worth? Health Care Rationing … Who Lives? Who Dies? and Who Decides? (2003) 1st ed.(Financial Times Prentice Hall, Upper Saddle River, NJ) Google Scholar
  • Go A. S., Chertow G. M., Fan D., McCulloch C. E., Hsu C. Chronic kidney disease and the risks of death, cardiovascular events, and hospitalization. New England J. Medicine (2004) 351(13):1296–1305CrossrefGoogle Scholar
  • Gorodetskaya I., Zenios S., McCulloch C., Bostrom A., Hsu C.-Y., Bindman A. B., Go A. S., Chertow G. M. Health-related quality of life and utility in chronic kidney disease. Kidney Internat. (2005) 68(6):2801–2808CrossrefGoogle Scholar
  • Harnett J. D., Foley R. N., Kent G. M., Barre P. E., Murray D., Parfrey P. S. Congestive heart failure in dialysis patients: Prevalence, incidence, prognosis and risk factors. Kidney Internat. (1995) 47(3):884–890CrossrefGoogle Scholar
  • Hastie T., Tibshirani R., Friedman J.The Elements of Statistical Learning (2001) (Springer-Verlag, New York) CrossrefGoogle Scholar
  • Heaf J. G., Lokkegaard H., Madsen M. Initial survival advantage of peritoneal dialysis relative to hemodialysis. Nephrology Dialysis Transplantation (2002) 17:112–117CrossrefGoogle Scholar
  • Horinek A., Misra M. Does residual renal function decline more rapidly in hemodialysis than in peritoneal dialysis? How good is the evidence? Adv. Peritoneal Dialysis (2004) 20:137–140Google Scholar
  • Jewell W. S. Markov renewal programming I: Finite return models. Oper. Res. (1963) 11(6):938–948LinkGoogle Scholar
  • Korevaar J. C., Jansen M. A. M., Dekker F. W., Jager K. J., Boeschoten E. W., Krediet R. T., Bossuyt P. M. M. When to initiate dialysis: Effect of proposed US guidelines on survival. The Lancet (2001) 358:1046–1050CrossrefGoogle Scholar
  • Lang S. M., Bergner A., Topfer M., Schiffl H. Preservation of residual renal function in dialysis patients: Effects of dialysis-technique-related factors. Peritoneal Dialysis Internat. (2001) 21:52–57Google Scholar
  • Ledebo I., Kessler M., van Biesen W., Wanner C., Wiecek A., Prichard S., Argilés A., Ritz E. Initiation of dialysis—Opinions from an international survey: Report on the Dialysis Opinion Symposium at the ERA-EDAT Congress, 18 September 2000, Nice. Nephrology Dialysis Transplantation (2001) 16:1132–1138CrossrefGoogle Scholar
  • Lee C. P., Zenios S. A. A shadow price framework for quantifying health care demand, spending and disparity. (2007) . Under reviewGoogle Scholar
  • Lee C. P., Chertow G. M., Zenios S. A. A simulation model to estimate the cost and effectiveness of alternative dialysis initiation strategies. Medical Decision Making (2006) 26(5):535–549CrossrefGoogle Scholar
  • Lee C. P., Chertow G. M., Zenios S. A. An empiric estimate of the value of life: Updating the renal dialysis cost-effeciveness standard. Value in Health (2008) . ForthcomingGoogle Scholar
  • McClellan W. M., Knight D. F., Karp H., Brown W. W. Early detection and treatment of renal disease in hospitalized diabetic and hypertensive patients: Important difference between practice and published guidelines. Amer. J. Kidney Diseases (1997) 29:368–375CrossrefGoogle Scholar
  • Mehrotra R., Nolph K. D., Gotch F. Early initiation of chronic dialysis: Role of incremental dialysis. Peritoneal Dialysis Internat. (1997) 17:426–430Google Scholar
  • National Kidney Foundation NKF-K/DOQI clinical practice guidelines for peritoneal dialysis adequacy: Update 2000. Amer. J. Kidney Diseases (2001) 37(1):S65–S136Google Scholar
  • Ozgen H., Ozcan Y. A. Longitudinal analysis of efficiency in multiple output dialysis markets. Health Care Management Sci. (2004) 7(4):253–262CrossrefGoogle Scholar
  • Pastan S., Bailey J. Dialysis therapy. New England J. Medicine (1998) 338:1428–1437CrossrefGoogle Scholar
  • Rebollo P., Ortega F., Baltar J. M., Alvarez-Ude F., Alvarez Navascues R., Alvarez-Grande J. Is the loss of health-related quality of life during renal replacement therapy lower in elderly patients than in younger patients? Nephrology Dialysis Transplantation (2001) 16:1675–1680CrossrefGoogle Scholar
  • Shechter S. M., Bailey M. D., Schaefer A. J., Roberts M. S. The optimal time to initiate HIV therapy under ordered health states. Oper. Res. (2008) 56(1):20–33LinkGoogle Scholar
  • Stevens L. A., Levey A. S. Frequently asked questions about GFR estimates. (2004) . Technical report, The National Kidney Foundation, New YorkGoogle Scholar
  • Su X., Zenios S. A., Chertow G. M. Incorporating recipient choice in kidney transplantation. J. Amer. Soc. Nephrology (2004) 15:1656–1663CrossrefGoogle Scholar
  • Sutton R. S. Learning to predict by the methods of temporal differences. Machine Learning (1988) 3:9–44CrossrefGoogle Scholar
  • Sutton R. S., Barto A. G.Reinforcement Learning: An Introduction (1998) (MIT Press, Cambridge, MA) Google Scholar
  • United States Renal Data System (2003) . USRDS 2003 Annual Data Report, National Institute of Diabetes and Digestive and Kidney Diseases, MinneapolisGoogle Scholar
  • Widrow B., Hoff M. E. Adaptive switching circuits. (1960) (Institute of Radio Engineers, Los Angeles) 96–104Institute of Radio Engineers, Western Electronic Show and Convention, Convention Record, Part 4Google Scholar
  • Zenios S. A., Fuloria P. C. Managing the delivery of dialysis therapy: A multiclass fluid model analysis. Management Sci. (2000) 46:1317–1336LinkGoogle Scholar
  • Zenios S. A., Chertow G. M., Wein L. M. Dynamic allocation of kidneys to candidates on the transplant waiting list. Oper. Res. (2000) 48(4):549–569LinkGoogle Scholar
  • Zenios S. A., Wein L. M., Chertow G. M. Evidence-based organ allocation. Amer. J. Medicine (1999) 107:52–61CrossrefGoogle Scholar
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