A Comparison of Traditional and Open-Access Policies for Appointment Scheduling

Published Online:https://doi.org/10.1287/msom.1090.0270

References

  • Cayirli T., Veral E. Outpatient scheduling in health care: A review of literature. Production Oper. Management (2003) 12(4):519–549CrossrefGoogle Scholar
  • Cayirli T., Veral E., Rosen H. Designing appointment scheduling systems for ambulatory care services. Health Care Management Sci. (2006) 9(1):47–58CrossrefGoogle Scholar
  • Chen R. Appointment scheduling under unpunctual arrivals. (2007) . Working paper, Graduate School of Management, University of California at Davis, DavisGoogle Scholar
  • Denton B. T., Gupta D. A sequential bounding approach for optimal appointment scheduling. IIE Trans. (2003) 35(11):1003–1016CrossrefGoogle Scholar
  • Dobson G., Hasija S., Pinker E. J. Reserving capacity for urgent cases in primary care. (2006) . Working paper, Simon School of Business, University of Rochester, Rochester, NYGoogle Scholar
  • Fetter R. B., Thompson J. D. Patients' waiting time and doctors' idle time in the outpatient setting. Health Services Res. (1966) 1(1):66–90Google Scholar
  • Galucci G., Swartz W., Hackerman F. Impact of the wait for an initial appointment on the rate of kept appointments at a mental health center. Psychiatric Services (2005) 56(3):344–346CrossrefGoogle Scholar
  • Grandinetti D. A. You mean I can see the doctor today? Medical Econom. (2000) 77(6):102–114Google Scholar
  • Green L. V., Savin S. Reducing delays for medical appointments: A queueing model. Oper. Res. (2008) 56(6):1526–1538LinkGoogle Scholar
  • Green L. V., Savin S., Murray M. Providing timely access to care: What is the right patient panel size? Joint Commission J. Quality Patient Safety (2007) 33(4):211–218CrossrefGoogle Scholar
  • Hassin R., Mendel S. Scheduling arrivals to queues: A single-server model with no-shows. Management Sci. (2008) 54(3):565–572LinkGoogle Scholar
  • Hixon A. L., Chapman R. W., Nuovo J. Failure to keep clinic appointments: Implications for residency education and productivity. Family Medicine (1999) 31(9):627–630Google Scholar
  • Ho C.-J., Lau H.-S. Minimizing total cost in scheduling outpatient appointments. Management Sci. (1992) 38(12):1750–1764LinkGoogle Scholar
  • Ho C.-J., Lau H.-S. Evaluating the impact of operating conditions on the performance of appointment scheduling rules in service systems. Eur. J. Oper. Res. (1997) 112(3):542–553CrossrefGoogle Scholar
  • Jansson B. Choosing a good appointment system—A study of queues of the type (D, M, 1). Oper. Res. (1966) 14(2):292–312LinkGoogle Scholar
  • Kaandorp G., Koole G. Optimal outpatient appointment scheduling. Health Care Management Sci. (2007) 10(3):217–229CrossrefGoogle Scholar
  • LaGanga L. R., Lawrence S. R. An appointment overbooking model to improve client access and provider productivity. Proc. New Challenges Service Oper., POMS College Service Oper., EurOMA (2007a) LondonGoogle Scholar
  • LaGanga L. R., Lawrence S. R. Clinic overbooking to improve patient access and increase provider productivity. Decision Sci. (2007b) 38(2):251–276CrossrefGoogle Scholar
  • Mercer A. A queuing problem in which the arrival times of the customers are scheduled. J. Roy. Statist. Soc. Ser. B (1960) 22(1):108–113Google Scholar
  • Mercer A. Queues with scheduled arrivals: A correction, simplification and extension. J. Roy. Statist. Soc. Ser. B (1973) 35(1):104–116Google Scholar
  • Moore C. G., Wilson-Witherspoon P., Probst J. C. Time and money: Effects of no-shows at a family practice residency clinic. Family Medicine (2001) 33(7):522–527Google Scholar
  • Mondschein S. V., Weintraub G. Y. Appointment policies in service operations: A critical analysis of the economic framework. Production Oper. Management (2003) 12(2):266–286CrossrefGoogle Scholar
  • Murray M., Berwick D. M. Advance access: Reducing waiting and delays in primary care. J. Amer. Medical Assoc. (2003) 289(8):1035–1039CrossrefGoogle Scholar
  • Murray M., Tantau C. Same-day appointments: Exploding the access paradigm. Family Practice Management (2000) 7(September):45–50Google Scholar
  • Muthuraman K., Lawley M. A stochastic overbooking model for outpatient clinical scheduling with no-shows. IIE Trans. (2008) 40(9):820–837CrossrefGoogle Scholar
  • O'Brien G., Lazebnik R. Telephone call reminders and attendance in an adolescent clinic. Pediatrics (1998) 101(6):e6CrossrefGoogle Scholar
  • Pegden C. D., Rosenshine M. Scheduling arrivals to queues. Comput. Oper. Res. (1990) 17(4):343–348CrossrefGoogle Scholar
  • Pesata V., Palliga G., Webb A. A. A descriptive study of missed appointments: Families' perceptions of barriers to care. J. Pediatric Health Care (1999) 13(4):178–182CrossrefGoogle Scholar
  • Qu X., Rardin R. L., Williams J. A. A., Willis D. R. Matching daily healthcare provider capacity to demand in advanced access scheduling systems. Eur. J. Oper. Res. (2007) 183(2):812–826CrossrefGoogle Scholar
  • Robinson L. W., Chen R. Scheduling doctors' appointments: Optimal and empirically-based heuristic policies. IIE Trans. (2003) 35(3):295–307CrossrefGoogle Scholar
  • Rust C. T., Gallups N. H., Clark W. S., Jones D. S., Miller W. D. Patient appointment failures in pediatric resident continuity clinics. Arch. Pediatrics Adolescent Medicine (1995) 149(6):693–695CrossrefGoogle Scholar
  • Shuster M. Advanced-access scheduling in primary care. J. Amer. Medical Assoc. (2003) 290(3):332–333CrossrefGoogle Scholar
  • Soriano A. Comparison of two scheduling systems. Oper. Res. (1966) 14(3):388–397LinkGoogle Scholar
  • Steinbauer J. R., Korell K., Erdin J., Spann S. J. Implementing open-access scheduling in an academic practice. Family Practice Management (2006) 13(3):59–64Google Scholar
  • Ulmer T., Troxler C. The economic cost of missed appointments and the open access system. (2006) . Working paper, University of Florida Area Health Education Centers Program, GainesvilleGoogle Scholar
  • Vissers J. Selecting a suitable appointment system in an outpatient setting. Medical Care (1979) 17(12):1207–1220CrossrefGoogle Scholar
  • Vissers J., Wijngaard J. The outpatient appointment system: Design of a simulation study. Eur. J. Oper. Res. (1979) 3(6):459–463CrossrefGoogle Scholar
  • Wang P. P. Static and dynamic scheduling of customer arrivals to a single-server system. Naval Res. Logist. (1993) 40(3):345–360CrossrefGoogle Scholar
  • Wang P. P. Optimally scheduling N customer arrival times for a single-server system. Comput. Oper. Res. (1997) 24(8):703–716CrossrefGoogle Scholar
  • Weiss E. N. Models for determining estimated start times and case orderings in hospital operating rooms. IIE Trans. (1990) 22(2):143–150CrossrefGoogle Scholar
  • Xakellis G. C., Bennett A. Improving clinic efficiency of a family medicine teaching clinic. Family Medicine (2001) 33(7):533–538Google Scholar
  • Zeng B., Turkcan A., Lin J., Lawley M. Clinic scheduling models with overbooking for patients with heterogeneous no-show probabilities. Ann. Oper. Res. (2009) . ePub ahead of print June 12Google Scholar
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