The Microstructure of Work: Understanding Productivity Benefits and Costs of Interruptions

Published Online:https://doi.org/10.1287/msom.2021.1053

References

  • Avgerinos E, Gokpinar B (2018) Task variety in professional service work: When it helps and when it hurts. Production Oper. Management 27(7):1368–1389.CrossrefGoogle Scholar
  • Baird B, Smallwood J, Mrazek MD, Kam JW, Franklin MS, Schooler JW (2012) Inspired by distraction: Mind wandering facilitates creative incubation. Psych. Sci. 23(10):1117–1122.CrossrefGoogle Scholar
  • Bandiera O, Barankay I, Rasul I (2010) Social incentives in the workplace. Rev. Econom. Stud. 77(2):417–458.CrossrefGoogle Scholar
  • Barron E, Riby LM, Greer J, Smallwood J (2011) Absorbed in thought: The effect of mind wandering on the processing of relevant and irrelevant events. Psych. Sci. 22(5):596–601.CrossrefGoogle Scholar
  • Binnewies C, Sonnentag S, Mojza EJ (2009) Daily performance at work: Feeling recovered in the morning as a predictor of day-level job performance. J. Organ. Behav. 30(1):67–93.CrossrefGoogle Scholar
  • Boudreau J, Hopp W, McClain JO, Thomas LJ (2003) On the interface between operations and human resources management. Manufacturing Service Oper. Management 5(3):179–202.LinkGoogle Scholar
  • Cai X, Gong J, Lu Y, Zhong S (2018) Recover overnight? Work interruption and worker productivity. Management Sci. 64(8):3489–3500.LinkGoogle Scholar
  • Chiu HN, Chen HM, Weng LC (2003) Deterministic time-varying demand lot-sizing models with learning and forgetting in setups and production. Production Oper. Management 12(1):120–127.CrossrefGoogle Scholar
  • Clark JR, Huckman RS, Staats BR (2013) Learning from customers: Individual and organizational effects in outsourced radiological services. Organ. Sci. 24(5):1539–1557.LinkGoogle Scholar
  • Csikszentmihalyi M (2000) Beyond Boredom and Anxiety (Jossey-Bass, San Francisco).Google Scholar
  • Csikszentmihalyi M, Sawyer K (2014) Creative Insight: The Social Dimension of a Solitary Moment. The Systems Model of Creativity (Springer, Dordrecht), 73–98. https://link.springer.com/chapter/10.1007/978-94-017-9085-7_7.Google Scholar
  • Cunha MPE, Clegg SR, Kamoche K (2006) Surprises in management and organization: Concept, sources and a typology. British J. Management 17(4):317–329.CrossrefGoogle Scholar
  • Czerwinski M, Horvitz E, Wilhite S (2004) A diary study of task switching and interruptions. CHI '04 Proc. SIGCHI Conf. Human Factors Comput. Systems, 175–182.CrossrefGoogle Scholar
  • Dai H, Milkman KL, Hofmann DA, Staats BR (2015) The impact of time at work and time off from work on rule compliance: The case of hand hygiene in healthcare. J. Appl. Psych. 100(3):846–862.CrossrefGoogle Scholar
  • Demerouti E, Bakker AB, De Jonge J, Janssen PP, Schaufeli WB (2001) Burnout and engagement at work as a function of demands and control. Scandinavian J. Work Environment Health. 27(4):279–286.CrossrefGoogle Scholar
  • Diwas K (2020) Worker Productivity in Operations Management. Foundations and Trendss® in Technology, Information and Operations Management, vol. 13. (now Publishers inc., Boston), 151–249. http://dx.doi.org/10.1561/0200000095.Google Scholar
  • Dobson G, Tezcan T, Tilson V (2013) Optimal workflow decisions for investigators in systems with interruptions. Management Sci. 59(5):1125–1141.LinkGoogle Scholar
  • Elsbach KD, Hargadon AB (2006) Enhancing creativity through “mindless” work: A framework of workday design. Organ. Sci. 17(4):470–483.LinkGoogle Scholar
  • Fisherl CD (1993) Boredom at work: A neglected concept. Human Relations 46(3):395–417.CrossrefGoogle Scholar
  • Freeman M, Savva N, Scholtes S (2017) Gatekeepers at work: An empirical analysis of a maternity unit. Management Sci. 63(10):3147–3167.LinkGoogle Scholar
  • Fritz C, Sonnentag S (2006) Recovery, well-being, and performance-related outcomes: The role of workload and vacation experiences. J. Appl. Psych. 91(4):936–945.CrossrefGoogle Scholar
  • Fritz C, Sonnentag S, Spector PE, McInroe JA (2010) The weekend matters: Relationships between stress recovery and affective experiences. J. Organ. Behav. 31(8):1137–1162.CrossrefGoogle Scholar
  • Froehle CM, White DL (2014) Interruption and forgetting in knowledge-intensive service environments. Production Oper. Management 23(4):704–722.CrossrefGoogle Scholar
  • Gillie T, Broadbent D (1989) What makes interruptions disruptive? A study of length, similarity, and complexity. Psych. Res. 50(4):243–250.CrossrefGoogle Scholar
  • Gino F, Pisano G (2008) Toward a theory of behavioral operations. Manufacturing Service Oper. Management 10(4):676–691.LinkGoogle Scholar
  • Gurvich I, O’Leary KJ, Wang L, Van Mieghem JA (2020) Collaboration, interruptions, and changeover times: Workflow model and empirical study of hospitalist charting. Manufacturing Service Oper. Management 22(4):754–774.LinkGoogle Scholar
  • Henning HA, Sauter SL, Salvendy G, Krieg EF Jr (1989) Microbreak length, performance, and stress in a data entry task. Ergonomics 32:855–864.Google Scholar
  • Hunter EM, Wu C (2016) Give me a better break: Choosing workday break activities to maximize resource recovery. J. Appl. Psych. 101(2):302–311.CrossrefGoogle Scholar
  • Ibanez MR, Clark JR, Huckman RS, Staats BR (2018) Discretionary task ordering: Queue management in radiological services. Management Sci. 64(9):4389–4407.LinkGoogle Scholar
  • Jett QR, George JM (2003) Work interrupted: A closer look at the role of interruptions in organizational life. Acad. Management Rev. 28(3):494–507.CrossrefGoogle Scholar
  • KC DS (2014) Does multitasking improve performance? Evidence from the emergency department. Manufacturing Service Oper. Management 16(2):168–183.LinkGoogle Scholar
  • KC DS, Staats BR, Kouchaki M, Gino F (2020) Task selection and workload: A focus on completing easy tasks hurts performance. Management Sci. 66(10):4397–4416.LinkGoogle Scholar
  • Kleinbaum DG, Klein M (2010) Survival Analysis (Springer, New York). https://link.springer.com/book/10.1007%2F978-1-4419-6646-9#about.Google Scholar
  • Kuntz L, Mennicken R, Scholtes S (2015) Stress on the ward: Evidence of safety tipping points in hospitals. Management Sci. 61(4):754–771.LinkGoogle Scholar
  • Leonard-Barton D, Swap WC (1999) When Sparks Fly: Igniting Creativity in Groups (Harvard Business Press, Boston).Google Scholar
  • Leroy S (2009) Why is it so hard to do my work? The challenge of attention residue when switching between work tasks. Organ. Behav. Human Decision Processes 109(2):168–181.CrossrefGoogle Scholar
  • Leroy S, Glomb TM (2018) Tasks interrupted: How anticipating time pressure on resumption of an interrupted task causes attention residue and low performance on interrupting tasks and how a “ready-to-resume” plan mitigates the effects. Organ. Sci. 29(3):380–397.LinkGoogle Scholar
  • Leroy S, Schmidt AM (2016) The effect of regulatory focus on attention residue and performance during interruptions. Organ. Behav. Human Decision Processes 137:218–235.CrossrefGoogle Scholar
  • Leroy S, Schmidt AM, Madjar N (2020) Interruptions and task transitions: Understanding their characteristics, processes, and consequences. Acad. Management Ann. 14(2):661–694.CrossrefGoogle Scholar
  • Lewin K (2013) A Dynamic Theory of Personality-Selected Papers (McGraw Hill, New York). https://books.google.com/books?id=qDl9CgAAQBAJ&dq=A+Dynamic+Theory+of+Personality-Selected+Papers&lr=&source=gbs_navlinks_s.Google Scholar
  • Luo J, Kulkarni VG, Ziya S (2012) Appointment scheduling under patient no-shows and service interruptions. Manufacturing Service Oper. Management 14(4):670–684.LinkGoogle Scholar
  • Madiedo JP, Chandrasekaran A, Salvador F (2020) Capturing the benefits of worker specialization: Effects of managerial and organizational task experience. Production Oper. Management 29(4):973–994.CrossrefGoogle Scholar
  • Mas A, Moretti E (2009) Peers at work. Amer. Econom. Rev. 99(1):112–145.CrossrefGoogle Scholar
  • Muraven M, Baumeister RF (2000) Self-regulation and depletion of limited resources: Does self-control resemble a muscle? Psych. Bull. 126(2):247–259.CrossrefGoogle Scholar
  • Narayanan S, Balasubramanian S, Swaminathan JM (2009) A matter of balance: Specialization, task variety, and individual learning in a software maintenance environment. Management Sci. 55(11):1861–1876.LinkGoogle Scholar
  • Pang G, Whitt W (2009) Service interruptions in large-scale service systems. Management Sci. 55(9):1499–1512.LinkGoogle Scholar
  • Parke MR, Weinhardt JM, Brodsky A, Tangirala S, DeVoe SE (2018) When daily planning improves employee performance: The importance of planning type, engagement, and interruptions. J. Appl. Psych. 103(3):300–312.CrossrefGoogle Scholar
  • Puranik H, Koopman J, Vough HC (2020) Pardon the interruption: An integrative review and future research agenda for research on work interruptions. J. Management 46(6):806–842.CrossrefGoogle Scholar
  • Ramdas K, Saleh K, Stern S, Liu H (2018) Variety and experience: Learning and forgetting in the use of surgical devices. Management Sci. 64(6):2590–2608.LinkGoogle Scholar
  • Roy DF (1960) Banana time: Job satisfaction and informal interaction. Human Organ. 18(4):158–168.CrossrefGoogle Scholar
  • Schaufeli WB, Bakker AB (2004) Job demands, job resources, and their relationship with burnout and engagement: A multi-sample study. J. Organ. Behav. 25(3):293–315.Google Scholar
  • Schultz KL, McClain JO, Thomas LJ (2003) Overcoming the dark side of worker flexibility. J. Oper. Management 21(1):81–92.CrossrefGoogle Scholar
  • Smunt TL, Meredith J (2000) A comparison of direct cost savings between flexible automation and labor with learning. Production Oper. Management 9(2):158–170.CrossrefGoogle Scholar
  • Spira JB, Feintuch JB (2005) The cost of not paying attention: How interruptions impact knowledge worker productivity. Report from Basex. https://iorgforum.org/research-paper/the-cost-of-not-paying-attention-how-interruptions-impact-knowledge-worker-productivity/.Google Scholar
  • Staats BR, Gino F (2012) Specialization and variety in repetitive tasks: Evidence from a Japanese bank. Management Sci. 58(6):1141–1159.LinkGoogle Scholar
  • Stock J, Yogo M (2005) Testing for weak instruments in linear IV regression. Andrews DWK, ed. Identification and Inference for Econometric Models (Cambridge University Press, New York), 80–108.Google Scholar
  • Sun X, Whitt W (2018) Creating work breaks from available idleness. Manufacturing Service Oper. Management 20(4):721–736.LinkGoogle Scholar
  • Tan TF, Netessine S (2014) When does the devil make work? An empirical study of the impact of workload on worker productivity. Management Sci. 60(6):1574–1593.LinkGoogle Scholar
  • Tan TF, Netessine S (2019) When you work with a superman, will you also fly? An empirical study of the impact of coworkers on performance. Management Sci. 65(8):3495–3517.LinkGoogle Scholar
  • Terza JV (2018) Two-stage residual inclusion estimation in health services research and health economics. Health Services Res. 53(3):1890–1899.CrossrefGoogle Scholar
  • Terza JV, Basu A, Rathouz PJ (2008) Two-stage residual inclusion estimation: Addressing endogeneity in health econometric modeling. J. Health Econom. 27(3):531–543.CrossrefGoogle Scholar
  • Teyarachakul S, Chand S, Ward J (2011) Effect of learning and forgetting on batch sizes. Production Oper. Management 20(1):116–128.CrossrefGoogle Scholar
  • Tiwari P, Gite L (2006) Evaluation of work-rest schedules during operation of a rotary power tiller. Internat. J. Indust. Ergonomics 36(3):203–210.CrossrefGoogle Scholar
  • Trougakos JP, Hideg I, Cheng BH, Beal DJ (2014) Lunch breaks unpacked: The role of autonomy as a moderator of recovery during lunch. Acad. Management J. 57(2):405–421.CrossrefGoogle Scholar
  • Tucker P (2003) The impact of rest breaks upon accident risk, fatigue and performance: A review. Work Stress 17(2):123–137.CrossrefGoogle Scholar
  • Tucker AL, Spear SJ (2006) Operational failures and interruptions in hospital nursing. Health Services Res. 41(3):643–662.CrossrefGoogle Scholar
  • Wickens CD, Hollands JG (2000) Engineering Psychology and Human Performance. 3rd ed. (Prentice Hall, Upper Saddle River, NJ), 439–479.Google Scholar
  • Wooldridge JM (2010) Econometric Analysis of Cross Section and Panel Data (MIT Press).Google Scholar
  • Wooldridge JM (2015) Control function methods in applied econometrics. J. Human Resources 50(2):420–445.CrossrefGoogle Scholar
  • Zacher H, Brailsford HA, Parker SL (2014) Micro-breaks matter: A diary study on the effects of energy management strategies on occupational well-being. J. Vocational Behav. 85(3):287–297.CrossrefGoogle Scholar
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