Cite

Bantoft C., Summers M.J., Tranent P.J., Palmer M.A., Cooley P.D., Pedersen S.J. (2016) Effect of Standing or Walking at a Workstation on Cognitive Function: A Randomized Counterbalanced Trial. Hum. Factors Erg. Soc., 58: 140–149. DOI: 10.1177/0018720815605446. Search in Google Scholar

Beers E.A., Roemmich J.N., Epstein L.H., Horvath P.J. (2008) Increasing passive energy expenditure during clerical work. Eur. J. Appl. Physiol., 103: 353–360. DOI: 10.1007/s00421-008-0713-y. Search in Google Scholar

Biernacki M., Bicka M., Tarnowski A. (2007) Teoretyczne i metodologiczne problemy badania obciążenia na przykładzie metody subiektywnego obciążenia pracą. Polski Przegląd Medycyny Lotniczej. 13: 465-479. Search in Google Scholar

Byström P., Hanse J.J., Kjellberg A. (2004) Appraised psychological workload, musculoskeletal symptoms, and the mediating effect of fatigue: A structural equation modeling approach. Scand. J. Psychol., 45: 331–341. DOI: 10.1111/j.1467-9450.2004.00413.x. Search in Google Scholar

Chambers A.J., Robertson M.M., Baker N.A. (2019) The effect of sit-stand desks on office worker behavioral and health outcomes: A scoping review. Appl. Ergon., 78: 37–53. DOI: 10.1016/j.apergo.2019.01.015. Search in Google Scholar

Church T.S., Thomas D.M. Tudor Locke C., Katzmarzyk P.T., Earnest C.P., Rodarte R.Q., Martin C.K., Blair S.N., Bouchard C. (2011) Trends over 5 decades in U.S. occupation-related physical activity and their associations with obesity. PlosONE, 26: 1–7. DOI: 10.1371/journal.pone.0019657. Search in Google Scholar

Ciechanowicz A., Stańczak J. (2006) Testy Uwagi i Spostrzegawczości TUS. Podręcznik. Pracownia Testów Psychologicznych, Warszawa. Search in Google Scholar

Commissaris D., Könemann R., Hiemstra-van Mastrigt, Burford E.M., Botter J., Douwes M., Ellegast R.P. (2014) Effects of standing at three dynamic Workstation on computer task performance and cognitive function tests. Appl. Ergon., 25: 1570–1578. DOI: 10.1016/j. apergo.2014.05.003. Search in Google Scholar

Crane M., Cobbold A., Beck M., Nau T., Standen C., Rissel C., Smith B.J., Greaves S., Bellew W., Bauman A. (2022) Interventions Designed to Support Physical Activity and Disease Prevention for Working from Home: A Scoping Review. Int. J. Environ. Res. Public Health, 20(1): 73. DOI: 10.3390/ijerph20010073. Search in Google Scholar

Dempsey P.C., Owen N., Biddle S.J., Dunstan D.W. (2014) Managing sedentary behavior to reduce the risk of diabetes and cardiovascular disease. Curr. Diabetes Rep., 14: 522. DOI: 10.1007/s11892-014-0522-0. Search in Google Scholar

Drury C.G., Hsiao Y.L., Joseph C., Joshi S., Lapp J., Pennathur P.R. (2008) Posture and performance: sitting vs. standing for security screening. Ergonomics, 51: 290–307. DOI: 10.1080/00140130701628790. Search in Google Scholar

Ghesmaty Sangachin M., Gustafson W.W., Cavuoto L.A. (2016) Effect of active workstation use on workload, task performance, and postural and physiological responses. IISE Trans. Occup. Ergon. Hum. Factors, 4(1): 67–81. DOI: 10.1080/21577323.2016.1184196. Search in Google Scholar

Hart S.G. (2006) Nasa-Task Load Index (NADA-TLX); 20 years later. Proc. Hum. Factors Ergon. Soc. 50th Annu. Meet. 904–908. Search in Google Scholar

Hasegawa T., Inoue K., Tsutsue O., Kumashiro M. (2001) Effects of a sit-stand schedule on a light repetitive task. Int. J. Ind. Ergon, 28: 219-224. Search in Google Scholar

Hedge A., Ray E. (2004) Effects of an electronic heightadjustableworksurface on computer worker musculoskeletal discomfort and productivity. Proc. Hum Factors Ergon. Soc. Annu. Meet. 48(8): 1091–1095. Search in Google Scholar

Hockey G.R.J., Earle F. (2006) Control over the scheduling of simulated office work reduce the impact of workload on mental fatigue and task performance. J. Exp. Psychol. Appl., 12(1): 50–65. DOI: 10.1037/1076-898-X.12.1.50. Search in Google Scholar

Honda T., Chen S., Yonemoto K., Kishimoto H., Chen T., Narazaki K., Haeuchi Y., Kumagai S. (2016) Sedentary bout durations and metabolic syndrome among working adults: a prospective cohort study. BMC Public Health, 16: 888, DOI: 10.1186/s12889-016-3570-3. Search in Google Scholar

Husemann B., Von Mach C.Y., Borsotto D., Zepf K.I., Scharnbacher J. (2009) Comparisons ofmusculoskeletal complaints and data entry between a sitting and a sit– standworkstation paradigm. Hum. Factors, 51: 310–320. DOI: 10.1177/0018720809338173. Search in Google Scholar

John D., Bassett D., Thompson D., Fairbrother J., Baldwin D. (2009) Effects of using a treadmill workstation on performance of simulated office work tasks. J. Phys. Act. Health, 6: 617–624. Search in Google Scholar

Júdice P.B., Hamilton M.T., Sardinha L.B., Zderic T.W., Silva A.N. (2016) What is the metabolic energy cost of sitting, standing and sit/stand transitions? Eur. J. Appl. Physiol., 116: 263–273. DOI: 10.1007/s00421-015-3279-5. Search in Google Scholar

Koren K., Pišot R., Šimunič B. (2016) Active workstation allows office workers to work efficiently while sitting and exercising moderately. Appl. Ergon., 59: 83–89, DOI: 10.1016/j.apergo.2015.11.013. Search in Google Scholar

MacEwen B.T., MacDonald D.J., Burr J.F. (2015) A systematic review of standing and treadmill desks in the workplace. Prev. Med., 70: 50–58. DOI: 10.1016/j. ypmed.2014.11.011. Search in Google Scholar

Poutafkand F., Marefati H. Taherichadorneshin H. (2020) A Comparison of the Effects of Resistance and Endurance Training Protocols on Serum Irisin Level and Alkaline Phosphatase Activity in Sedentary Obese Women. Polish J. Sport Tour., 27(4): 23–28. DOI: 10.2478/pjst-2020-0023. Search in Google Scholar

Proskura P., Sobera M. (2019) Lumbar Lordosis, Pain Intensity and Type of Work in Women Participating in Fitness Activities. Polish J. Sport Tour., 26(4): 22–27. DOI: 10.2478/pjst-2019-0022. Search in Google Scholar

Putsa B., Jalayondeja W., Mekhora K., Bhuanantanondh P., Jalayondeja C. (2022) Factors associated with reduced risk of musculoskeletal disorders among office workers: a cross-sectional study 2017 to 2020. BMC Public Health, 22(1): 1503. DOI: 10.1186/s12889-022-13940-0. Search in Google Scholar

Rostami M., Razeghi M., Daneshmandi H., Hassanzadeh J., Choobineh A. (2022) Cognitive and skill performance of individuals at sitting versus standing workstations: a quasi-experimental study. Int. J. Occup. Saf. Ergon., 28(1): 544–554. DOI: 10.1080/10803548.2020.1806565. Search in Google Scholar

Russell B.A., Summers M.J., Tranent P.J., Palmer M.A. (2016) A randomized control trial of the cognitive effects of working in a seated as opposed to a standing position in office workers. Ergonomics,. 59: 737–744. DOI: 10.1080/00140139.2015.1094579. Search in Google Scholar

Samani A., Holtermann A., Søgaard K., Madelaine P. (2009) Active pauses induce more variable electromyographic pattern of the trapezius muscle activity during computer work. J. Electromyogr. Kinesiol., 19: 430-437. DOI: 10.1016/j.clinbiomech.2009.05.011. Search in Google Scholar

Schwartz B., Jay M., Kapellusch A., Wessner B. (2019) Medium-term effects of a two-desk sit/stand workstation on cognitive performance and workload for healthy people performing sedentary work: a secondary analysis of a randomised controlled trial. Ergonomics, 62: 794–810. DOI: 10.1080/00140139.2019.1577497. Search in Google Scholar

Schwartz B., Kapellusch J.M., Schrempf A., Probst K., Haller M., Baca A. (2018) Effect of alternating postures on cognitive performance for healthy people performing sedentary work. Ergonomics, 61(6): 778–795, DOI: 10.1080/00140139.2017.1417642. Search in Google Scholar

Schwartz B., Kapellusch J.M., Schrempf A., Probst K., Haller M., Baca A. (2016) Effect of a novel two-desks sit-to-stand workplace (ACTIVE OFFICE) on sitting time, performance and physiological parameters: Protocol of a randomized control trial. BMC Public Health, 16: 578. DOI: 10.1186/s12889-016-3271-y. Search in Google Scholar

Sonnentag S., Zijlstra F.R.H. (2006) Job characteristics and off-job activities as predictors of need for recovery, well-being, and fatigue. J. Appl. Psychol., 91(2): 330–350. DOI: 10.1037/0021-9010.91.2.330. Search in Google Scholar

Torbeyns T., Bailey S., Bos I., Meeusen R. (2014) Active workstations to fight sedentary behaviour. Sports Med., 44: 1261–1273. DOI: 10.1007/s40279-014-0202-x. Search in Google Scholar

Van der Ploeg H.P. (2012) Sitting time and all-cause mortality risk in 222497 Australian adults. Arch. Inter. Med., 172: 494. DOI: 10.1001/archinternmed.2011.2174. Search in Google Scholar

World Health Organisation: Organization, Genewa (2013) Physical inactivity: a global public health problem. Global Strategy on Diet, Physical Activity and Health. http://www.who.int/dietphysicalactivity/factsheet_inactivity/en/index.html. Search in Google Scholar

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