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Research Article

Clinician perspectives on the implementation of inpatient cycling-based exergames for children with cerebral palsy: A qualitative study

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Pages 531-541 | Received 31 Aug 2021, Accepted 05 Jul 2022, Published online: 11 Jul 2022

References

  • Australian Cerebral Palsy Register. Australian Cerebral Palsy Register Report; 2018. https://cpregister.com/wp-content/uploads/2019/02/Report-of-the-Australian-Cerebral-Palsy-Register-Birth-Years-1995-2012.pdf Accessed9 July 2019.
  • Himmelmann K, Beckung E, Hagberg G, Uvebrant P. Gross and fine motor function and accompanying impairments in cerebral palsy. Dev Med Child Neurol. 2006;48:417–23. Accessed July 9, 2019. https://journals-scholarsportal-info.myaccess.library.utoronto.ca/pdf/00121622/v48i0006/417_gafmfaaiicp.xml.
  • Carlon SL, Taylor NF, Dodd KJ, Shields N. Differences in habitual physical activity levels of young people with cerebral palsy and their typically developing peers: a systematic review. Disabil Rehabil. 2013;35(8):647–55. doi:10.3109/09638288.2012.715721.
  • Bjornson KF, Belza B, Kartin D, Logsdon R, McLaughlin JF. Ambulatory Physical Activity Performance in Youth With Cerebral Palsy and Youth who are Developing Typically. Phys Ther. 2007;87(3):248–57. doi:10.2522/ptj.20060157.
  • Verschuren O, Takken T. Aerobic capacity in children and adolescents with cerebral palsy. Res Dev Disabil. 2010;31:1352–57. doi:10.1016/j.ridd.2010.07.005.
  • Hanna SE, Rosenbaum PL, Bartlett, DJ, Palisano, RJ, Walter, SD, Avery, L, and Russell, DJ . Stability and decline in gross motor function among children and youth with cerebral palsy aged 2 to 21 years. Developmental Medicine & Child Neurology 51 295–302 . 2009. doi:10.1111/j.1469-8749.2008.03196.x.
  • Bell KJ, Ounpuu S, DeLuca PA, Romness MJ. Natural progression of gait in children with cerebral palsy. J Pediatr Orthop. 2002;22(5):677–82. doi:10.1097/00004694-200209000-00020.
  • Cardenas A, Warner D, Switzer L, Graham TCN, Cimolino G, Fehlings D. Inpatient Exergames for Children with Cerebral Palsy following Lower Extremity Orthopedic Surgery: a Feasibility Study. Dev Neurorehabil. 2021;1(1):1–7. doi:10.1080/17518423.2020.1858359.
  • Knights S, Graham N, Switzer L, Hernandez, H, Ye, Z, Findlay, B, Xie, WY, Wright, V, and Fehlings, D . An innovative cycling exergame to promote cardiovascular fitness in youth with cerebral palsy. Dev Neurorehabil. 2014;19(2):135–40. doi:10.3109/17518423.2014.923056.
  • Chen CL, Chen CY, Liaw MY, Chung CY, Wang CJ, Hong WH. Efficacy of home-based virtual cycling training on bone mineral density in ambulatory children with cerebral palsy. Osteoporos Int. 2013;24(4):1399‐1406. doi:10.1007/s00198-012-2137-0.
  • Hicks CL, Von Baeyer CL, Spafford PA, Van Korlaar I, and Goodenough B. The Faces Pain Scale - Revised: toward a common metric in pediatric pain measurement. Pain. 2001;93:173–83. www.elsevier.nl/locate/pain Accessed 9 July 2019.
  • Ravens-Sieberer U, Herdman M, Devine J, Otto, C, Bullinger, M, Rose, M, and Klasen, F . The European KIDSCREEN approach to measure quality of life and well-being in children: development, current application, and future advances. Qual Life Res. 2014;23:791–803. doi:10.1007/s11136-013-0428-3.
  • Michie S, Yardley L, West R, Patrick K, Greaves F. Developing and evaluating digital interventions to promote behavior change in health and health care: recommendations resulting from an international workshop. J Med Internet Res. 2017;19(6). doi:10.2196/jmir.7126.
  • Shah SGS, Robinson I. Benefits of and barriers to involving users in medical device technology development and evaluation. Int J Technol Assess Health Care. 2007;23(1):131–37. doi:10.1017/S0266462307051677.
  • Bergmann JHM, McGregor AH. Body-worn sensor design: what do patients and clinicians want? Ann Biomed Eng. 2011;39(9):2299–312. doi:10.1007/s10439-011-0339-9.
  • Lewis GN, Rosie JA. Virtual reality games for movement rehabilitation in neurological conditions: how do we meet the needs and expectations of the users. Disabil Rehabil. 2012;34(22):1880–86. doi:10.3109/09638288.2012.670036.
  • Michie S, Johnston M, Abraham C, Lawton R, Parker D, Walker A. Making psychological theory useful for implementing evidence based practice: a consensus approach. Qual Saf Health Care. 2005. doi:10.1136/qshc.2004.011155.
  • Cane J, O’Connor D, Michie S. Validation of the theoretical domains framework for use in behaviour change and implementation research. Implement Sci. 2012. doi:10.1186/1748-5908-7-37.
  • Atkins L, Francis J, Islam R, O‘Connor, D, Patey, A, Ivers, N, Foy, R, Duncan, EM, Colquhoun, H, Grimshaw, JM, Lawton, R, and Michie, S . A guide to using the Theoretical Domains Framework of behaviour change to investigate implementation problems. Implement Sci. 2017. doi:10.1186/s13012-017-0605-9.
  • Cowdell F, Dyson J. How is the theoretical domains framework applied to developing health behaviour interventions? A systematic search and narrative synthesis. BMC Public Health. 2019:1–10. doi:10.1186/s12889-019-7442-5.
  • Francis JJ, O’Connor D, Curran J. Theories of behaviour change synthesised into a set of theoretical groupings: introducing a thematic series on the theoretical domains framework. Implement Sci. 2012;7(1). doi:10.1186/1748-5908-7-35.
  • Hsieh H-F, Shannon SE. Three approaches to qualitative content analysis. Qual Health Res. 2005;15(9):1277–88. doi:10.1177/1049732305276687.
  • Thompson C, McCaughan D, Cullum N, Sheldon TA, Raynor P. Increasing the visibility of coding decisions in team-based qualitative research in nursing. Int J Nurs Stud. 2004. doi:10.1016/j.ijnurstu.2003.03.001.
  • Francis JJ, Stockton C, Eccles MP, Johnston, M, Cuthbertson, BH, Grimshaw, JM, Hyde, C, Tinmouth, A, and Stanworth, SJ . Evidence-based selection of theories for designing behaviour change interventions: using methods based on theoretical construct domains to understand clinicians’ blood transfusion behaviour. Br J Health Psychol. 2009. doi:10.1348/135910708X397025.
  • Patey AM, Islam R, Francis JJ, Bryson, GL, and Grimshaw, JM . Anesthesiologists’ and surgeons’ perceptions about routine pre-operative testing in low-risk patients: application of the Theoretical Domains Framework (TDF) to identify factors that influence physicians’ decisions to order pre-operative tests. Implement Sci. 2012. doi:10.1186/1748-5908-7-52.
  • Islam R, Tinmouth AT, Francis JJ, Brehaut, JC, Born, J, Stockton, C, Stanworth, SJ, Ecckes, MP, Cuthbertson, BH, Hyde, C, and Grimshaw, JM . A cross-country comparison of intensive care physicians’ beliefs about their transfusion behaviour: a qualitative study using the theoretical domains framework. Implement Sci. 2012;7(93):1–16. doi:10.1186/1748-5908-7-93.
  • Braun V, Clarke V. Using thematic analysis in psychology. Qual Res Psychol. 2006;3(2):77–101. doi:10.1191/1478088706qp063oa.
  • Morse JM. Critical Analysis of Strategies for Determining Rigor in Qualitative Inquiry. Qual Health Res. 2015;25(9):1212–22. doi:10.1177/1049732315588501.
  • Hughes A-M, Burridge JH, Demain SH, Ellis-Hill, C, Meagher, C, Tedesco-Triccas, L, Turk, R, and Swain, I . Translation of evidence-based Assistive Technologies into stroke rehabilitation: users’ perceptions of the barriers and opportunities. BMC Heal Serv Res. 2014;14(1):124. doi:10.1186/1472-6963-14-124.
  • Levac D, Espy D, Fox E, Pradhan S, Deutsch JE. “Kinect-ing” with clinicians: a knowledge translation resource to support decision making about video game use in rehabilitation. Phys Ther. 2015;95(3):426–40. doi:10.2522/ptj.20130618.
  • Levac DE, Galvin J. Facilitating clinical decision-making about the use of virtual reality within paediatric motor rehabilitation: application of a classification framework. Dev Neurorehabil. 2011;14(3):177–84. doi:10.3109/17518423.2011.554487.
  • Grimmer-Somers K, Lekkas P, Nyland L, Young A, Kumar S. Perspectives on research evidence and clinical practice: a survey of Australian physiotherapists. Physiother Res Int. 2007;12(3):147–61. doi:10.1002/pri.363.
  • Finlayson M, Shevil E, Mathiowetz V, Matuska K. Reflections of occupational therapists working as members of a research team. Aust Occup Ther J. 2005;52(2):101–08. doi:10.1111/j.1440-1630.2005.00479.x.
  • Eller LS, Kleber E, Wang SL. Research knowledge, attitudes and practices of health professionals. Nurs Outlook. 2003;51(4):165–70. doi:10.1016/S0029-6554(03.
  • Pfeiffer SI, Burd S, Wright A. Clinicians and research: recurring obstacles and some possible solutions. J Clin Psychol. 1992;48(1):140–45. doi:10.1002/1097-4679(199201)48:1<140::AID-JCLP2270480120>3.0.CO.
  • Roxburgh M. An exploration of factors which constrain nurses from research participation. J Clin Nurs. 2006;15(5):535–45. doi:10.1111/j.1365-2702.2006.01374.x.
  • Levac DE, Miller PA. Integrating virtual reality video games into practice: clinicians’ experiences. Physiother Theory Pract. 2013;29(7):504–12. doi:10.3109/09593985.2012.762078.
  • Shields N, Van Den Bos R, Buhlert-Smith K, Prendergast L, Taylor N. A community-based exercise program to increase participation in physical activities among youth with disability: a feasibility study. Disabil Rehabil. 2018;41(10):1152–59. doi:10.1080/09638288.2017.1422034.
  • Shields N, Willis C, Imms C, McKenzie, G, Dorsselaer, BV, Bruder, AM, Kennedy, RA, Bhowon, Y, Southby, A, Prendergast, LA, Watts, JJ, and Taylor, NF . Feasibility of scaling-up a community-based exercise program for young people with disability. Disabil Rehabil. 2021;1–13. doi:10.1080/09638288.2021.1903103.
  • Cleary SL, Taylor NF, Dodd KJ, Shields N. An aerobic exercise program for young people with cerebral palsy in specialist schools: a phase I randomized controlled trial. Dev Neurorehabil. 2017;20(6):331–38. doi:10.1080/17518423.2016.1265602.
  • McCluskey A, Middleton S. Delivering an evidence-based outdoor journey intervention to people with stroke: barriers and enablers experienced by community rehabilitation teams. BMC Health Serv Res. 2010;10:1–16. doi:10.1186/1472-6963-10-18.
  • Wiemeyer J, Deutsch J, Malone LA, Rowland, JL, Swartz, MC, Xiong, J, and Zhang, FF . Recommendations for the Optimal Design of Exergame Interventions for Persons with Disabilities: challenges, Best Practices, and Future Research. Games Health J. 2015;4(1):58–62. doi:10.1089/g4h.2014.0078.
  • Biddiss E, Irwin J. Active Video Games to Promote Physical Activity in Children and Youth: a systematic review. Arch Pediatr Adolesc Med. 2012;164:664–72.
  • Howcroft J, Klejman S, Fehlings D, Wright, V, Zabjek, K, Andrysek, J, and Biddiss, E . Active Video Game Play in Children With Cerebral Palsy: potential for Physical Activity Promotion and Rehabilitation Therapies. Arch Phys Med Rehabil. 2012;93:1448–56. doi:10.1016/j.apmr.2012.02.033.
  • Hurkmans HL, Van Den Berg-Emons RJ, Stam HJ. Energy expenditure in adults with cerebral palsy playing Wii sports. Arch Phys Med Rehabil. 2010. doi:10.1016/j.apmr.2010.07.216.
  • Sandlund M, Waterworth EL, Häger C. Using motion interactive games to promote physical activity and enhance motor performance in children with cerebral palsy. Dev Neurorehabil. 2011;14(1):15–21. doi:10.3109/17518423.2010.533329.
  • Weiss PL, Rand D, Katz N, Kizony R. Video capture virtual reality as a flexible and effective rehabilitation tool. J Neuroeng Rehabil. 2004:1. doi:10.1186/1743-0003-1-12.

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