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| 1 | Scientific evidence is just the starting point: A generalizable process for developing sports injury prevention interventions显示文摘Background: The 2 most cited sports injury prevention research frameworks incorporate intervention development, yet little guidance is available in the sports science literature on how to undertake this complex process. This paper presents a generalizable process for developing implementable sports injury prevention interventions, including a case study applying the process to develop a lower limb injury prevention exercise training program(Footy First) for community Australian football.Methods: The intervention development process is underpinned by 2 complementary premises:(1) that evidence-based practice integrates the best available scientific evidence with practitioner expertise and end user values and(2) that research evidence alone is insufficient to develop implementable interventions.Results: The generalizable 6-step intervention development process involves(1) compiling research evidence, clinical experience, and knowledge of the implementation context;(2) consulting with experts;(3) engaging with end users;(4) testing the intervention;(5) using theory; and(6)obtaining feedback from early implementers. Following each step, intervention content and presentation should be revised to ensure that the final intervention includes evidence-informed content that is likely to be adopted, properly implemented, and sustained over time by the targeted intervention deliverers. For Footy First, this process involved establishing a multidisciplinary intervention development group, conducting 2targeted literature reviews, undertaking an online expert consensus process, conducting focus groups with program end users, testing the program multiple times in different contexts, and obtaining feedback from early implementers of the program.Conclusion: This systematic yet pragmatic and iterative intervention development process is potentially applicable to any injury prevention topic across all sports settings and levels. It will guide researchers wishing to undertake intervention development. | Alex Donaldson David G.Lloyd Belinda J.Gabbe Jill Cook Warren Young Peta White Caroline F.Finch | 2016 | Journal of Sport and Health Science2016,5,3: | 3 |
| 2 | ACCF/ACR/AHA/NASCI/SCMR 2010 Expert Consensus Document on Cardiovascular Magnetic Resonance显示文摘 | W. Gregory Hundley David A. Bluemke J. Paul Finn Scott D. Flamm Mark A. Fogel Matthias G. Friedrich Vincent B. Ho Michael Jerosch-Herold Christopher M. Kramer Warren J. Manning Manesh Patel Gerald M. Pohost Arthur E. Stillman Richard D. White Pamela K. Wo | 2010 | Journal of the American College of Cardiology2010,,23: | 1 |
| 3 | Visibility :An Evolving Issue 显示文摘 | Sloane C S White S Warren H | 1986 | Environmental Science and Technology1986,20,8: | 1 |
| 4 | An evaluation of interagency monitoring of protected visual environments (IMPROVE ) collocated precision and uncertainty estimates显示文摘 | NICOLE P WARREN H WHITE H | 2008 | Atmos Environ2008,42,: | 1 |
| 5 | Visibility: An evolving issue显示文摘 | Sloane C S White S Warren H | 1986 | Environmental Science and Technology1986,20,8: | 1 |
| 6 | ACCF/ACR/AHA/NASCI/SCMR 2010 Expert Consensus Document on Cardiovascular Magnetic Resonance: A Report of the American College of Cardiology Foundation Task Force on Expert Consensus Documents显示文摘 | W. Gregory. Hundley David A. Bluemke J. Paul Finn Scott D. Flamm Mark A. Fogel Matthias G. Friedrich Vincent B. Ho Michael Jerosch-Herold Christopher M. Kramer Warren J. Manning Manesh Patel Gerald M. Pohost Arthur E. Stillman Richard D. White Pamela K. W | 2010 | Circulation2010,,22: | 1 |
| 7 | Resilience and indicators of adjustment during rehabilitation from a spinal cord injury显示文摘 | White B Drive S Warren AM | 2010 | Rehabi Psychol2010,55,1: | 1 |
| 8 | Rrsilience and indicators of ad- justment during rehabilitation from a spinal cord injury 显示文摘 | White B Drive S Warren AM | 2010 | Rehabi Psyhol2010,55,1: | 1 |
| 9 | Visibility: An Evolving Issue显示文摘 | Sloane CS White S Warren H | 1986 | Environmental Science andTechnology1986,20,8: | 1 |
| 10 | Feedback Stabilization of Underactuated Nonlinear Pendulum Cart System Using Matching Conditions显示文摘 | Atul G K Bo Fang Warren White | 2002 | American Control Conference2002,,5: | 1 |
| 11 | Visibility: An Evolving Issue显示文摘 | Sloane C S White S Warren H | 1986 | Environmental Science and Technology1986,20,8: | 1 |
| 12 | Visibility:An Evolving Issue显示文摘 | Sloane C S White S Warren H | 1986 | Environmental Science and Technology1986,20,8: | 1 |
| 13 | Visibility: An evolving issue显示文摘 | Sloane C S White S Warren H | 1986 | Environmental Science and Technology1986,20,8: | 1 |
| 14 | Resilience and indicators of adjustment during rehabilitation from a spinal cord injury显示文摘 | White B Drive S Warren A M | 2010 | Rehabi Psychol2010,55,1: | 1 |
| 15 | Visibility:An Evolving Issue显示文摘 | Sloane C S White S Warren H | 1986 | Environmental Science and Technology1986,20,8: | 1 |
| 16 | Visibility:An Evolving Issue显示文摘 | Sloane C S White S Warren H | 1986 | Environmental Science and Technology1986,20,8: | 1 |
| 17 | Visibility: An Evol- ving Issue显示文摘 | Sloane C S White S Warren H | 1986 | Environmental Science and Technology1986,20,8: | 1 |
| 18 | Resilience and indicators of adjustmen during rehabilitation from a spinal cord injury显示文摘 | White B Drive S Warren AM | 2010 | Rehabi Psychol2010,55,1: | 1 |
| 19 | Resilience and Indicators of Adjustment During Rehabilitation from a Spinal Cord Injury 显示文摘 | White B Drive S Warren A M | 2010 | Rehabi Psychol2010,55,1: | 1 |
| 20 | Control design of an unmanned hovercraft for agricultural applications显示文摘The efficient and precise application of agricultural materials such as fertilizer or herbicide can be greatly facilitated by autonomous operation.This is especially important under difficult conditions at remote sites.The purpose of this work is to develop an accurate nonlinear controller using a direct Lyapunov approach to ensure stability of an unmanned hovercraft prototype used for the execution of these agricultural tasks.Such a craft constitutes an underactuated system which has fewer actuators than degrees of freedom.The proposed closed loop system is simulated to demonstrate that a control law can stabilize both the actuated and unactuated degrees of freedom of the hovercraft.It is shown that the position and orientation of the hovercraft achieve high dynamic and steady performance. | Deyka I Garcia Warren N White | 2015 | International Journal of Agricultural and Biological Engineering2015,8,2: | 1 |