Works cited for "New Jersey Physical Therapy 10-Hour Summary Book - Exam PTNJ1025"
New Jersey Physical Therapy 10-Hour Summary Book - Exam PTNJ1025 Works Cited Components of Ethics for Physical Therapy Professionals Afzal, S., & Arshad, A. (2021). Ethical issues among healthcare workers using electronic medical records: a systematic review. Computer Methods and Programs in Biomedicine Update,1, 10030. https://doi.org/10.1016/j. cmpbup.2021.100030 American Association for Respiratory Care (AARC). (2021). AARC statement of ethics and professional conduct . https:// www.aarc.org/wp-content/uploads/2017/03/statement-of-ethics.pdf American Counseling Association (ACA). (2014). 2014 ACA code of ethics . https://www.counseling.org/docs/default- source/default-document-library/ethics/2014-aca-code-of-ethics.pdf?sfvrsn=55ab73d0_1 American Medical Association (AMA). (n.d). HIPAA violations & enforcement . https://www.ama-assn.org/practice- management/hipaa/hipaa-violations-enforcement American Nurses Association (ANA). (2015). 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(2020). Ethical dimensions in the health professions (7th ed.). Elsevier. Frankel, M. S. (1989). Professional codes: Why, how, and with what impact? Journal of Business Ethics, 8 (2-3), 109-115. Graf, W. D., Epstein, L. G., & Pearl, P. L. (2020). Practical bioethics during the exceptional circumstances of a pandemic. Pediatric Neurology, 108 , 3-4. https://doi.org/10.1016/j.pediatrneurol.2020.04.011 Krom, C. L., (2019). Disciplinary actions by state professional licensing boards: Are they fair? Journal of Business Ethics, 158 , 567-583. https://doi.org/10.1007/s10551-017-3738-5 Litz, B. T., & Kerig, P. K. (2019). 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Ischemia–reperfusion intervention: From enhancements in exercise performance to accelerated performance recovery—A systematic review and meta-analysis. International Journal of Environmental Research and Public Health, 17 (21), 8161. Beaven, C. M., Cook, C. J., Kilduff, L., Drawer, S., & Gill, N. (2012). Intermittent lower-limb occlusion enhances recovery after strenuous exercise. Applied Physiology, Nutrition, and Metabolism, 37 (6), 1132-1139. Bond, C. W., Hackney, K. J., Brown, S. L., & Noonan, B. C. (2019). Blood flow restriction resistance exercise as a rehabilitation modality following orthopaedic surgery: A review of venous thromboembolism risk. Journal of Orthopaedic & Sports Physical Therapy, 49 (1), 17-27. https://doi.org/10.2519/jospt.2019.8375
Bowman, E. N., Elshaar, R., Milligan, H., Jue, G., Mohr, K., Brown, P., Watanabe, D. M., & Limpisvasti, O. (2019). Proximal, distal, and contralateral effects of blood flow restriction training on the lower extremities: A randomized controlled trial. Sports Health: A Multidisciplinary Approach, 11 (2), 149-156. https://doi.org/10.1177/1941738118821929 Centner, C., Jerger, S., Lauber, B., Seynnes, O., Friedrich, T., Lolli, D., Gollhofer, A., & König, D. (2022). Low-load blood flow restriction and high-load resistance training induce comparable changes in patellar tendon properties. Medicine and Science in Sports and Exercise, 54 (4), 582-589. https://doi.org/10.1249/MSS.0000000000002824 Centner, C., Lauber, B., Seynnes, O. R., Jerger, S., Sohnius, T., Gollhofer, A., & König, D. (2019). Low-load blood flow restriction training induces similar morphological and mechanical Achilles tendon adaptations compared with high-load resistance training. 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P., Chabowski, A., Goossens, G. H., & Van Loon, L. J. (2016). One week of bed rest leads to substantial muscle atrophy and induces whole-body insulin resistance in the absence of skeletal muscle lipid accumulation. Diabetes, 65 (10), 2862-2875. https://doi.org/10.2337/db15-1661 Fekri-Kurabbaslou, V., Shams, S., & Amani-Shalamzari, S. (2022). Effect of different recovery modes during resistance training with blood flow restriction on hormonal levels and performance in young men: a randomized controlled trial. BMC Sports Science, Medicine and Rehabilitation, 14 (1), 1-10. Formiga, M. F., Fay, R., Hutchinson, S., Locandro, N., Ceballos, A., Lesh, A., Buscheck, J., Meanor, J., Owens, J. G., & Cahalin, L. P. (2020). Effect of aerobic exercise training with and without blood flow restriction on aerobic capacity in healthy young adults: A systematic review with meta-analysis. International Journal of Sports Physical Therapy, 15 (2), 175-187. Fry, C. S., Glynn, E. L., Drummond, M. J., Timmerman, K. L., Fujita, S., Abe, T., Dhanani, S., Volpi, E., & Rasmussen, B. B. (2010). Blood flow restriction exercise stimulates mTORC1 signaling and muscle protein synthesis in older men. Journal of Applied Physiology, 108 (5), 1199-1209. https://doi.org/10.1152/japplphysiol.01266.2009 Garber, C. E., Blissmer, B., Deschenes, M. R., Franklin, B. A., Lamonte, M. J., Lee, I. M., Nieman, D. C., Swain, D. P., & American College of Sports Medicine. (2011). American College of Sports Medicine position stand. Quantity and quality of exercise for developing and maintaining cardiorespiratory, musculoskeletal, and neuromotor fitness in apparently healthy adults: Guidance for prescribing exercise. Medicine and Science in Sports and Exercise, 43 (7), 1334- 1359. https://doi.org/10.1249/MSS.0b013e318213fefb Grønfeldt, B. M., Lindberg Nielsen, J., Mieritz, R. M., Lund, H., & Aagaard, P. (2020). Effect of blood-flow restricted vs heavy-load strength training on muscle strength: Systematic review and meta-analysis. Scandinavian Journal of Medicine & Science in Sports, 30 (5), 837-848. https://doi.org/10.1111/sms.13632 Hammert, W. B., Moreno, E. N., Martin, C. C., Jessee, M. B., & Buckner, S. L. (2023). Skeletal muscle adaptations to high-load resistance training with pre-exercise blood flow restriction. Journal of Strength and Conditioning Research, 37 (12), 2381-2388. https://doi.org/10.1519/JSC.0000000000004553 Hansen, O. B., Papson, A., Eble, S. K., & Drakos, M. C. (2022). Effect of blood flow restriction therapy following Achilles rupture and repair: A randomized controlled trial. Foot & Ankle Orthopaedics, 7 (1), 2473011421S00032. https://doi. org/10.1177/2473011421S00032 Heitkamp, H. C. (2015). Training with blood flow restriction. Mechanisms, gain in strength and safety. The Journal of Sports Medicine and PHYSICAL FITNESS, 55 (5), 446-456. 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Hughes, L., & Patterson, S. D. (2020). The effect of blood flow restriction exercise on exercise-induced hypoalgesia and endogenous opioid and endocannabinoid mechanisms of pain modulation . Journal of Applied Physiology, 128 (4), 914-924. https://doi.org/10.1152/japplphysiol.00768.2019 Hughes, L., Rosenblatt, B., Haddad, F., Gissane, C., McCarthy, D., Clarke, T., Ferris, G., Dawes, J., Paton, B., & Patterson, S. D. (2019). Comparing the effectiveness of blood flow restriction and traditional heavy load resistance training in the post-surgery rehabilitation of anterior cruciate ligament reconstruction patients: A UK National Health Service randomised controlled trial. Sports Medicine, 49 (11), 1787-1805. https://doi.org/10.1007/s40279-019-01137-2 Jack, R. A., 2nd, Lambert, B. S., Hedt, C. A., Delgado, D., Goble, H., & McCulloch, P. C. (2023). Blood flow restriction therapy preserves lower extremity bone and muscle mass after ACL reconstruction. 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