New Jersey Physical Therapy CE Ebook

Š Noyes, F. R., Barber, S. D., & Mangine, R. E. (1991). Abnormal lower limb symmetry determined by function hop tests after anterior cruciate ligament rupture. American Journal of Sports Medicine, 19(5), 513-518. http:// doi.org/10.1177/036354659101900518 Š Noyes, F. R., Torvik, P. J., Hyde, W. B., DeLucas, J. L. (1974). Biomechanics of ligament failure. II. An analysis of immobilization, exercise, and reconditioning effects in primates. Journal of Bone and Joint Surgery. American volume, 56(7), 1406-1418. Š Nyland, J., Cottrell, B., Harreld, K., & Caborn, D. N. M. (2006). Self-reported outcomes after anterior cruciate ligament reconstruction: An internal health locus of control score comparison. Arthroscopy: The Journal of Arthroscopic and Related Surgery: Official Publication of the Arthroscopy Association of North America and the International Arthroscopy Association, 22(11), 1225-1232. http://doi.org/10.1016/j.arthro.2006.05.034 Š O’Connell, M., George, K., & Stock, D. (1998). Postural sway and balance testing: A comparison of normal and anterior cruciate ligament deficient knees. Gait and Posture, 8(2), 136-142. http://doi.org/10.1016/S0966- 6362(98)00023-X Š O’Connor, D. P., Laughlin, M. S., & Woods, G. W. (2005). Factors related to additional knee injuries after anterior cruciate ligament injury. Arthroscopy: The Journal of Arthroscopic and Related Surgery: Official Publication of the Arthroscopy Association of North America and the International Arthroscopy Association, 21(4), 431-438. http://doi.org/10.1016/j.arthro.2004.12.004 Š Oiestad, B. E., Engebretsen, L., Storheim, K., & Risberg, M. A. (2009). Knee osteoarthritis after anterior cruciate ligament injury: A systematic review. American Journal of Sports Medicine, 37(7), 1434-1443. https://www. ncbi.nlm.nih.gov/pubmed/19567666 Š Omi, Y., Sugimoto, D., Kuriyama, S., Kurihara, T., Miyamoto, K., Yun, S., Kawashima, T., & Hirose, N. (2018). Effect of Hip-Focused Injury Prevention Training for Anterior Cruciate Ligament Injury Reduction in Female Basketball Players: A 12-Year Prospective Intervention Study. American Journal of Sports Medicine, 46(4), 852- 861. https://doi.org/10.1177/0363546517749474 Š Padua, D. A., DiStefano, L. J., Beutler, A. I., de la Motte, S. J., DiStefano, M. J., & Marshall, S. W. (2015). The landing error scoring system as a screening tool for an anterior cruciate ligament injury—Prevention program in elite-youth soccer athletes. Journal of Athletic Training, 50(6), 589-595. http://doi.org/10.4085/1062-6050- 50.1.10 Š Palmieri, R. M., Ingersoll, C. D., Edwards, J. E., Hoffman, M. A., Stone, M. B., Babington, J. P., … Krause, B. A. (2003). Arthrogenic muscle inhibition is not present in the limb contralateral to a simulated knee joint effusion. American Journal of Physical Medicine and Rehabilitation / Association of Academic Physiatrists, 82(12), 910- 916. http://doi.org/10.1097/01.PHM.0000098045.04883.02 Š Palmieri, R. M., Tom, J. A., Edwards, J. E., Weltman, A., Saliba, E. N., Mistry, D. J., & Ingersoll, C. D. (2004). Arthrogenic muscle response induced by an experimental knee joint effusion is mediated by pre- and post-synaptic spinal mechanisms. Journal of Electromyography and Kinesiology, 14(6), 631-640. http://doi. org/10.1016/j.jelekin.2004.06.002 Š Palmieri, R. M., Weltman, A., Edwards, J. E., Tom, J. A., Saliba, E. N., Mistry, D. J., & Ingersoll, C. D. (2005). Pre-synaptic modulation of quadriceps arthrogenic muscle inhibition. Knee Surgery, Sports Traumatology, Arthroscopy, 13(5), 370-376. http://doi.org/10.1007/s00167- 004-0547-z Š Palmieri-Smith, R. M., Kreinbrink, J., Ashton-Miller, J. A., & Wojtys, E. M. (2007). Quadriceps inhibition induced by an experimental knee joint effusion affects knee joint mechanics during a single-legged drop landing. American Journal of Sports Medicine, 35(8), 1269-1275. http://doi.org/10.1177/0363546506296417 Š Palmieri-Smith, R. M., & Lepley, L. K. (2015). Quadriceps strength asymmetry after anterior cruciate ligament reconstruction alters knee joint biomechanics and functional performance at time of return to activity. American Journal of Sports Medicine, 43(7), 1662-1669. http://doi.org/10.1177/0363546515578252 Š Palmieri-Smith, R. M., & Thomas, A. C. (2009). A neuromuscular mechanism of posttraumatic osteoarthritis associated with ACL injury. Exercise and Sport Sciences Reviews, 37(3), 147-153. http://doi.org/10.1097/ JES.0b013e3181aa6669 Š Pappas, E., Shiyko, M. P., Ford, K. R., Myer, G. D., & Hewett, T. E. (2016). Biomechanical deficit profiles associated with ACL injury risk in female athletes. Medicine and Science in Sports and Exercise, 48(1), 107-113. http://doi.org/10.1249/MSS.0000000000000750 Š Parent, N., & Fortin, F. (2017). A randomized, controlled trial of vicarious experience through peer support for male first-time cardiac surgery patients: Impact on anxiety, self-efficacy expectation, and self-reported activity. Heart and Lung: The Journal of Acute and Critical Care, 29(6), 389-400. http://doi.org/10.1067/ mhl.2000.110626 Š Park, S. Y., Oh, H., Park, S., Lee, J. H., Lee, S. H., & Yoon, K. H. (2013). Factors predicting hamstring tendon autograft diameters and resulting failure rates after anterior cruciate ligament reconstruction. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 21(5), 1111-1118. http://doi.org/10.1007/ s00167-012-2085-4 Š Paterno, M. V., Ford, K. R., Myer, G. D., Heyl, R., & Hewett, T. E. (2007). Limb asymmetries in landing and jumping 2 years following anterior cruciate ligament reconstruction. Clinical Journal of Sport Medicine: Official Journal of the Canadian Academy of Sport Medicine, 17(4), 258-262. http://doi.org/10.1097/ JSM.0b013e31804c77ea Š Paterno, M. V., Flynn, K., Thomas, S., & Schmitt, L. C. (2018). Self-Reported Fear Predicts Functional Performance and Second ACL Injury After ACL Reconstruction and Return to Sport: A Pilot Study. Sports Health, 10(3), 228-233. https://doi.org/10.1177/1941738117745806 Š Paterno, M. V., Rauh, M. J., Schmitt, L. C., Ford, K. R., & Hewett, T. E. (2012). Incidence of contralateral and ipsilateral anterior cruciate ligament (ACL) injury after primary ACL reconstruction and return to sport. Clinical Journal of Sport Medicine: Official Journal of the Canadian Academy of Sport Medicine, 22(2), 116-121. http://doi.org/10.1097/JSM. 0b013e318246ef9e Š Paterno, M. V., Rauh, M. J., Schmitt, L. C., Ford, K. R., & Hewett, T. E. (2012). Incidence of contralateral and ipsilateral anterior cruciate ligament (ACL) injury after primary ACL reconstruction and return to sport. Clinical Journal of Sport Medicine: Official Journal of the Canadian Academy of Sport Medicine, 22(2), 116-121. http://doi.org/10.1097/JSM.0b013e318246ef9e Š Paterno, M. V., Rauh, M. J., Schmitt, L. C., Ford, K. R., & Hewett, T. E. (2014). Incidence of second ACL injuries 2 years after primary ACL reconstruction and return to sport. American Journal of Sports Medicine, 42(7), 1567-1573. http://doi.org/10.1177/0363546514530088 Š Paterno, M. V., Schmitt, L. C., Ford, K. R., Rauh, M. J., Myer, G. D., Huang, B., & Hewett, T. E. (2010). Biomechanical measures during landing and postural stability predict second anterior cruciate ligament injury after anterior cruciate ligament reconstruction and return to sport. American Journal of Sports Medicine, 38(10), 1968-1978. http://doi.org/10.1177/0363546510376053 Š Perry, M. C., Morrissey, M. C., King, J. B., Morrissey, D., & Earnshaw, P. (2005). Effects of closed versus open kinetic chain knee extensor resistance training on knee laxity and leg function in patients during the 8- to 14-week post-operative period after anterior cruciate ligament reconstruction. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 13(5), 357-369. http://doi.org/10.1007/s00167-004- 0568-7 Š Persson, A., Fjeldsgaard, K., Gjertsen, J.-E., Kjellsen, A. B., Engebretsen, L., Hole, R. M., & Fevang, J. M. (2013). Increased risk of revision with hamstring tendon grafts compared with patellar tendon grafts after anterior cruciate ligament reconstruction: A study of 12,643 patients from the Norwegian Cruciate Ligament Registry, 2004-2012. American Journal of Sports Medicine, 42(2), 285-291. http://doi. org/10.1177/0363546513511419 Š Petersen, W., Taheri, P., Forkel, P., & Zantop, T. (2014). Return to play following ACL reconstruction: A systematic review about strength deficits. Archives of Orthopaedic and Trauma Surgery, 134(10), 1417-1428. http://doi.org/10.1007/s00402-014-1992-x Š Petersen, W., & Zantop, T. (2007). Anatomy of the anterior cruciate ligament with regard to its two bundles. Clinical Orthopaedics and Related Research, 454, 35-47. http://doi.org/10.1097/BLO.0b013e31802b4a59 Š Phisitkul, P., James, S. L., Wolf, B. R., & Amendola, A. (2006). MCL injuries of the knee: Current concepts review. The Iowa Orthopaedic Journal, 26, 77-90. Retrieved from http://www.pubmedcentral.nih.gov/ articlerender.fcgi? artid=1888587&tool=pmcentrez&rendertype=abstract Š Pietrosimone, B., Loeser, R. F., Blackburn, J. T., Padua, D. A., Harkey, M. S., Stanley, L. E., Luc-Harkey, B. A., Ulici, V., Marshall, S. W., Jordan, J. M., & Spang, J. T. (2017). Biochemical markers of cartilage metabolism are associated with walking biomechanics 6-months following anterior cruciate ligament reconstruction. Journal of Orthopaedic Research, 35(10), 2288-2297. https://doi.org/10.1002/jor.23534 Pietrosimone, B., Troy Blackburn, J., Harkey, M. S., Luc, B. A., Hackney, A. C., Padua, D. A., Driban, J. B., Spang, J. T., & Jordan, J. M. (2016). Walking Speed As a Potential Indicator of Cartilage Breakdown Following Anterior Cruciate Ligament Reconstruction. Arthritis Care and Research, 68(6), 793-800. https://doi.org/10.1002/acr.22773 Š Pinczewski, L. A., Lyman, J., Salmon, L. J., Russell, V. J., Roe, J., & Linklater, J. (2007). A 10-year comparison of anterior cruciate ligament reconstructions with hamstring tendon and patellar tendon autograft: A controlled, prospective trial. American Journal of Sports Medicine, 35(4), 564-574. http://doi. org/10.1177/0363546506296042 Š Piva, S. R., Fitzgerald, G. K., Wisniewski, S., & Delitto, A. (2009). Predictors of pain and function outcome after rehabilitation in patients with patellofemoral pain syndrome. Journal of Rehabilitation Medicine: Official Journal of the UEMS European Board of Physical and Rehabilitation Medicine, 41(8), 604-612. http://doi. org/10.2340/16501977-0372 Š Podlog, L., Dimmock, J., & Miller, J. (2011). A review of return to sport concerns following injury rehabilitation: Practitioner strategies for enhancing recovery outcomes. Physical Therapy in Sport, 12(1), 36-42. http://doi. org/10.1016/j.ptsp.2010.07.005 Š Podlog, L., & Eklund, R.C. (2007). The psychosocial aspects of a return to sport following serious injury: a review of the literature from a self-determination perspective. Psychol Sport Exercise, 8, 535-566 Š Prouty, A., Cooper, M., Thomas, P., Christensen, J., Strong, C., Bowie, L., & Oermann, M. H. (2006). Multidisciplinary patient education for total joint replacement surgery patients. Orthopedic Nursing, 25(4), 257-261, quiz 262-263. Š Pugh, L., Mascarenhas, R., Arneja, S., Chin, P. Y. K., & Leith, J. M. (2008). Current concepts in instrumented knee-laxity testing. American Journal of Sports Medicine, 37(1), 199-210. http://doi. org/10.1177/0363546508323746 Š Pujol, N., Blanchi, M. P. R., & Chambat, P. (2007). The incidence of anterior cruciate ligament injuries among competitive Alpine skiers: A 25-year investigation. American Journal of Sports Medicine, 35(7), 1070-1074. http://doi.org/10.1177/0363546507301083 Š Raynor, M. C., Pietrobon, R., Guller, U., & Higgins, L. D. (2005). Cryotherapy After ACL reconstruction: A meta- analysis. Journal of Knee Surgery, 18(2), 123-129. http://doi.org/10.1055/s-0030-1248169 Š Rebai, H., Barra, V., Laborde, A., Bonny, J.-M., Poumarat, G., & Coudert, J. (2002). Effects of two electrical stimulation frequencies in thigh muscle after knee surgery. International Journal of Sports Medicine, 23(8), 604-609. http://doi.org/10.1055/s-2002-35525 Š Reid, A., Birmingham, T. B., Stratford, P. W., Alcock, G. K., & Giffin, J. R. (2007). Hop testing provides a reliable and valid outcome measure during rehabilitation after anterior cruciate ligament reconstruction. Physical Therapy, 87(3), 337-349. http://doi.org/10.2522/ptj.20060143 Reinhardt, K. R., Hetsroni, I., & Marx, R. G. (2010). Graft selection for anterior cruciate ligament reconstruction: A level I systematic review comparing failure rates and functional outcomes. Orthopedic Clinics of North America, 41(2), 249-262. http://doi. org/10.1016/j.ocl.2009.12.009 Š Relph, N., Herrington, L., & Tyson, S. (2014). The effects of ACL injury on knee proprioception: A meta-analysis. Physiotherapy (United Kingdom), 100(3), 187-195. http://doi.org/10.1016/j.physio.2013.11.002 Š Rice, D., McNair, P. J., & Dalbeth, N. (2009). Effects of cryotherapy on arthrogenic muscle inhibition using an experimental model of knee swelling. Arthritis and Research, 61(1), 78-83. http://doi.org/10.1002/art.24168 Š Rice, D. A., & McNair, P. J. (2010). Quadriceps arthrogenic muscle inhibition: Neural mechanisms and treatment perspectives. Seminars in Arthritis and Rheumatism, 40(3), 250-266. http://doi.org/10.1016/j. semarthrit.2009.10.001

Š Risberg, M. A., & Holm, I. (2009). The long-term effect of 2 postoperative rehabilitation programs after anterior cruciate ligament reconstruction: A randomized controlled clinical trial with 2 years of follow-up. American Journal of Sports Medicine, 37(10), 1958-1966. http://doi.org/10.1177/0363546509335196 Š Risberg, M. A., Holm, I., Myklebust, G., & Engebretsen, L. (2007). Neuromuscular training versus strength training during first 6 months after anterior cruciate ligament reconstruction: A randomized clinical trial. Physical Therapy, 87(6), 737-750. http://doi.org/10.2522/ptj.20060041 Š Risberg, M. A., Lewek, M., & Snyder-Mackler, L. (2004). A systematic review of evidence for anterior cruciate ligament rehabilitation: How much and what type? Physical Therapy in Sport, 5(3), 125-145. http://doi. org/10.1016/j.ptsp.2004.02.003 Š Ristanis, S., Stergiou, N., Patras, K., Tsepis, E., Moraiti, C., & Georgoulis, A. D. (2006). Follow-up evaluation 2 years after ACL reconstruction with bone-patellar tendon-bone graft shows that excessive tibial rotation persists. Clinical Journal of Sport Medicine: Official Journal of the Canadian Academy of Sport Medicine, 16(2), 111-116. http://doi.org/10.1097/00042752-200603000-00005 Š Roberts, D., Ageberg, E., Andersson, G., & Fridén, T. (2007). Clinical measurements of proprioception, muscle strength and laxity in relation to function in the ACL-injured knee. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 15(1), 9-16. http://doi.org/10.1007/s00167-006-0128-4 Š Roewer, B. D., Di Stasi, S. L., & Snyder-Mackler, L. (2011). Quadriceps strength and weight acceptance strategies continue to improve two years after anterior cruciate ligament reconstruction. Journal of Biomechanics, 44(10), 1948-1953. http://doi.org/10.1016/j.jbiomech.2011.04.037 Š Roos, E. M., Roos, H. P., Ekdahl, C., & Lohmander, L. S. (1998). Knee injury and Osteoarthritis Outcome Score (KOOS) – Validation of a Swedish version. Scandinavian Journal of Medicine and Science in Sports, 8(6), 439- 448. http://doi.org/10.1111/j.1600- Š Rosenberg, T. D., Franklin, J. L., Baldwin, G. N., & Nelson, K. A. (1992). Extensor mechanism function after patellar tendon graft harvest for anterior cruciate ligament reconstruction. American Journal of Sports Medicine, 20(5), 516-519. http://doi.org/10.1177/036354659202000506 Š Ross, M. D., Irrgang, J. J., Denegar, C. R., McCloy, C. M., & Unangst, E. T. (2002). The relationship between participation restrictions and selected clinical measures following anterior cruciate ligament reconstruction. Knee Surgery, Sports Traumatology, Arthroscopy, 10(1), 10-19. http://doi.org/10.1007/s001670100238 Š Ross, M. D., Langford, B., & Whelan, P. J. (2002). Test-retest reliability of 4 single-leg horizontal hop tests. Journal of Strength and Conditioning Research / National Strength and Conditioning Association, 16(4), 617-22. https://journals.lww.com/nsca- jscr/Abstract/2002/11000/Test_Retest_Reliability_of_4_Single_Leg_ Horizontal.21.aspx Š Rothstein, J. M., Echternach, J. L., & Riddle, D. L. (2003). The Hypothesis-Oriented Algorithm for Clinicians II (HOAC II): A guide for patient management. Physical Therapy, 83(5), 455-470. http://www.ncbi.nlm.nih.gov/ pubmed/12718711 Š Rudolph, K. S., Axe, M. J., Buchanan, T. S., Scholz, J. P., & Snyder-Mackler, L. (2001). Dynamic stability in the anterior cruciate ligament deficient knee. Knee Surgery, Sports Traumatology, Arthroscopy, 9(2), 62-71. http:// doi.org/10.1007/s001670000166 Š Rudolph, K. S., Axe, M. J., & Snyder-Mackler, L. (2000). Dynamic stability after ACL injury: Who can hop? Knee Surgery, Sports Traumatology, Arthroscopy, 8(5), 262-269. http://doi.org/10.1007/s001670000130 Š Rudolph, K. S., Eastlack, M. E., Axe, M. J., & Snyder-Mackler, L. (1998). 1998 Basmajian Student Award Paper: Movement patterns after anterior cruciate ligament injury: a comparison of patients who compensate well for the injury and those who require operative stabilization. Journal of Electromyography and Kinesiology: Official Journal of the International Society of Electrophysiological Kinesiology, 8(6), 349-362. http://doi.org/10.1016/ S1050-6411(97)00042-4 Š Ryan, J., Magnussen, R. A., Cox, C. L., Hurbanek, J. G., Flanigan, D. C., & Kaeding, C. C. (2014). ACL reconstruction: Do outcomes differ by sex? A systematic review. The Journal of Bone and Joint Surgery. American volume, 96(6), 507-512. http://doi.org/10.2106/JBJS.M.00299 Š Sachs, R. A., Daniel, D. M., Stone, M. L., & Garfein, R. F. (1989). Patellofemoral problems after anterior cruciate ligament reconstruction. American Journal of Sports Medicine, 17(6), 760-765. http://doi. org/10.1177/036354658901700606 Š Salmon, L., Russell, V., Musgrove, T., Pinczewski, L., & Refshauge, K. (2005). Incidence and risk factors for graft rupture and contralateral rupture after anterior cruciate ligament reconstruction. Arthroscopy: The Journal of Arthroscopic and Related Surgery, 21(8), 948-957. http://doi.org/10.1016/j.arthro.2005.04.110 Š Sanders, T. L., Maradit Kremers, H., Bryan, A. J., Larson, D. R., Dahm, D. L., Levy, B. A., … Krych, A. J. (2016). Incidence of anterior cruciate ligament tears and reconstruction: A 21-year population-based study. American Journal of Sports Medicine, 44(6). http://doi.org/10.1177/0363546516629944 Š Sapega, A. A., Moyer, R. A., Schneck, C., & Komalahiranya, N. (1990). Testing for isometry during reconstruction of the anterior cruciate ligament. The Journal of Bone and Joint Surgery. American volume, 72(2), 259-267. https://journals.lww.com/jbjsjournal/Abstract/1990/72020/Testing_for_isometry_during_ reconstruction_of_the.15.aspx Š Sato, K., Maeda, A., Takano, Y., Matsuse, H., Ida, H., & Shiba, N. (2013). Relationship between static anterior laxity using the KT-1000 and dynamic tibial rotation during motion in patients with anatomical anterior cruciate ligament reconstruction. The Kurume Medical Journal, 60(1),1-6. http://doi.org/10.2739/kurumemedj. MS62002 Š Saxby, D. J., Bryant, A. L., van Ginckel, A., Wang, Y., Wang, X., Modenese, L., Gerus, P., Konrath, J. M., Fortin, K., Wrigley, T. V., Bennell, Š K. L., Cicuttini, F. M., Vertullo, C., Feller, J. A., Whitehead, T., Gallie, P., & Lloyd, D. G. (2019). Greater magnitude tibiofemoral contact forces are associated with reduced prevalence of osteochondral pathologies 2-3 years following anterior cruciate ligament reconstruction. Knee Surgery, Sports Traumatology, Arthroscopy, 27(3), 707-715. https://doi.org/10.1007/s00167-018-5006-3 Š Schein, A., Matcuk, G., Patel, D., Gottsegen, C. J., Hartshorn, T., Forrester, D., & White, E. (2012). Structure and function, injury, pathology, and treatment of the medial collateral ligament of the knee. Emergency Radiology, 19(6), 489-498. http://doi.org/10.1007/s10140-012-1062- z Š Scherzer, C. B., Brewer, B. W., Cornelius, A. E., Van Raalte, J. L., Petitpas, A. J., Sklar, J. H., … Ditmar, T. D. (2001). Psychological skills and adherence to rehabilitation after reconstruction of the anterior cruciate ligament. Journal of Sport Rehabilitation, 10(3), 165-172. http://doi.org/10.1123/jsr.10.3.165 Š Schmitt, L. C., Paterno, M. V., & Hewett, T. E. (2012). The impact of quadriceps femoris strength asymmetry on functional performance at return to sport following anterior cruciate ligament reconstruction. Journal of Orthopaedic and Sports Physical Therapy, 42(9), 750-759. http://doi.org/10.2519/jospt.2012.4194 Š Seto, J. L., Orofino, A. S., Morrissey, M. C., Medeiros, J. M., & Mason, W. J. (1988). Assessment of quadriceps/hamstring strength, knee ligament stability, functional and sports activity levels five years after anterior cruciate ligament reconstruction. American Journal of Sports Medicine, 16(2), 170-178. http://doi. org/10.1177/036354658801600215 Š Shapiro, E. T., Richmond, J. C., Rockett, S. E., McGrath, M. M., & Donaldson, W. R. (1996). The use of a generic, patient-based health assessment (SF-36) for evaluation of patients with anterior cruciate ligament injuries. American Journal of Sports Medicine, 24(2), 196-200. http://doi.org/10.1177/036354659602400214 Š Shaw, T., Williams, M. T., & Chipchase, L. S. (2005). Do early quadriceps exercises affect the outcome of ACL reconstruction? A randomised controlled trial. The Australian Journal of Physiotherapy, 51(1), 9-17. http://www. ncbi.nlm.nih.gov/pubmed/15748120 Shelbourne, K. D., Benner, R. W., & Gray, T. (2014). Return to sports and subsequent injury rates after revision anterior cruciate ligament reconstruction with patellar tendon autograft. American Journal of Sports Medicine, 42(6), 1395-1400. http://doi.org/10.1177/0363546514524921 Š Shelbourne, K. D., & Davis, T. J. (1999). Evaluation of knee stability before and after participation in a functional sports agility program during rehabilitation after anterior cruciate ligament reconstruction. American Journal of Sports Medicine, 27(2), 156-161. http://www.ncbi.nlm.nih.gov/pubmed/10102094 Š Shelbourne, K. D., Freeman, H., & Gray, T. (2012). Osteoarthritis after anterior cruciate ligament reconstruction: The importance of regaining and maintaining full range of motion. Sports Health, 4(1), 79-85. http://doi. org/10.1177/1941738111430201 Š Shelbourne, K. D., & Gray, T. (2009). Minimum 10-year results after anterior cruciate ligament reconstruction: How the loss of normal knee motion compounds other factors related to the development of osteoarthritis after surgery. American Journal of Sports Medicine, 37(3), 471-480. http://doi.org/10.1177/0363546508326709 Š Shelbourne, K. D., Gray, T., & Haro, M. (2009). Incidence of subsequent injury to either knee within 5 years after anterior cruciate ligament reconstruction with patellar tendon autograft. American Journal of Sports Medicine, 37(2), 246-251. http://doi.org/10.1177/0363546508325665 Š Shelbourne, K. D., & Johnson, G. E. (1994). Outpatient surgical management of arthrofibrosis after anterior cruciate ligament surgery. American Journal of Sports Medicine, 22(2), 192-197. http://doi. org/10.1177/036354659402200207 Š Shelbourne, K. D., & Klotz, C. (2006). 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