California Physical Therapy Ebook Continuing Education

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). What I have learned about the ACL: Utilizing a progressive rehabilitation scheme to achieve total knee symmetry after anterior cruciate ligament reconstruction. Journal of Orthopaedic Science: Official Journal of the Japanese Orthopaedic Association, 11(3), 318-325. http://doi.org/10.1007/ s00776-006-1007-z Š Shelbourne, K. D., & Muthukaruppan, Y. (2005). Subjective results of nonoperatively treated, acute, isolated posterior cruciate ligament injuries. Arthroscopy: The Journal of Arthroscopic and Related Surgery: Official Publication of the Arthroscopy Association of North America and the International Arthroscopy Association, 21(4), 457-461. http://doi.org/10.1016/j.arthro.2004.11.013 Š Traumatology, Arthroscopy: Official Journal of the ESSKA, 7(2), 85-92. http://doi.org/10.1007/s001670050127 Š Shelbourne, K. D., Patel, D. V, & Martini, D. J. (1996). Classification and management of arthrofibrosis of the knee after anterior cruciate ligament reconstruction. American Journal of Sports Medicine, 24(6), 857-862. Retrieved from http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&l ist_uids=8947412 Š Shelbourne, K. D., Sullivan, A. N., Bohard, K., Gray, T., & Urch, S. E. (2009). Return to basketball and soccer after anterior cruciate ligament reconstruction in competitive school-aged athletes. Sports Health, 1(3), 236-241. http://doi.org/10.1177/1941738109334275 Shelbourne, K. D., Urch, S. E., Gray, T., & Freeman, H. (2012). Loss of normal knee motion after anterior cruciate ligament reconstruction is associated with radiographic arthritic changes after surgery. American Journal of Sports Medicine, 40(1), 108-113. http://doi. org/10.1177/0363546511423639 Š Shelbourne, K. D., Wilckens, J. H., Mollabashy, A., & DeCarlo, M. (1991). Arthrofibrosis in acute anterior cruciate ligament reconstruction. The effect of timing of reconstruction and rehabilitation. American Journal of Sports Medicine, 19(4), 332-336. http://doi.org/10.1177/036354659101900402 Š Shimokochi, Y., & Shultz, S. J. (2008). Mechanisms of noncontact anterior cruciate ligament injury. Journal of Athletic Training, 43(4), 396-408. http://doi.org/10.4085/1062-6050-43.4.396 Š Sinacore, J. A., Evans, A. M., Lynch, B. N., Joreitz, R. E., Irrgang, J. J., & Lynch, A. D. (2017). Diagnostic Accuracy of Handheld Dynamometry and 1-Repetition-Maximum Tests for Identifying Meaningful Quadriceps Strength Asymmetries. Journal of Orthopaedic & Sports Physical Therapy, 47(2), 97-107. https://doi. org/10.2519/jospt.2017.6651 Š Skolasky, R. L., Riley, L. H., III, Maggard, A. M., Bedi, S., & Wegener, S. T. (2013). Functional recovery in lumbar spine surgery: A controlled trial of health behavior change counseling to improve outcomes. Contemporary Clinical Trials, 36(1), 207-217. http://doi.org/10.1016/j.cct.2013.06.018 Š Smith, A., Capin, J. J., Zarzycki, R., & Snyder-Mackler, L. (2019). Athletes With Bone-Patellar Tendon Bone Autograft for ACL Reconstruction Were Months Slower to Meet Rehabilitation Milestones and Return to Sport Criteria Than Athletes With Hamstring Tendon Autograft or Soft Tissue Allograft: Secondary Analysis From the. J Orthop Sports Phys Ther, Epub ahead, 1-28. https://doi.org/10.11428/jhej1987.42.189 Š Smith, F. W., Rosenlund, E. A., Aune, A. K., MacLean, J. A., & Hillis, S. W. (2004). Subjective functional assessments and the return to competitive sport after anterior cruciate ligament reconstruction. British Journal of Sports Medicine, 38(3), 279-284. http://doi.org/10.1136/bjsm.2002.001982 Š Smith, H. C., Johnson, R. J., Shultz, S. J., Tourville, T., Holterman, L. A., Slauterbeck, J., … Beynnon, B. D. (2012). A prospective evaluation of the Landing Error Scoring System (LESS) as a screening tool for anterior cruciate ligament injury risk. American Journal of Sports Medicine, 37(3), 521-526. http://doi. org/10.1177/0363546511429776 Š Smith, S. D., LaPrade, R. F., Jansson, K. S., Årøen, A., & Wijdicks, C. A. (2014). Functional bracing of ACL injuries: Current state and future directions. Knee Surgery, Sports Traumatology, Arthroscopy, 22(5), 1131- 1141. http://doi.org/10.1007/s00167-013-2514-z Š Smith, T. O., Davies, L., & Hing, C. B. (2010). Early versus delayed surgery for anterior cruciate ligament reconstruction: A systematic review and meta-analysis. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 18(3), 304-311. http://doi.org/10.1007/s00167-009-0965-z Š Snyder-Mackler, L., Delitto, A., Bailey, S. L., & Stralka, S. W. (1995). Strength of the quadriceps femoris muscle and functional recovery after reconstruction of the anterior cruciate ligament. A prospective, randomized clinical trial of electrical stimulation. The Journal of Bone and Joint Surgery, 77(8), 1166-1173. https://journals. lww.com/jbjsjournal/Abstract/1995/08000/Strength_of_the_Quadriceps_Femoris_Muscle_and.4.aspx Š Snyder-Mackler, L., Delitto, A., Stralka, S. W., & Bailey, S. L. (1994). Use of electrical stimulation to enhance recovery of quadriceps femoris muscle force production in patients following anterior cruciate ligament reconstruction. Physical Therapy, 74(10), 901-907. http://doi.org/10.1093/ptj/74.10.901 Š Snyder-Mackler, L., Fitzgerald, G. K., Bartolozzi, A. R., III, Ciccotti, M. G. (1997). The relationship between passive joint laxity and functional outcome after anterior cruciate ligament injury. American Journal of Sports Medicine, 25(2), 191-195. http://doi.org/10.1177/036354659702500209 Š Spencer, J. D., Hayes, K. C., & Alexander, I. J. (1984). Knee joint effusion and quadriceps reflex inhibition in man. Archives of Physical Medicine and Rehabilitation, 65(4), 171-177. http://www.ncbi.nlm.nih.gov/ pubmed/6712434 Š Spindler, K. P., Huston, L. J., Chagin, K. M., Kattan, M. W., Reinke, E. K., Amendola, A., Andrish, J. T., Brophy, R. H., Cox, C. L., Dunn, W. Š R., Flanigan, D. C., Jones, M. H., Kaeding, C. C., Magnussen, R. A., Marx, R. G., Matava, M. J., McCarty, E. C., Parker, R. D., Pedroza, A. D., … Wright, R. W. (2018). Ten-Year Outcomes and Risk Factors After Anterior Cruciate Ligament Reconstruction: A MOON Longitudinal Prospective Cohort Study. The American Journal of Sports Medicine, 46(4), 815-825. https://doi.org/10.1177/0363546517749850 Š Spindler, K. P., Huston, L. J., Wright, R. W., Kaeding, C. C., Marx, R. G., Amendola, A., … MOON Group. R. (2011). The prognosis and predictors of sports function and activity at minimum 6 years after anterior cruciate ligament reconstruction: A population cohort study. American Journal of Sports Medicine, 39(2), 348-359. http://doi.org/10.1177/0363546510383481 Š Spindler, K. P., Kuhn, J. E., Freedman, K. B., Matthews, C. E., Dittus, R. S., & Harrell, F. E., Jr., (2004). Anterior cruciate ligament reconstruction autograft choice: Bone-tendon-bone versus hamstring: Does it really matter? A systematic review. American Journal of Sports Medicine, 32(8), 1986-1995. Š Steffen, K., Emery, C. A., Romiti, M., Kang, J., Bizzini, M., Dvorak, J., … Meeuwisse, W. H. (2013). High adherence to a neuromuscular injury prevention programme (FIFA 11+) improves functional balance and reduces injury risk in Canadian youth female football players: A cluster randomised trial. British Journal of Sports Medicine, 47(12), 794-802. http://doi.org/10.1136/bjsports-2012-091886 Š Sturgill, L. P., Snyder-Mackler, L., Manal, T. J., & Axe, M. J. (2009). Interrater reliability of a clinical scale to assess knee joint effusion. The Journal of Orthopaedic and Sports Physical Therapy, 39(12), 845-849. http:// doi.org/10.2519/jospt.2009.3143

Š Swirtun, L. R., Jansson, A., Renström, P. (2005). The effects of a functional knee brace during early treatment of patients with a nonoperated acute anterior cruciate ligament tear: A prospective randomized study. Clinical Journal of Sport Medicine: Official Journal of the Canadian Academy of Sport Medicine, 15(5), 299-304. https://journals.lww.com/cjsportsmed/Abstract/2005/09000/The_Effects_of_a_Functional_Knee_Brace_ During.4.aspx Š Tagesson, S., Oberg, B., Good, L., & Kvist, J. (2008). A comprehensive rehabilitation program with quadriceps strengthening in closed versus open kinetic chain exercise in patients with anterior cruciate ligament deficiency: A randomized clinical trial evaluating dynamic tibial translation and muscle function. American Journal of Sports Medicine, 36(2), 298-307. http://doi.org/10.1177/0363546507307867 Taketomi, S., Inui, H., Tahara, K., Shirakawa, N., Tanaka, S., & Nakagawa, T. (2017). Effects of initial graft tension on femoral tunnel widening after anatomic anterior cruciate ligament reconstruction using a bone – patellar tendon – bone graft. Archives of Orthopaedic and Trauma Surgery, 137(9), 1285-1291. http://doi.org/10.1007/s00402-017-2728-5 Š Tan, S. H. S., Lau, B. P. H., Khin, L. W., & Lingaraj, K. (2016). The importance of patient sex in the outcomes of anterior cruciate ligament reconstructions. American Journal of Sports Medicine, 44(1), 242-254. http://doi. org/10.1177/0363546515573008 Š Tandogan, R. N., Taşer, O., Kayaalp, A., Taşkiran, E., Pinar, H., Alparslan, B., … Alturfan, A. (2004). Analysis of meniscal and chondral lesions accompanying anterior cruciate ligament tears: Relationship with age, time from injury, and level of sport. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 12(4), 262-270. http://doi.org/10.1007/s00167-003-0398-z Š Taylor, D. C., DeBerardino, T. M., Nelson, B. 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Coper Classification Early After Anterior Cruciate Ligament Rupture Changes With Progressive Neuromuscular and Strength Training and Is Associated With 2- Year Success: The Delaware- Oslo ACL Cohort Study. The American Journal of Sports Medicine, Epub ahead of print. https://doi. org/10.1177/0363546519825500 Š Thomeé, P., Währborg, P., Börjesson, M., Thomeé, R., Eriksson, B. I., & Karlsson, J. (2006). A new instrument for measuring self-efficacy in patients with an anterior cruciate ligament injury. Scandinavian Journal of Medicine and Science in Sports, 16(3), 181-187. http://doi.org/10.1111/j.1600-0838.2005.00472.x Š Thomeé, P., Währborg, P., Borjesson, M., Thomeé, R., Eriksson, B. I., & Karlsson, J. (2007). Self-efficacy, symptoms and physical activity in patients with an anterior cruciate ligament injury: A prospective study. Scandinavian Journal of Medicine and Science in Sports, 17(3), 238-245. http://doi.org/10.1111/j.1600- 0838.2006.00557.x Š Thomeé, P., Währborg, P., Börjesson, M., Thomeé, R., Eriksson, B. I., & Karlsson, J. (2008). Self-efficacy of knee function as a pre- operative predictor of outcome 1 year after anterior cruciate ligament reconstruction. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 16(2), 118-127. http://doi. org/10.1007/s00167-007-0433-6 Š Thomeé, R., Kaplan, Y., Kvist, J., Myklebust, G., Risberg, M. A., Theisen, D., … Witvrouw, E. (2011). Muscle strength and hop performance criteria prior to return to sports after ACL reconstruction. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 19(11), 1798-1805. http://doi.org/10.1007/s00167- 011-1669-8 Š Thomeé, R., Neeter, C., Gustavsson, A., Thomeé, P., Augustsson, J., Eriksson, B., & Karlsson, J. (2012). Variability in leg muscle power and hop performance after anterior cruciate ligament reconstruction. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 20(6), 1143-1151. http://doi. org/10.1007/s00167-012-1912-y Š Tibor, L. M., Long, J. L., Schilling, P. L., Lilly, R. J., Carpenter, J. E., & Miller, B. S. (2010). Clinical outcomes after anterior cruciate ligament reconstruction: A meta-analysis of autograft versus allograft tissue. Sports Health, 2(1), 56-72. http://doi.org/10.1177/1941738109347984 Tourville, T. W., Jarrell, K. M., Naud, S., Slauterbeck, J. R., Johnson, R. J., & Beynnon, B. D. (2013). Relationship between isokinetic strength and tibiofemoral joint space width changes after anterior cruciate ligament reconstruction. American Journal of Sports Medicine, 1-10. http://doi.org/10.1177/0363546513510672 Š Trimble, M. H., & Enoka, R. M. (1991). Mechanisms underlying the training effects associated with neuromuscular electrical stimulation. Physical Therapy, 71(4), 273-80; discussion 280-282. http://www.ncbi.nlm. nih.gov/pubmed/2008451 Š Tyler, T. F., McHugh, M. P., Gleim, G. W., & Nicholas, S. J. (1998). The effect of immediate weightbearing after anterior cruciate ligament reconstruction. Clinical Orthopaedics and Related Research, 357, 141-148. http:// doi.org/10.1097/00003086-199812000-00019 Š Uçar, M., Koca, I., Eroglu, M., Eroglu, S., Sarp, U., Arik, H. O., & Yetisgin, A. (2014). Evaluation of open and closed kinetic chain exercises in rehabilitation following anterior cruciate ligament reconstruction. Journal of Physical Therapy Science, 26(12), 1875-1878. http://doi.org/10.1589/jpts.26.1875 Š Uhorchak, J. M., Scoville, C. R., Williams, G. N., Arciero, R. A., St. Pierre, P., & Taylor, D. C. (2003). Risk factors associated with noncontact injury of the anterior cruciate ligament. a prospective four-year evaluation of 859 West Point cadets. American Journal of Sports Medicine, 31(6), 831-842. http://doi.org//10.1177/036354650 30310061801 Š Undheim, M. B., Cosgrave, C., King, E., Strike, S., Marshall, B., Falvey, É., & Franklyn-Miller, A. (2015). Isokinetic muscle strength and readiness to return to sport following anterior cruciate ligament reconstruction: Is there an association? A systematic review and a protocol recommendation. British Journal of Sports Medicine, 49(20), 1305-1310. http://doi.org/10.1136/bjsports-2014-093962 Š Van Dyck, P., De Smet, E., Veryser, J., Lambrecht, V., Gielen, J. L., Vanhoenacker, F. M., … Parizel, P. M. (2012). Partial tear of the anterior cruciate ligament of the knee: Injury patterns on MR imaging. Knee Surgery, Sports Traumatology, Arthroscopy: Official Journal of the ESSKA, 20(2), 256-261. http://doi.org/10.1007/s00167-011- 1617-7 Š van Meer, B. L., Meuffels, D. E., van Eijsden, W. A., Verhaar, J. A. N., Bierma-Zeinstra, S. M. A., & Reijman, M. (2015). Which determinants predict tibiofemoral and patellofemoral osteoarthritis after anterior cruciate ligament injury? A systematic review. British Journal of Sports Medicine, 49(15), 975-983. http://doi. org/10.1136/bjsports-2013-093258 Š van Meer, B. L., Meuffels, D. E., Vissers, M. M., Bierma-Zeinstra, S. M. A., Verhaar, J. A. N., Terwee, C. B., & Reijman, M. (2013). Knee Injury and Osteoarthritis Outcome Score or International Knee Documentation Committee Subjective Knee Form: Which questionnaire is most useful to monitor patients with an anterior cruciate ligament rupture in the short term? Arthroscopy, 29(4), 701-715. http://doi.org/10.1016/j. arthro.2012.12.015 Š van Melick, N., Pronk, Y., Nijhuis-van der Sanden, M., Rutten, S., van Tienen, T., & Hoogeboom, T. (2021). Meeting movement quantity or quality return to sport criteria is associated with reduced second ACL injury rate. 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Annals of the Rheumatic Diseases, 63(3), 269-273. http://doi.org/10.1136/ard.2003.008136 Š Waldén, M., Krosshaug, T., Bjørneboe, J., Andersen, T. E., Faul, O., & Hägglund, M. (2015). Three distinct mechanisms predominate in non-contact anterior cruciate ligament injuries in male professional football players: A systematic video analysis of 39 cases. British Journal of Sports Medicine, 49, 1452-1460. http://doi. org/10.1136/bjsports-2014-094573 Š Ward, A. R., Robertson, V. J., & Ioannou, H. (2004). The effect of duty cycle and frequency on muscle torque production using kilohertz frequency range alternating current. Medical Engineering and Physics, 26(7), 569- 579. http://doi.org/10.1016/j.medengphy.2004.04.007 Webster, K. E., & Feller, J. A. (2016). Exploring the high reinjury rate in younger patients undergoing anterior cruciate ligament reconstruction. American Journal of Sports Medicine, 44(11), 2827-2832. http://doi.org/10.1177/0363546516651845 Š Webster, K. E., Feller, J. 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