Banner
References
Test dinamometrici per il return to training dopo ricostruzione artroscopica di LCA
published in April - June 2023 - Sport&Medicina - issue n.2

There are no translations available.

Bibliografia

  1. Bisciotti GN, Quaglia A, Belli A, Carimati G, Volpi P. Return to sports after ACL reconstruction: a new functional test protocol. Muscles Ligaments Tendons J 2016; 6(4):499-509.
  2. McLean SG, Myers PT, Neal RJ, Walters MR. A quantitative analysis of knee joint kinematics during the sidestep cutting maneuver. Implications for non-contact anterior cruciate ligament injury. Bull Hosp Jt Dis 1998;57(1):30-8.
  3. Powers CM, Fisher B. Mechanisms underlying ACL injury-prevention training: the brain-behavior relationship. J Athl Train 2010; 45(5):513-5.
  4. Peterson JR, Peterson ED. Anterior cruciate ligament injury in the athlete--an update in prevention strategies. S D Med 2012; 65(11):421, 423, 425 passim.
  5. McLean SG, Neal RJ, Myers PT, Walters MR. Knee joint kinematics during the sidestep cutting maneuver: potential for injury in women. Med Sci Sports Exerc. 1999; 31(7):959-68.
  6. McLean SG. The ACL injury enigma: we can’t prevent what we don’t understand. J Athl Train. 2008; 43(5):538-40.
  7. Chappell JD, Yu B, Kirkendall DT, Garrett WE. A comparison of knee kinetics between male and female recreational athletes in stop-jump tasks. Am J Sports Med 2002; 30(2):261-7.
  8. Coats-Thomas MS, Miranda DL, Badger GJ, Fleming BC. Effects of ACL reconstruction surgery on muscle activity of the lower limb during a jump-cut maneuver in males and females. J Orthop Res 2013; 31(12):1890-6.
  9. Dedinsky R, Baker L, Imbus S, Bowman M, Murray L. Exercises that facilitate optimal hamstring and quadriceps co-activation to help decrease ACL injury risk in healthy females: a systematic review of the literature. Int J Sports Phys Ther 2017; 12(1):3-15.
  10. Ueno R, Navacchia A, Schilaty ND, Myer GD, Hewett TE, Bates NA. Hamstrings contraction regulates the magnitude and timing of the peak ACL loading during the drop vertical jump in female athletes. Orthop J Sports Med 2021; 9(9):23259671211034487.
  11. Sigward SM, Powers CM. Loading characteristics of females exhibiting excessive valgus moments during cutting. Clin Biomech (Bristol, Avon) 2007; 22(7):827-33.
  12. Mariani PP, Cerulli G, Iannella G, Giacobbe M. Anterior cruciate ligament. In: Arthroscopic and sport injuries: Application in high-level atlete. Springer International Publishing; 2016: 339-46.
  13. Oranchuk DJ, Hopkins WG, Nelson AR, Storey AG, Cronin JB. The effect of regional quadriceps anatomical parameters on angle-specific isometric torque expression. Appl Physiol Nutr Metab 2021; 46(4):368-78.
  14. Wilk KE, Keirns MA, Andrews JR, Clancy WG, Arrigo CA, Erber DJ. Anterior cruciate ligament reconstruction rehabilitation: A six month follow up of isokinetic testing in recreational athletes. Isokinetic and Exercise Science 1991; 1(1):36-43.
  15. Fibiger W. Developing an objective criteria for recommendations to athletes prior to a return to full training following knee ACL reconstruction. Med Sport 2014; 18(4):147-52.
  16. Bisciotti GN, Volpi P. Legamento crociato anteriore. Dal post-chirurgico al ritorno allo sport. Milano: Edra Edizioni; 2023.
  17. Rocchi JE, Labanca L, Laudani L, Minganti C, Mariani PP, Macaluso A. Timing of Muscle Activation Is Altered During Single-Leg Landing Tasks After Anterior Cruciate Ligament Reconstruction at the Time of Return to Sport. Clin J Sport Med 2020; 30(6):e186-e193.
  18. Navacchia A, Ueno R, Ford KR, DiCesare CA, Myer GD, Hewett TE. EMG-informed musculoskeletal modeling to estimate realistic knee anterior shear force during drop vertical jump in female athletes. Ann Biomed Eng 2019; 47(12):2416-30.
  19. Rudolph KS, Eastlack ME, Axe MJ, Snyder-Mackler L. 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. J Electromyogr Kinesiol 1998; 8(6):349-62.
  20. Shanbehzadeh S, Mohseni Bandpei MA, Ehsani F. Knee muscle activity during gait in patients with anterior cruciate ligament injury: a systematic review of electromyographic studies. Knee Surg Sports Traumatol Arthrosc 2017; 25(5):1432-42.
  21. Beard DJ, Kyberd PJ, Dodd CA, Simpson AH, O’Connor JJ. Proprioception in the knee. J Bone Joint Surg Br 1994; 76(6):992-3.
  22. Burden AM, Trew M, Baltzopoulos V. Normalisation of gait EMGs: a re-examination. J Electromyogr Kinesiol 2003; 13(6):519-32.
  23. Hurd WJ, Snyder-Mackler L. Knee instability after acute ACL rupture affects movement patterns during the mid-stance phase of gait. J Orthop Res 2007; 25(10):1369-77.
  24. Jacobson WC, Gabel RH, Brand RA. Surface vs. fine-wire electrode ensemble-averaged signals during gait. J Electromyogr Kinesiol 1995; 5(1):37-44.
  25. Bai D, Okada Y, Fukumoto T, Ogawa M, Tanaka Y. The muscle pre-activity timing of the hamstrings and quadriceps during 180° and 360° rotational jump landings in healthy female subjects. Asia Pac J Sports Med Arthrosc Rehabil Technol 2019; 17:16-20.
  26. Shultz SJ, Perrin DH, Adams JM, Arnold BL, Gansneder BM, Granata KP. Assessment of neuromuscular response characteristics at the knee following a functional perturbation. J Electromyogr Kinesiol 2000; 10(3):159-70.
  27. Bisciotti GN, Volpi P. Return to play. In: Volpi P (ed). Football doctor manual. Trento: Edra Edition, 2018: 247-59.