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Changes in Medial Knee Displacement and Lower Extremity Kinematics in Subjects with Dynamic Knee Valgus Following Application of Non-elastic Tape to the Hip Joint while Performing an Overhead Squat

오버헤드 스쿼트를 실시하는 동안 비탄력 테이핑의 엉덩관절 적용에 따른 동적 무릎 밖굽이가 있는 대상자의 무릎 내측 전위와 하지의 운동형상학의 변화

  • Go-eun Choi (Department of Physical Therapy, Pusan National University Yangsan Hospital) ;
  • Jong-chul Jung (Department of Physical Therapy, Pusan National University Yangsan Hospital) ;
  • Dong-yun Bae (Department of Physical Therapy, Pusan National University Yangsan Hospital) ;
  • Won-young Park (Department of Physical Therapy, Pusan National University Yangsan Hospital) ;
  • Da-in An (Department of Physical Therapy, Pusan National University Yangsan Hospital) ;
  • Young-il Shin (Department of Rehabilitation Medicine, Pusan National University Yangsan Hospital) ;
  • Sung-hwa Go (Department of Rehabilitation Medicine, Pusan National University Yangsan Hospital) ;
  • Jun-seok Kim (Department of Physical Theray, College of Nursing Healthy care Sciences and Human Ecology, Dong-Eui University) ;
  • Soo-Yong Kim (Department of Physical Therapy, Pusan National University Yangsan Hospital)
  • 최고은 (양산부산대학교병원 물리치료실) ;
  • 정종철 (양산부산대학교병원 물리치료실) ;
  • 배동윤 (양산부산대학교병원 물리치료실) ;
  • 박원영 (양산부산대학교병원 물리치료실) ;
  • 안다인 (양산부산대학교병원 물리치료실) ;
  • 신용일 (양산부산대학교병원 재활의학과) ;
  • 고성화 (양산부산대학교병원 재활의학과) ;
  • 김준석 (동의대학교 물리치료학과) ;
  • 김수용 (양산부산대학교병원 물리치료실)
  • Received : 2023.11.06
  • Accepted : 2023.12.05
  • Published : 2023.12.31

Abstract

Purpose: The purpose of this study was to evaluate changes in the lower extremity kinematics of subjects with dynamic knee valgus after we applied non-elastic tape while they performed overhead squat. Methods: Twenty-five subjects (12 females, 13 males) with dynamic knee valgus participated in this study. Hip and knee joint kinematics and medial knee displacement were measured during overhead squat with and without hip correction taping. Results: Hip joint internal rotation, knee valgus, and medial knee displacement were significantly lower during overhead squat with hip correction taping than without hip correction taping, but there was no significant difference in hip joint flexion and abduction. Conclusion: Hip joint correction using non-elastic taping is recommended to subjects with dynamic knee valgus to improve their lower extremity movement and alignment during overhead squat.

Keywords

References

  1. Bell DR, Vesci B, DiStefano LJ, et al. Muscle activity and flexibility in individuals with medial knee displacement during the overhead squat. Athletic Training & Sports Health Care. 2012;4(3):117-125.  https://doi.org/10.3928/19425864-20110817-03
  2. Besier TF, Gold GE, Delp SL, et al. The influence of femoral internal and external rotation on cartilage stresses within the patellofemoral joint. Journal of Orthopaedic Research. 2008;26(12):1627-1635.  https://doi.org/10.1002/jor.20663
  3. Chae YW, Park JW, Park S. The effect of postural stability on genu varum in young adults. Journal of Korean Physical Therapy. 2012;24(6):419-422. 
  4. Clifford AM, Dillon S, Hartigan K, et al. The effects of McConnell patellofemoral joint and tibial internal rotation limitation taping techniques in people with Patellofemoral pain syndrome. Gait & Posture. 2020;82:266-272.  https://doi.org/10.1016/j.gaitpost.2020.09.010
  5. Cook G. Movement: functional movement system: screening, assessment, corrective strategies. 304 Aptos. On Target Publication. 2010. 
  6. Dinis R, Vaz R, Silva Luis, et al. Electromyographic and kinematic analysis of females with excessive medial knee displacement in the overhead squat. Journal of Electromyography and Kinesiology. 2021;57: 102530. 
  7. Hadadnezhad M, Zarea S, Sadeghi Amro Z. Immediate effect of Mulligan knee taping on pain, knee dynamic valgus, and landing kinetic in physically active female with patellofemoral pain. Journal of Anaesthesia and Pain. 2020;11(2):14-25. 
  8. Hickey A, Hopper D, Hall T, et al. The effect of the mulligan knee taping technique on patellofemoral pain and lower limb biomechanics. The American Journal of Sports Medicine. 2016;44(5):1179-1185.  https://doi.org/10.1177/0363546516629418
  9. Hirth CJ. Clinical movement analysis to identify muscle imbalances and guide exercise. International Journal of Athletic Therapy and Training. 2007;12(4):10-14.  https://doi.org/10.1123/att.12.4.10
  10. Huang YL, Lin KW, Chou LW, et al. Immediate effect of anterior cruciate ligament protective knee taping on knee landing mechanics and muscle activations during side hops. International Journal of Environmental Research and Public Health. 2021;18(19):10110. 
  11. Kim TG, Kim EK, Park JC. Immediate effects of sports taping applied on the lead knee of low-and high-handicapped golfers during golf swing. Journal of Strength and Conditioning Research. 2017;31(4):981-989.  https://doi.org/10.1519/JSC.0000000000001545
  12. MacDonald R. Taping Techniques: principles and practice. 2nd ed., London. Butterworth-Heinemann. 2004. 
  13. Macrum E. Bell DR, Boling M, et al. Effect of limiting ankle-dorsiflexion range of motion on lower extremity kinematics and muscle-activation patterns during a squat. Journal of Sport Rehabilitation. 2012;21(2): 144-150.  https://doi.org/10.1123/jsr.21.2.144
  14. Mauntel TC, Post EG, Padua DA, et al. Sex differences during an overhead squat assessment. Journal of Applied Biomechanics. 2015;31(4):244-249.  https://doi.org/10.1123/jab.2014-0272
  15. Maykut JN, Taylor-Haas JA, Paterno MV, et al. Concurrent validity and reliability of 2d kinematic analysis of frontal plane motion during running. International Journal of Sports Physical Therapy. 2015;10(2): 136-146. 
  16. Palmer K, Hebron C, Williams JM. A randomised trial into the effect of an isolated hip abductor strengthening programme and a functional motor control programme on knee kinematics and hip muscle strength. BMC musculoskeletal disorders. 2015;16:1-8.  https://doi.org/10.1186/s12891-015-0563-9
  17. Post EG, Olson M, Trigsted S, et al. The reliability and discriminative ability of the overhead squat test for observational screening of medial knee displacement. Journal of Sport Rehabilitation. 2017;26(1):1-4.  https://doi.org/10.1123/jsr.2015-0178
  18. Saber-Sheikh K, Bryant EC, Glazzard C, et al. Feasibility of using inertial sensors to assess human movement. Manual Therapy. 2010;15(1):122-125.  https://doi.org/10.1016/j.math.2009.05.009
  19. Schmidt E, Harris-Hayes M, Salsich GB. Dynamic knee valgus kinematics and their relationship to pain in women with patellofemoral pain compared to women with chronic hip joint pain. Journal of Sport and Health Science. 2019;8(5):486-493. https://doi.org/10.1016/j.jshs.2017.08.001