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Greater fear of reinjury is related to stiffened jump-landing biomechanics and muscle activation in women after ACL reconstruction

  • Knee
  • Published:
Knee Surgery, Sports Traumatology, Arthroscopy Aims and scope

Abstract

Purpose

Fear of reinjury is an important factor in determining who returns to sport following anterior cruciate ligament reconstruction (ACLR). Evidence from other musculoskeletal injuries indicates fear of reinjury may be related to stiffened movement patterns observed in individuals following ACLR. The relationship between fear of reinjury and performance on dynamic tasks, however, has not been investigated. Therefore, the purpose of this study was to investigate the relationship between fear of reinjury and jump-landing biomechanics.

Methods

Thirty-six females (height = 168.7 ± 6.5 cm, body mass = 67.2 ± 10.0 kg, age = 18.9 ± 1.5 years) with a history of ACLR (time from surgery = 26.1 ± 13.3 months) participated in the study. Each participant performed five trials of a standard jump-landing task. 3D motion capture and surface electromyography was used to record peak kinematics and lower extremity muscle activation on the injured limb during the jump landings. Spearman’s rank correlations established the relationship between TSK-11 scores and each biomechanical variable of interest.

Results

There was a significant, negative relationship between fear of reinjury (TSK-11: 19.9 ± 4.5) and knee (p = 0.006), hip (p = 0.003), and trunk flexion (p = 0.013). There was also a significant, positive relationship between hip adduction (p = 0.007), and gluteus maximus preparatory activation (p = 0.001).

Conclusions

The results of this study indicate that higher fear of reinjury is associated with stiffened movement patterns that are associated with increased risk of a second ACL injury. Similar movement patterns have been observed in patients with low back pain. Clinicians should evaluate psychological and emotional consequences of injury in addition to the physical consequences as they appear to be related.

Level of evidence

III.

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References

  1. An KN, Jacobsen MC, Berglund LJ, Chao EY (1988) Application of a magnetic tracking device to kinesiologic studies. J Biomech 21:613–620

    Article  CAS  Google Scholar 

  2. Ardern CL (2015) Anterior cruciate ligament reconstruction-not exactly a one-way ticket back to the preinjury level: a review of contextual factors affecting return to sport after surgery. Sports Health 7:224–230

    Article  Google Scholar 

  3. Ardern CL, Osterberg A, Tagesson S, Gauffin H, Webster KE, Kvist J (2014) The impact of psychological readiness to return to sport and recreational activities after anterior cruciate ligament reconstruction. Br J Sports Med 48:1613–1619

    Article  Google Scholar 

  4. Baumgart C, Schubert M, Hoppe MW, Gokeler A, Freiwald J (2017) Do ground reaction forces during unilateral and bilateral movements exhibit compensation strategies following ACL reconstruction? Knee Surg Sports Traumatol Arthrosc 25:1385–1394

    Article  Google Scholar 

  5. Bell AL, Pedersen DR, Brand RA (1990) A comparison of the accuracy of several hip center location prediction methods. J Biomech 23:617–621

    Article  CAS  Google Scholar 

  6. Bell DR, Smith MD, Pennuto AP, Stiffler MR, Olson ME (2014) Jump-landing mechanics after anterior cruciate ligament reconstruction: a landing error scoring system study. J Athl Train 49:435–441

    Article  Google Scholar 

  7. Chmielewski TL, Jones D, Day T, Tillman SM, Lentz TA, George SZ (2008) The association of pain and fear of movement/reinjury with function during anterior cruciate ligament reconstruction rehabilitation. J Orthop Sports Phys Ther 38:746–753

    Article  Google Scholar 

  8. Czuppon S, Racette B, Klein S, Harris-Hayes M (2013) Variables associated with return to sport following anterior cruciate ligament reconstruction: a systematic review. Br J Sports Med 48:356–364

    Article  Google Scholar 

  9. Decker MJ, Torry MR, Noonan TJ, Riviere A, Sterett WI (2002) Landing adaptations after ACL reconstruction. Med Sci Sports Exerc 34:1408–1413

    Article  Google Scholar 

  10. Di Stasi SL, Logerstedt D, Gardinier ES, Snyder-Mackler L (2013) Gait patterns differ between ACL-reconstructed athletes who pass return-to-sport criteria and those who fail. Am J Sports Med 41:1310–1318

    Article  Google Scholar 

  11. Gobbi A, Francisco R (2006) Factors affecting return to sports after anterior cruciate ligament reconstruction with patellar tendon and hamstring graft: a prospective clinical investigation. Knee Surg Sports Traumatol Arthrosc 14:1021–1028

    Article  Google Scholar 

  12. Griffin LY, Albohm MJ, Arendt EA, Bahr R, Beynnon BD, Demaio M et al (2006) Understanding and preventing noncontact anterior cruciate ligament injuries: a review of the Hunt Valley II meeting, January 2005. Am J Sports Med 34:1512–1532

    Article  Google Scholar 

  13. Harilainen A, Alaranta H, Sandelin J, Vanhanen I (1995) Good muscle performance does not compensate instability symptoms in chronic anterior cruciate ligament deficiency. Knee Surg Sports Traumatol Arthrosc 3:135–137

    Article  CAS  Google Scholar 

  14. Hermens HJ, Freiks B, Merletti R, Stegeman D, Rau G, Disselhorst-Klug C et al (1997) Recommendations for sensor locations on individual muscles. http://seniam.org/sensor_location.htm. Accessed 1 Nov 2015

  15. Higgins LD, Taylor MK, Park D, Ghodadra N, Marchant M, Pietrobon R et al (2007) Reliability and validity of the International Knee Documentation Committee (IKDC) Subjective Knee Form. Jt Bone Spine 74:594–599

    Article  Google Scholar 

  16. Hopkins JT, Ingersoll CD, Cordova ML, Edwards JE (2000) Intrasession and intersession reliability of the soleus H-reflex in supine and standing positions. Electromyogr Clin Neurophysiol 40:89–94

    CAS  PubMed  Google Scholar 

  17. Kvist J, Ek A, Sporrstedt K, Good L (2005) Fear of re-injury: a hindrance for returning to sports after anterior cruciate ligament reconstruction. Knee Surg Sports Traumatol Arthrosc 13:393–397

    Article  Google Scholar 

  18. Leeuw M, Goossens ME, Linton SJ, Crombez G, Boersma K, Vlaeyen JW (2007) The fear-avoidance model of musculoskeletal pain: current state of scientific evidence. J Behav Med 30:77–94

    Article  Google Scholar 

  19. Lentz TA, Zeppieri G Jr, George SZ, Tillman SM, Moser MW, Farmer KW et al (2015) Comparison of physical impairment, functional, and psychosocial measures based on fear of reinjury/lack of confidence and return-to-sport status after ACL reconstruction. Am J Sports Med 43:345–353

    Article  Google Scholar 

  20. Malinzak RA, Colby SM, Kirkendall DT, Yu B, Garrett WE (2001) A comparison of knee joint motion patterns between men and women in selected athletic tasks. Clin Biomech (Bristol Avon) 16:438–445

    Article  CAS  Google Scholar 

  21. Milne AD, Chess DG, Johnson JA, King GJ (1996) Accuracy of an electromagnetic tracking device: a study of the optimal range and metal interference. J Biomech 29:791–793

    Article  CAS  Google Scholar 

  22. Noehren B, Wilson H, Miller C, Lattermann C (2013) Long-term gait deviations in anterior cruciate ligament-reconstructed females. Med Sci Sports Exerc 45:1340–1347

    Article  Google Scholar 

  23. Padua DA, Marshall SW, Boling MC, Thigpen CA, Garrett WE, Beutler AI (2009) The landing error scoring system (LESS) is a vaild and reliable clinical assessment tool of jump-landing biomechanics. Am J Sport Med 37:1996–2002

    Article  Google Scholar 

  24. Paterno MV, Flynn K, Thomas S, Schmitt LC (2017) Self-reported fear predicts functional performance and second ACL injury after ACL reconstruction and return to sport: a pilot study. Sports Health. https://doi.org/10.1177/19417381177458061941738117745806

    Article  PubMed  PubMed Central  Google Scholar 

  25. Paterno MV, Kiefer AW, Bonnette S, Riley MA, Schmitt LC, Ford KR et al (2015) Prospectively identified deficits in sagittal plane hip-ankle coordination in female athletes who sustain a second anterior cruciate ligament injury after anterior cruciate ligament reconstruction and return to sport. Clin Biomech (Bristol Avon) 30:1094–1101

    Article  Google Scholar 

  26. Paterno MV, Schmitt LC, Ford KR, Rauh MJ, Myer GD, Huang B et al (2010) Biomechanical measures during landing and postural stability predict second anterior cruciate ligament injury after anterior cruciate ligament reconstruction and return to sport. Am J Sport Med 38:1968–1978

    Article  Google Scholar 

  27. Petersen W, Taheri P, Forkel P, Zantop T (2014) Return to play following ACL reconstruction: a systematic review about strength deficits. Arch Orthop Trauma Surg 134:1417–1428

    Article  Google Scholar 

  28. Rudolph KS, Axe MJ, Snyder-Mackler L (2000) Dynamic stability after ACL injury: who can hop? Knee Surg Sports Traumatol Arthrosc 8:262–269

    Article  CAS  Google Scholar 

  29. Scherzer CB, Brewer BW, Cornelius AE, Van Raalte JL, Petitpas AJ, Sklar JH et al (2001) Psychological skills and adherence to rehabilitation after reconstruction of the anterior cruciate ligament. J Sport Rehabil 10:165–172

    Article  Google Scholar 

  30. Shultz SJ, Nguyen AD, Leonard MD, Schmitz RJ (2009) Thigh strength and activation as predictors of knee biomechanics during a drop jump task. Med Sci Sports Exerc 41:857–866

    Article  Google Scholar 

  31. Tripp DA, Stanish W, Ebel-Lam A, Brewer BW, Birchard J (2011) Fear of reinjury, negative affect, and catastrophizing predicting return to sport in recreational athletes with anterior cruciate ligament injuries at 1 year postsurgery. Sport Exerc Perform Psychol 1:38–48

    Article  Google Scholar 

  32. Vairo GL, Myers JB, Sell TC, Fu FH, Harner CD, Lephart SM (2008) Neuromuscular and biomechanical landing performance subsequent to ipsilateral semitendinosus and gracilis autograft anterior cruciate ligament reconstruction. Knee Surg Sports Traumatol Arthrosc 16:2–14

    Article  Google Scholar 

  33. Vlaeyen JW, Linton SJ (2000) Fear-avoidance and its consequences in chronic musculoskeletal pain: a state of the art. Pain 85:317–332

    Article  CAS  Google Scholar 

  34. Waddell G, Newton M, Henderson I, Somerville D, Main CJ (1993) A Fear-Avoidance Beliefs Questionnaire (FABQ) and the role of fear-avoidance beliefs in chronic low back pain and disability. Pain 52:157–168

    Article  CAS  Google Scholar 

  35. Watson PJ, Kerry Booker C, Main CJ (1997) Evidence for the role of psychological factors in abnormal paraspinal activity in patients with chronic low back pain. J Musculoskelet Pain 5:41–56

    Article  Google Scholar 

  36. Woby SR, Roach NK, Urmston M, Watson PJ (2005) Psychometric properties of the TSK-11: a shortened version of the Tampa Scale for Kinesiophobia. Pain 117:137–144

    Article  Google Scholar 

  37. Yu B, Gabriel D, Nobel L, An K-N (1999) Estimate of the optimum cutoff frequency for the butterworth low-pass digital filter. J Appl Biomech 15:318–329

    Article  Google Scholar 

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Acknowledgements

Funding was provided by Great Lakes Athletic Trainers Association (Grant no. MSN192103).

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Correspondence to Stephanie M. Trigsted.

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Trigsted, S.M., Cook, D.B., Pickett, K.A. et al. Greater fear of reinjury is related to stiffened jump-landing biomechanics and muscle activation in women after ACL reconstruction. Knee Surg Sports Traumatol Arthrosc 26, 3682–3689 (2018). https://doi.org/10.1007/s00167-018-4950-2

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