Literature DB >> 25212407

An acoustic startle alters knee joint stiffness and neuromuscular control.

A I DeAngelis1, A R Needle2, T W Kaminski3, T R Royer3, C A Knight3, C B Swanik3.   

Abstract

Growing evidence suggests that the nervous system contributes to non-contact knee ligament injury, but limited evidence has measured the effect of extrinsic events on joint stability. Following unanticipated events, the startle reflex leads to universal stiffening of the limbs, but no studies have investigated how an acoustic startle influences knee stiffness and muscle activation during a dynamic knee perturbation. Thirty-six individuals were tested for knee stiffness and muscle activation of the quadriceps and hamstrings. Subjects were seated and instructed to resist a 40-degree knee flexion perturbation from a relaxed state. During some trials, an acoustic startle (50 ms, 1000 Hz, 100 dB) was applied 100 ms prior to the perturbation. Knee stiffness, muscle amplitude, and timing were quantified across time, muscle, and startle conditions. The acoustic startle increased short-range (no startle: 0.044 ± 0.011 N·m/deg/kg; average startle: 0.047 ± 0.01 N·m/deg/kg) and total knee stiffness (no startle: 0.036 ± 0.01 N·m/deg/kg; first startle 0.027 ± 0.02 N·m/deg/kg). Additionally, the startle contributed to decreased [vastus medialis (VM): 13.76 ± 33.6%; vastus lateralis (VL): 6.72 ± 37.4%] but earlier (VM: 0.133 ± 0.17 s; VL: 0.124 ± 0.17 s) activation of the quadriceps muscles. The results of this study indicate that the startle response can significantly disrupt knee stiffness regulation required to maintain joint stability. Further studies should explore the role of unanticipated events on unintentional injury.
© 2014 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  Anterior cruciate ligament; columnar buckling; injury prevention; joint stability

Mesh:

Year:  2014        PMID: 25212407     DOI: 10.1111/sms.12315

Source DB:  PubMed          Journal:  Scand J Med Sci Sports        ISSN: 0905-7188            Impact factor:   4.221


  5 in total

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Authors:  Charles Buz Swanik
Journal:  J Athl Train       Date:  2015-09-04       Impact factor: 2.860

2.  Negative Emotion and Joint-Stiffness Regulation Strategies After Anterior Cruciate Ligament Injury.

Authors:  Yong Woo An; Andrea DiTrani Lobacz; Jochen Baumeister; William C Rose; Jill S Higginson; Jeffrey Rosen; Charles Buz Swanik
Journal:  J Athl Train       Date:  2019-09-25       Impact factor: 2.860

3.  The Effects of Cognitive Loading on Motor Behavior in Injured Individuals: A Systematic Review.

Authors:  Christopher J Burcal; Alan R Needle; Lisa Custer; Adam B Rosen
Journal:  Sports Med       Date:  2019-08       Impact factor: 11.136

4.  Risk factors of young males with physically demanding occupations having accumulated damage of anterior cruciate ligament.

Authors:  Wang Yu; Liu Xianmin; Xiang Liangbi; Li Chunbao
Journal:  Orthop Surg       Date:  2022-04-27       Impact factor: 2.279

5.  Effect of a Concussion on Anterior Cruciate Ligament Injury Risk in a General Population.

Authors:  April L McPherson; Matthew B Shirley; Nathan D Schilaty; Dirk R Larson; Timothy E Hewett
Journal:  Sports Med       Date:  2020-06       Impact factor: 11.136

  5 in total

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