The effect of silicone ankle sleeves and lace-up ankle braces on neuromuscular control, joint torque, and cutting agility.

To evaluate the effects of silicone ankle sleeves (SASs) and lace-up ankle braces (LABs) on neuromuscular control, net joint torques, and cutting agility in healthy, active individuals. Markerless motion-capture technology tracked subjects fitted with SASs, LABs, or no brace while they performed the...

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Publicado en:Journal of Orthopaedics Vol. 20; pp. 359 - 367
Autores principales: Cinque, Mark E., Bodendorfer, Blake M., Shu, Henry T., Arnold, Nicholas A., Gray, Aaron D., Summerhays, Benjamin J., Guess, Trent M., Sherman, Seth L.
Formato: research tables/charts Journal Article
Publicado: Professor PK Surendran Memorial Education Foundation Jul2020
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Jul2020
      vid: 20
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      pub: Professor PK Surendran Memorial Education Foundation
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        145406341
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        10.1016/j.jor.2020.05.019
        145406341
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        atl: The effect of silicone ankle sleeves and lace-up ankle braces on neuromuscular control, joint torque, and cutting agility.
      aug:
        au:
          Cinque, Mark E.
          Bodendorfer, Blake M.
          Shu, Henry T.
          Arnold, Nicholas A.
          Gray, Aaron D.
          Summerhays, Benjamin J.
          Guess, Trent M.
          Sherman, Seth L.
        affil: Department of Orthopaedic Surgery, Stanford University School of Medicine, Stanford, CA, USA
      sug:
        subj:
          Orthoses
          Neuromuscular Control
          Joints Physiology
          Torque
          Agility
          Human
          Male
          Female
          Young Adult
          Descriptive Statistics
          Range of Motion
          Male
          Female
      ab: To evaluate the effects of silicone ankle sleeves (SASs) and lace-up ankle braces (LABs) on neuromuscular control, net joint torques, and cutting agility in healthy, active individuals. Markerless motion-capture technology tracked subjects fitted with SASs, LABs, or no brace while they performed the movements: Y-excursion, left cutting, right cutting, single-leg drop vertical jump (SLDVJ), 45-degree bound, and single-leg squat (SLS). University Laboratory. Ten healthy, active individuals (5 males and 5 females, mean ± SD 23.60 ± 1.43 years of age). Degrees of joint range of motion (ROM), Newton-meters of joint torque, time to perform a cutting maneuver. SASs and LABs resulted in significantly different knee and ankle ROM and hip internal rotation in the SLDVJ, SLS, Y-excursion, cutting maneuver, and 45-degree bound when compared to control (p <.05). Both ankle and knee torque were significantly reduced in the 45-degree bound and cutting movements with both types of PABs (p <.05). There were minimal differences between the SASs and LABs for all conditions. There were no statistically significant differences in cutting times for any of the 3 conditions. Both SAS and LAB positively impacted neuromuscular control, reduced net joint torque, and neither impaired cutting agility when compared to control. • Silicone ankle sleeves (SAS) and lace-up ankle braces (LAB) reduced net joint torque. • SAS and LAB improved neuromuscular control during dynamic movement. • SAS and LAB did not impact cutting agility.
      pubtype: Academic Journal
      doctype:
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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