Estimation of joint and muscle forces during exercise in various postures.

An understanding of joint and muscle forces is essential for prescribing appropriate exercises for patients with musculoskeletal disorders. This study aimed to determine the joint and muscle forces during exercises in the sitting or supine posture. Ten healthy males (age: 25.4 ± 2.6 years) performed...

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Publicado en:Journal of Bodywork & Movement Therapies Vol. 40; pp. 263 - 270
Autores principales: Takeshita, Yasufumi, Kawada, Masayuki, Miyazaki, Takasuke, Araki, Sota, Matsuzawa, Yuta, Higashi, Naoto, Hayashi, Hiroyuki, Yamaguchi, Yuya, Nakatsuji, Shintaro, Nakai, Yuki, Kiyama, Ryoji
Formato: research Journal Article
Publicado: Churchill Livingstone, Inc. Oct2024
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Oct2024
      vid: 40
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      pub: Churchill Livingstone, Inc.
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        10.1016/j.jbmt.2024.04.043
        181035805
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        atl: Estimation of joint and muscle forces during exercise in various postures.
      aug:
        au:
          Takeshita, Yasufumi
          Kawada, Masayuki
          Miyazaki, Takasuke
          Araki, Sota
          Matsuzawa, Yuta
          Higashi, Naoto
          Hayashi, Hiroyuki
          Yamaguchi, Yuya
          Nakatsuji, Shintaro
          Nakai, Yuki
          Kiyama, Ryoji
        affil: Course of Health Sciences, Graduate School of Health Sciences, Kagoshima University, Kagoshima, Japan
      sug:
        subj:
          Posture Physiology
          Muscle, Skeletal Physiology
          Muscle Contraction Physiology
          Biomechanics
          Exercise Physiology
          Sitting Physiology
          Supine Position Physiology
          Training Effect (Physiology) Evaluation
          Human
          Adult
          Male
          Gait
          Squatting
          Algorithms
          Lumbar Vertebrae Physiology
          Adult: 19-44 years
          Male
      ab: An understanding of joint and muscle forces is essential for prescribing appropriate exercises for patients with musculoskeletal disorders. This study aimed to determine the joint and muscle forces during exercises in the sitting or supine posture. Ten healthy males (age: 25.4 ± 2.6 years) performed three standing exercises (gait, squat, and forward lunge) and three exercises in sitting or supine postures (knee extension while sitting, straight leg raise, and bridging). The joint and muscle forces of the lumbar spine and lower extremities were estimated using the musculoskeletal model simulation based on the motion capture data. In the analysis of the exercises in the sitting or supine postures, the external forces acting from the chair or floor on the body were estimated using the optimization algorithm. The hip and tibiofemoral joint force, as well as muscle force such as VL, GMAX, and GAS, exhibited significantly greater magnitudes during standing exercises. However, the L4-L5 joint force during bridging was equivalent to those during gait and squat. Bridging generated significantly larger muscle force in ES and MF than those during gait. Exercises performed in the sitting or supine postures induced a larger load on L4-L5 and hip joint and trunk extensor muscle forces than exercises in the standing posture. While the joint and muscle forces were generally larger during standing rather than sitting or supine exercises, certain notable exceptions were observed, such as bridging exercise. It suggested that physical therapists should use caution when performing supine exercise on patients with low back pain. • The joint and muscle forces during sitting and supine exercises were analyzed. • The external forces were estimated using the optimization algorithm. • Bridging simulation results in large joint force on the lumbar joint. • Some sitting and supine exercises induce a larger load than standing exercises.
      pubtype: Academic Journal
      doctype:
        research
        Journal Article
      ougenre: Article
    language: English
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