Effect of viscoelastic properties on passive torque variations at different velocities of the knee joint extension and flexion movements
This study aimed to investigate the rate of passive torque variations of human knee joint in the different velocities of knee flexion and extension movements. Ten healthy men were invited to participate in the tests. All passive torque tests were performed for the knee joint extension and flexion on...
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Published in: | Medical & biological engineering & computing Vol. 58; no. 11; pp. 2893 - 2903 |
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Language: | English |
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01-11-2020
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Abstract | This study aimed to investigate the rate of passive torque variations of human knee joint in the different velocities of knee flexion and extension movements. Ten healthy men were invited to participate in the tests. All passive torque tests were performed for the knee joint extension and flexion on the sagittal plane in three different angular velocities of 15, 45, and 120°/s; in 5 consecutive cycles; and within 0° to 100° range of motion. The electrical activity of knee joint extensor and flexor muscles was recorded until there was no muscle activity signal. A Three-element Solid Model (SLS) was used to obtain the viscose and elastic coefficients. As the velocity increases, the stretch rate in velocity-independent tissues increases, and the stretch rate in velocity-dependent tissues decreases. By increasing the velocity, the resistance of velocity-dependent parts increases, and the velocity-independent parts are not affected by velocity. Since the first torque that resists the joint movement is passive torque, the elastic and viscous torques should be simultaneously used. It is better to perform the movement at a low velocity so that less energy is lost. The viscoelastic resistance of tissues diminishes.
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AbstractList | This study aimed to investigate the rate of passive torque variations of human knee joint in the different velocities of knee flexion and extension movements. Ten healthy men were invited to participate in the tests. All passive torque tests were performed for the knee joint extension and flexion on the sagittal plane in three different angular velocities of 15, 45, and 120°/s; in 5 consecutive cycles; and within 0° to 100° range of motion. The electrical activity of knee joint extensor and flexor muscles was recorded until there was no muscle activity signal. A Three-element Solid Model (SLS) was used to obtain the viscose and elastic coefficients. As the velocity increases, the stretch rate in velocity-independent tissues increases, and the stretch rate in velocity-dependent tissues decreases. By increasing the velocity, the resistance of velocity-dependent parts increases, and the velocity-independent parts are not affected by velocity. Since the first torque that resists the joint movement is passive torque, the elastic and viscous torques should be simultaneously used. It is better to perform the movement at a low velocity so that less energy is lost. The viscoelastic resistance of tissues diminishes.
Graphical abstract |
Author | Amiri, Mansoor Ghazalian, Farshad Tabatabai Ghomsheh, Farhad |
Author_xml | – sequence: 1 givenname: Mansoor surname: Amiri fullname: Amiri, Mansoor organization: Department of Biomedical Engineering, Science and Research Branch, Islamic Azad University – sequence: 2 givenname: Farhad surname: Tabatabai Ghomsheh fullname: Tabatabai Ghomsheh, Farhad email: fa.tabatabai@uswr.ac.ir organization: Pediatric Neurorehabilitation Research Center, University of Social Welfare and Rehabilitation Sciences – sequence: 3 givenname: Farshad surname: Ghazalian fullname: Ghazalian, Farshad organization: Department of physical Education sport sciences, science and research Branch, Islamic Azad University |
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Keywords | Passive viscoelastic torque Knee joint Extension and Flexion movement |
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Title | Effect of viscoelastic properties on passive torque variations at different velocities of the knee joint extension and flexion movements |
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