• Title/Summary/Keyword: Slope-whole-body Vibration

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The Effectiveness Verification of Whole-body Vibration through Comparative analysis of Muscle activity for Whole-body Vibration Exercise, Walking and Running (전신진동운동, 보행 및 런닝과의 근육활성량 및 근 발현 특성 비교 분석을 통한 전신진동운동 효과검증)

  • Moon, Young Jin;Cho, Won Jun
    • Korean Journal of Applied Biomechanics
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    • v.31 no.1
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    • pp.59-63
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    • 2021
  • Objective: Through comparative analysis of muscle activity for whole-body vibration, walking and running movements, it is to verify the training effect of whole-body vibration exercise in terms of amount of exercise and muscle activity characteristics. Method: Flat ground walking and slope walking (10 degrees) at a speed of 5 km/h, flat ground running and slope running (10 degrees) at a speed of 11 km/h for running were performed on treadmill, and squats were maintained at 12 Hz, 20 Hz, and 29 Hz conditions on Whole body vibration exercise equipment (Galileo). Muscle activity was analyzed through EMG analysis device for one minute for each condition. Results: The Anterior Tibialis and Erector Spinae show greater exercise effect in whole-body vibration than walking and running. The Rectus Femoris, Biceps Femoris, and Gluteus Maximus have the best effect of exercise in flat running. Whole-body vibration exercise showed greater muscle activation effect as the frequency increased, and exercise effect similar to walking during the same exercise time. Conclusion: The amount of exercise through Whole-body vibration exercise was similar to that of walking exercise, and the Anterior Tibialis and Erector Spinae shows better exercise effect than walking and running.

The Effect on Muscle Activation in the Trunk and Lower Limbs While Squatting with Slope-whole-body Vibration (스쿼트 동작 시 경사기능전신진동기의 적용이 몸통 및 하지 근 활성도에 미치는 영향)

  • Oh, Ju-Hwan;Kang, Seung-Rok;Kwon, Tae-Kyu;Min, Jin-Young
    • Korean Journal of Applied Biomechanics
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    • v.25 no.4
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    • pp.383-391
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    • 2015
  • Objective : The purpose of this study was to investigate the effects of dynamic squats with slope-whole body vibration (WBV) on the trunk and lower limb in muscle activities. Method : 9 healthy women (age: $21.1{\pm}0.6years$, height: $160.5{\pm}1.4cm$, body weight: $50.5{\pm}2.4kg$) were recruited for this study. Muscle activities in the trunk and lower limb muscles, including biceps femoris (BF), rectus femoris (RF), rectus abdominum (RA), gastrocnemius (GCM), iliocostalis lumborum (IL) and tibialis anterior (TA), were recorded using an EMG measurement system. The test was performed by conducting dynamic squats with slope-WBV using frequency (10Hz, 50Hz), amplitude (0.5mm), and degree ($0^{\circ}$, $5^{\circ}$). Experimental method consisted of 2-pre-sessions and 1-test-session for 20 seconds. Results : The results showed that the muscle activities of the trunk and low limb muscles increased significantly with the $5^{\circ}$ slope and lower frequency (10Hz) except for in the TA. From this result, we confirmed that the slope and WBV could efficiently affect stimulation, enhancing muscle activities by facilitating neural control trail and muscle chain tightness. Conclusion : Utilizing the slope-WBV device while squatting could give positive effects on muscle activation in the trunk and lower limb muscles and provide neural stimulation, enhancing muscle chain of control subsystem through TVR (tonic vibration reflex).

The Effect of Muscle Fatigue Reduction and Heart Rate Recovery According to Whole Body Vibration after Gait Exercise in the Young Female (성인여성의 보행 운동 후 전신진동이 근피로도 해소와 심박회복율에 미치는 영향)

  • Kang, Seung-Rok;Min, Jin-Young;Hong, Cheol-Un;Kwon, Tae-Kyu
    • Science of Emotion and Sensibility
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    • v.19 no.1
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    • pp.3-10
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    • 2016
  • This research was to investigate the effect of fatigue reduction and heart rate recovery (HRR) according to whole body vibration (WBV). 20 healthy participants were recruited and divided into vibration group (VG) and none vibration group (NVG). VG was group with provided vibration and NVG was group without vibration. They exercised slope gait with 8.5 degree and 4km/h during 30min. They rested on the chair type vibrator during 30min. The vibration consists of 10hz as frequency and 5mm as amplitude. We measured the lactate in the blood and HRR before, immediately after exercise and after rest session. The results showed that lactate level in VG the more decreased at 95.2%. The result of HRR was similar including recovery at 50.67% in VG. The WBV with stimulated vessel in muscle assisted the recovery function by reducing the excess post-exercise oxygen consumption (EPOC) quickly and improving blood circulation. The rest with WBV could provide efficient cool-down exercise for elderly and women without other physical activities after exercise.