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Подробная информация и полный научных исследований по оценке воздействия вибрации на технологии здравоохранения и уровень производства в организме может быть найдена в этих документах

 

Effect of 6-Month Whole Body Vibration Training on Hip Density, Muscle Strength, and Postural Control in Postmenopausal Women: A Randomized Controlled Pilot Study


Acute changes in neuromuscular excitability after exhaustive whole body vibration exercise as compared to exhaustion by squatting exercise


Acute physiological effects of exhaustive whole-body vibration exercise in man


Adaptive responses of human skeletal muscle to vibration exposure


Balance training and exercise in geriatric patients


Effect of a vibration exposure on muscular performance and body balance. Randomized cross-over study


Hormonal responses to whole-body vibration in men


Influence of vibration on mechanical power and electromyogram activity in human arm flexor muscles


Whole-Body-Vibration Training Effective in Older Women


Mechanical Stimulation in the Form of Vibration Prevents Postmenopausal Bone Loss in Ovariectomized Rats


NEW TRENDS IN TRAINING SCIENCE: THE USE OF VIBRATIONS FOR ENHANCING PERFORMANCE


Prevention of Postmenopausal Bone Loss by a Low-Magnitude, High- Frequency Mechanical Stimuli: A Clinical Trial Assessing Compliance, Efficacy, and Safety


Suppressive mechanism of gastric motility by whole-body vibration


The anabolic activity of bone tissue, suppressed by disuse, is normalized by brief exposure to extremely low-magnitude mechanical stimuli


Transmissibility of 15-Hertz to 35-Hertz Vibrations to the Human Hip and Lumbar Spine: Determining the Physiologic Feasibility of Delivering Low-Level Anabolic Mechanical Stimuli to Skeletal Regions at Greatest Risk of Fracture Because of Osteoporosis


Whole-body vibration exercise leads to alterations in muscle blood volume



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