Weight Bearing

Biomechanical femoral neck fracture experiments—A narrative review

Nursing / Humans / Injury / Femur / Compressive Strength / Female / Male / Clinical Sciences / Cadaver / Public health systems and services research / Torque / Weight Bearing / Biomechanical Phenomena / Female / Male / Clinical Sciences / Cadaver / Public health systems and services research / Torque / Weight Bearing / Biomechanical Phenomena

Controlling posture using a plantar pressure-based, tongue-placed tactile biofeedback system

Skeletal muscle biology / Postural Control / Humans / Touch / Mechanoreceptors / Feedback / Central Nervous System / Posture / Pressure / Tongue / Adult / Foot / Leg / Balance control / Plantar Pressure / Weight Bearing / Pressure Distribution / Feedback / Central Nervous System / Posture / Pressure / Tongue / Adult / Foot / Leg / Balance control / Plantar Pressure / Weight Bearing / Pressure Distribution

Development of artificial articular cartilage

Engineering / Mechanical Engineering / Biomedical Engineering / Biomechanics / Osseointegration / Titanium / Hydrogels / Lubrication / Adhesive / Dogs / Tibia / Femur / Silica / Animals / Bond Strength / Mechanical Stress / Rats / Polyvinyl alcohol / Poly Vinyl Alcohol / Surface Properties / Articular Cartilage Wear / Wistar Rats / prosthesis Design / Aluminum oxide / Rabbits / Materials Testing / Polyethylenes / Sadhana / Biocompatible Materials / Weight Bearing / Knee Joint / Articular Cartilage / Sol Gel Method / Titanium / Hydrogels / Lubrication / Adhesive / Dogs / Tibia / Femur / Silica / Animals / Bond Strength / Mechanical Stress / Rats / Polyvinyl alcohol / Poly Vinyl Alcohol / Surface Properties / Articular Cartilage Wear / Wistar Rats / prosthesis Design / Aluminum oxide / Rabbits / Materials Testing / Polyethylenes / Sadhana / Biocompatible Materials / Weight Bearing / Knee Joint / Articular Cartilage / Sol Gel Method

Controlling posture using a plantar pressure-based, tongue-placed tactile biofeedback system

Skeletal muscle biology / Postural Control / Humans / Touch / Mechanoreceptors / Feedback / Central Nervous System / Posture / Pressure / Tongue / Adult / Foot / Leg / Balance control / Plantar Pressure / Weight Bearing / Pressure Distribution / Feedback / Central Nervous System / Posture / Pressure / Tongue / Adult / Foot / Leg / Balance control / Plantar Pressure / Weight Bearing / Pressure Distribution

Postural control during lifting

Mechanical Engineering / Biomedical Engineering / Biomechanics / Postural Control / Humans / Male / Posture / Middle Aged / Ground Reaction Force / Adult / Leg / Shear Force / Postural Balance / Lifting / Healthy Subjects / Weight Bearing / Center of Mass / Center of Pressure / Biomechanical Phenomena / Male / Posture / Middle Aged / Ground Reaction Force / Adult / Leg / Shear Force / Postural Balance / Lifting / Healthy Subjects / Weight Bearing / Center of Mass / Center of Pressure / Biomechanical Phenomena

Human temporomandibular joint disc cartilage as a poroelastic material

Mechanical Engineering / Biomedical Engineering / Temporomandibular Joint / Experience Design / Finite element method / Elasticity / Humans / Porosity / Computer Simulation / Clinical Biomechanics / Compressive Strength / Qualitative Study / Risk factors / Motion / Energy Dissipation / Mechanical Stress / Temporomandibular joint disorder (TMJD or TMD) / Finite Element Model / Load distribution / Articular Cartilage Wear / Risk Factors / Dynamic Loading / Energy Transfer / Material Model / Weight Bearing / Elasticity / Humans / Porosity / Computer Simulation / Clinical Biomechanics / Compressive Strength / Qualitative Study / Risk factors / Motion / Energy Dissipation / Mechanical Stress / Temporomandibular joint disorder (TMJD or TMD) / Finite Element Model / Load distribution / Articular Cartilage Wear / Risk Factors / Dynamic Loading / Energy Transfer / Material Model / Weight Bearing

Human temporomandibular joint disc cartilage as a poroelastic material

Mechanical Engineering / Biomedical Engineering / Temporomandibular Joint / Experience Design / Finite element method / Elasticity / Humans / Porosity / Computer Simulation / Clinical Biomechanics / Compressive Strength / Qualitative Study / Risk factors / Motion / Energy Dissipation / Mechanical Stress / Temporomandibular joint disorder (TMJD or TMD) / Finite Element Model / Load distribution / Articular Cartilage Wear / Risk Factors / Dynamic Loading / Energy Transfer / Material Model / Weight Bearing / Elasticity / Humans / Porosity / Computer Simulation / Clinical Biomechanics / Compressive Strength / Qualitative Study / Risk factors / Motion / Energy Dissipation / Mechanical Stress / Temporomandibular joint disorder (TMJD or TMD) / Finite Element Model / Load distribution / Articular Cartilage Wear / Risk Factors / Dynamic Loading / Energy Transfer / Material Model / Weight Bearing
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