Musculoskeletal tissues respond to optimal mechanical signals (e.g., strains) through anabolic adaptations, while mechanical signals above and below optimal levels cause tissue catabolism. If an individual's physical behavior could be altered to generate optimal mechanical signaling to musculoskeletal tissues, then targeted strengthening and/or repair would be possible. We propose new bioinspired technologies to provide real-time biofeedback of relevant mechanical signals to guide training and rehabilitation. In this review we provide a description of how wearable devices may be used in conjunction with computational rigid-body and continuum models of musculoskeletal tissues to produce real-time estimates of localized tissue stresses and st...
Achieving functional restoration of diseased or injured tissues is the ultimate goal of both regener...
Bioinspiration in robotics deals with applying biological principles to the design of better perform...
The ability to efficiently assist human movement via wearable robotic exoskeletons requires a deep u...
Biomechanical factors profoundly influence the processes of tissue growth, development, maintenance,...
Thesis (Ph.D.)--University of Washington, 2021Mechanical stimuli play an essential role in the forma...
Wearable technologies are often indicated as tools that can enable the in-field collection of quanti...
The prevalence and cost of disorders affecting the musculoskeletal system are predicted to rise sign...
Biomechanical feedback is a relevant key to improving sports and arts performance. Yet, the bibliome...
Biofeedback assisted rehabilitation and intervention technologies have the potential to modify clini...
Musculoskeletal problem, such as traumatic injury, osteoporosis, and osteoarthritis, is one of the l...
Owing to the restrictions of live experimentation, musculoskeletal simulation models play a key role...
Musculoskeletal diseases are increasing the prevalence of physical disability worldwide. Within the ...
Musculoskeletal system includes the bones of the skeleton and the cartilage, ligaments, tendons, and...
The musculoskeletal tissues have a prime role in the biomechanical support and metabolic activities ...
Bioinspiration in robotics deals with applying biological principles to the design of better perform...
Achieving functional restoration of diseased or injured tissues is the ultimate goal of both regener...
Bioinspiration in robotics deals with applying biological principles to the design of better perform...
The ability to efficiently assist human movement via wearable robotic exoskeletons requires a deep u...
Biomechanical factors profoundly influence the processes of tissue growth, development, maintenance,...
Thesis (Ph.D.)--University of Washington, 2021Mechanical stimuli play an essential role in the forma...
Wearable technologies are often indicated as tools that can enable the in-field collection of quanti...
The prevalence and cost of disorders affecting the musculoskeletal system are predicted to rise sign...
Biomechanical feedback is a relevant key to improving sports and arts performance. Yet, the bibliome...
Biofeedback assisted rehabilitation and intervention technologies have the potential to modify clini...
Musculoskeletal problem, such as traumatic injury, osteoporosis, and osteoarthritis, is one of the l...
Owing to the restrictions of live experimentation, musculoskeletal simulation models play a key role...
Musculoskeletal diseases are increasing the prevalence of physical disability worldwide. Within the ...
Musculoskeletal system includes the bones of the skeleton and the cartilage, ligaments, tendons, and...
The musculoskeletal tissues have a prime role in the biomechanical support and metabolic activities ...
Bioinspiration in robotics deals with applying biological principles to the design of better perform...
Achieving functional restoration of diseased or injured tissues is the ultimate goal of both regener...
Bioinspiration in robotics deals with applying biological principles to the design of better perform...
The ability to efficiently assist human movement via wearable robotic exoskeletons requires a deep u...