textMost manual wheelchair users will experience upper extremity injury and pain during their lifetime, which can be partly attributed to the high load requirements, repetitive motions and extreme joint postures required during wheelchair propulsion. Recent efforts have attempted to determine how different propulsion techniques influence upper extremity demand using broad measures of demand (e.g., metabolic cost). However studies using more specific measures (e.g., muscle stress), have greater potential to determine how altering propulsion technique influences demand. The goal of this research was to use a musculoskeletal model with forward dynamics simulations of wheelchair propulsion to determine how altering propulsion technique influenc...
OBJECTIVE: The biomechanics of wheelchair propulsion have been linked to upper extremity injury. Spe...
Objective: The biomechanics of wheelchair propulsion have been linked to upper extremity injury. Spe...
Objective. To assess the mechanical load on the glenohumeral joint and on shoulder muscles during wh...
textMost manual wheelchair users will experience upper extremity injury and pain during their lifeti...
textThe high demands of manual wheelchair propulsion put users at risk of additional pain and injury...
textThere are millions of individuals throughout the world that rely on manual wheelchair propulsion...
Objective To use an ergonomics-based rating that characterizes both demand on, and capacity of, uppe...
Manual wheelchair users rely on their upper limbs for independent mobility, which requires frequent ...
Background: Efficiency in manual wheelchair propulsion is low, as is the fraction of the propulsion ...
2018-08-01This body of work aims to determine how upper extremity control and dynamics during manual...
Manual wheelchair propulsion in daily life and sports is increasingly being studied. Initially, an e...
The majority of wheelchair studies that attempt to evaluate propulsion efforts across wheelchair con...
To study joint contributions in manual wheelchair propulsion, we developed a three-dimensional model...
In the US alone, more than 10,000 spinal cord injuries (SCI) are reported each year. Those who use ...
We investigate the hypothesis that the direction of the propulsion force in manual wheelchair propul...
OBJECTIVE: The biomechanics of wheelchair propulsion have been linked to upper extremity injury. Spe...
Objective: The biomechanics of wheelchair propulsion have been linked to upper extremity injury. Spe...
Objective. To assess the mechanical load on the glenohumeral joint and on shoulder muscles during wh...
textMost manual wheelchair users will experience upper extremity injury and pain during their lifeti...
textThe high demands of manual wheelchair propulsion put users at risk of additional pain and injury...
textThere are millions of individuals throughout the world that rely on manual wheelchair propulsion...
Objective To use an ergonomics-based rating that characterizes both demand on, and capacity of, uppe...
Manual wheelchair users rely on their upper limbs for independent mobility, which requires frequent ...
Background: Efficiency in manual wheelchair propulsion is low, as is the fraction of the propulsion ...
2018-08-01This body of work aims to determine how upper extremity control and dynamics during manual...
Manual wheelchair propulsion in daily life and sports is increasingly being studied. Initially, an e...
The majority of wheelchair studies that attempt to evaluate propulsion efforts across wheelchair con...
To study joint contributions in manual wheelchair propulsion, we developed a three-dimensional model...
In the US alone, more than 10,000 spinal cord injuries (SCI) are reported each year. Those who use ...
We investigate the hypothesis that the direction of the propulsion force in manual wheelchair propul...
OBJECTIVE: The biomechanics of wheelchair propulsion have been linked to upper extremity injury. Spe...
Objective: The biomechanics of wheelchair propulsion have been linked to upper extremity injury. Spe...
Objective. To assess the mechanical load on the glenohumeral joint and on shoulder muscles during wh...