Prototype of newly developed power-assisted wheelchair wheels were evaluated to determine their potential alleviating value on shoulder load, daily activities and participation compared to hand-rim wheelchair propulsion. Five research questions were answered:\ud \ud 1. What is the current knowledge of power-assisted wheelchair propulsion?\ud Power-assisted propulsion reduces the strain on the upper extremity and cardiovascular system compared to hand-rim propulsion. Precision tasks are easier to perform with hand-rim wheelchairs and tasks which require more torque are easier to perform with power-assisted wheelchairs.\ud \ud 2. Who might benefit from power-assist wheels?\ud People having (temporally) difficulty propelling hand-rim wheelchai...
OBJECTIVE: To evaluate a novel pushrim-activated, power-assisted wheelchair (PAPAW) for compliance w...
BACKGROUND: Regular handrim wheelchair (RHW) propulsion is straining for the upper extremities and w...
Pushrim-activated power-assisted wheels (PAPAWs) are assistive technologies that use force sensor da...
Background: Frequent start movements occurred during the day, yielding high upper-extremity stress. ...
Objective: To determine the (dis)advantages of transition to a power-assisted wheelchair, and derive...
This study aims to compare hand-rim and power-assisted hand-rim propulsion on potential risk factors...
This study aims to compare hand-rim and power-assisted hand-rim propulsion on potential risk factors...
BACKGROUND/OBJECTIVE: The objective of this study was to examine the use and efficacy of a pushrim-a...
Objective: To evaluate a novel pushrim-activated, power-assisted wheelchair (PAPAW) for compliance w...
Objectives: To test the differences between a pushrim-activated power-assisted wheelchair (PAPAW) an...
OBJECTIVES: To test the differences between a pushrim-activated power-assisted wheelchair (PAPAW) an...
OBJECTIVE: To evaluate a novel pushrim-activated, power-assisted wheelchair (PAPAW) for compliance w...
BACKGROUND: Regular handrim wheelchair (RHW) propulsion is straining for the upper extremities and w...
Pushrim-activated power-assisted wheels (PAPAWs) are assistive technologies that use force sensor da...
Background: Frequent start movements occurred during the day, yielding high upper-extremity stress. ...
Objective: To determine the (dis)advantages of transition to a power-assisted wheelchair, and derive...
This study aims to compare hand-rim and power-assisted hand-rim propulsion on potential risk factors...
This study aims to compare hand-rim and power-assisted hand-rim propulsion on potential risk factors...
BACKGROUND/OBJECTIVE: The objective of this study was to examine the use and efficacy of a pushrim-a...
Objective: To evaluate a novel pushrim-activated, power-assisted wheelchair (PAPAW) for compliance w...
Objectives: To test the differences between a pushrim-activated power-assisted wheelchair (PAPAW) an...
OBJECTIVES: To test the differences between a pushrim-activated power-assisted wheelchair (PAPAW) an...
OBJECTIVE: To evaluate a novel pushrim-activated, power-assisted wheelchair (PAPAW) for compliance w...
BACKGROUND: Regular handrim wheelchair (RHW) propulsion is straining for the upper extremities and w...
Pushrim-activated power-assisted wheels (PAPAWs) are assistive technologies that use force sensor da...