Title :
Adjustable sheet for intelligent seating system
Author :
Kikuchi, Takehito ; Anzai, Ken´ichi
Author_Institution :
Fac. of Eng., Oita Univ., Oita, Japan
Abstract :
A proper seating is important as an aid for cerebral palsy patients, and has good influence on patients´ physical conditions and mentalities. Deformity of spine causes gaps between their backs and backrests of wheel chairs. Generally, urethane cushions are used to fill up the gaps. However, this method cannot handle their dynamic motion that will happen in daily life. In the previous study, we developed the first prototype of the intelligent seating system (i-Seating 1) by using a conventional adjustable-belt type seating and some air bags on the belts. We could control the posture and pressure of users, but there is a severe limitation for real situations. In this paper, we propose to use an adjustable sheet mechanism for the wheelchair seating. The adjustable sheet mechanism is very simple and a combination of a main sheet and adjustment belts. We installed this mechanism in the conventional adjustable-belt type seating. For convenience of the adjustment, we also developed a back-shape measurement system and proposed an adjustment method on the basis of the measurement results. Finally, a validation test was conducted and evaluated. The experimental result indicated that the adjustable sheet fit to the complex back shape and controlled a good posture and even pressure for a dummy deformed backbone.
Keywords :
belts; biomechanics; bone; ergonomics; handicapped aids; intelligent control; motion control; pressure control; seats; wheelchairs; adjustable sheet mechanism; adjustable-belt type seating; air bags; back-shape measurement system; backrests; cerebral palsy patient aid; complex back shape; dummy deformed backbone; dynamic motion; i-seating 1; intelligent seating system; patient mentalities; patient physical conditions; posture control; pressure control; proper seating; spine deformity; urethane cushions; wheelchair seating; Belts; Length measurement; Materials; Prototypes; Shape; Shape measurement; Wheelchairs;
Conference_Titel :
Biomedical Robotics and Biomechatronics (2014 5th IEEE RAS & EMBS International Conference on
Conference_Location :
Sao Paulo
Print_ISBN :
978-1-4799-3126-2
DOI :
10.1109/BIOROB.2014.6913873