Human Evaluation of Wheelchair Robot for Active Postural Support (WRAPS)

Author:

Ophaswongse ChawinORCID,Murray Rosemarie C.,Santamaria Victor,Wang QiningORCID,Agrawal Sunil K.

Abstract

SummaryPeople with severe neuromuscular trunk impairment cannot maintain or control upright posture of the upper body in sitting while reaching. Passive orthoses are clinically available to provide support and promote the use of upper extremities in this population. However, these orthoses only position the torso passively without any degree of trunk movement.We introduce for the first time a novel active-assistive torso brace called Wheelchair Robot for Active Postural Support (WRAPS). It consists of two rings over the hips and chest connected by a 2RPS-2UPS parallel robotic device. WRAPS can modulate the displacement of the upper ring and/or the forces applied on the torso through the ring in four degrees-of-freedom (DOF), including rotations and translation in the sagittal and frontal planes.In the present study, we evaluate the design of WRAPS and its functions. Moreover, we discuss the potential effectiveness of WRAPS as a therapeutic robotic tool in people with severe trunk control deficits. The performance of WRAPS was evaluated in seated healthy subjects. Kinematics and surface electromyography (sEMG) were collected when the participants performed selective trunk movements. First, the torso range of motion (tROM) was calculated with WRAPS in transparent mode—zero-force control mode—which was compared with free-guided tROM (no WRAPS) with motion capture system. Second, a position control mode was configured to mobilize the torso along the trajectories obtained with the transparent mode.Our results show that the design of WRAPS suited well the subject’s anthropometrics while supporting the weight of the torso. Importantly, WRAPS can be programmed to replicate the subject’s tROM, without the full activation of torso muscles. This can be critical in individuals with no trunk control. Altogether, these preliminary results indicate the potential applicability of WRAPS to promote active-assistive trunk mobility in people who cannot sit independently because of trunk dysfunction.

Publisher

Cambridge University Press (CUP)

Subject

Computer Science Applications,General Mathematics,Software,Control and Systems Engineering

Reference19 articles.

1. 5. Ogura, T. , Itami, T. , Yano, K. , Mori, I. and Kameda, K. , “An Assistance Device to Help People with Trunk Impairment Maintain Posture,” In: Proceedings of the IEEE International Conference on Rehabilitation Robotics, London, UK (2017) pp. 358–363.

2. 1. “Spinal Cord Injury Facts and Figures at a Glance 2018,” National SCI Statistical Center, Birmingham, AL (2018).

3. 7. Murray, R. C. , Ophaswongse, C. and Agrawal, S. K. , “Design of a Wheelchair Robot for Active Postural Support,” In: Proceedings of the ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, Anaheim, CA (2018) pp. V05AT07A059.

4. Singularity-Free Workspace Aimed Optimal Design of a 2T2R Parallel Mechanism for Automated Fiber Placement

5. Electromyographic activity of the abdominal and low back musculature during the generation of isometric and dynamic axial trunk torque: Implications for lumbar mechanics

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