A Depth Camera Motion Analysis Framework for Tele-rehabilitation: Motion Capture and Person-Centric Kinematics Analysis
With increasing importance given to tele-rehabilitation, there is a growing need for accurate, low-cost, and portable motion capture systems that do not require specialist assessment venues. This paper proposes a novel framework for motion capture using only a single depth camera, which is portable...
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Published in | IEEE journal of selected topics in signal processing Vol. 10; no. 5; pp. 877 - 887 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.08.2016
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
Online Access | Get full text |
ISSN | 1932-4553 1941-0484 |
DOI | 10.1109/JSTSP.2016.2559446 |
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Abstract | With increasing importance given to tele-rehabilitation, there is a growing need for accurate, low-cost, and portable motion capture systems that do not require specialist assessment venues. This paper proposes a novel framework for motion capture using only a single depth camera, which is portable and cost effective compared to most industry-standard optical systems, without compromising on accuracy. Novel signal processing and computer vision algorithms are proposed to determine motion patterns of interest from infrared and depth data. In order to demonstrate the proposed framework's suitability for rehabilitation, we developed a gait analysis application that depends on the underlying motion capture sub-system. Each subject's individual kinematics parameters, which are unique to that subject, are calculated and stored for monitoring individual progress of the clinical therapy. Experiments were conducted on 14 different subjects, 5 healthy, and 9 stroke survivors. The results show very close agreement of the resulting relevant joint angles with a benchmarking 12-camera based VICON system, a mean error of at most 1.75 % in detecting gait events w.r.t. the hand-labeled ground-truth, and significant performance improvements in terms of accuracy and efficiency compared to a previous Kinect-based system. |
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AbstractList | With increasing importance given to tele-rehabilitation, there is a growing need for accurate, low-cost, and portable motion capture systems that do not require specialist assessment venues. This paper proposes a novel framework for motion capture using only a single depth camera, which is portable and cost effective compared to most industry-standard optical systems, without compromising on accuracy. Novel signal processing and computer vision algorithms are proposed to determine motion patterns of interest from infrared and depth data. In order to demonstrate the proposed framework's suitability for rehabilitation, we developed a gait analysis application that depends on the underlying motion capture sub-system. Each subject's individual kinematics parameters, which are unique to that subject, are calculated and stored for monitoring individual progress of the clinical therapy. Experiments were conducted on 14 different subjects, 5 healthy, and 9 stroke survivors. The results show very close agreement of the resulting relevant joint angles with a benchmarking 12-camera based VICON system, a mean error of at most 1.75 % in detecting gait events w.r.t. the hand-labeled ground-truth, and significant performance improvements in terms of accuracy and efficiency compared to a previous Kinect-based system. With increasing importance given to tele-rehabilitation, there is a growing need for accurate, low-cost, and portable motion capture systems that do not require specialist assessment venues. This paper proposes a novel framework for motion capture using only a single depth camera, which is portable and cost effective compared to most industry-standard optical systems, without compromising on accuracy. Novel signal processing and computer vision algorithms are proposed to determine motion patterns of interest from infrared and depth data. In order to demonstrate the proposed framework's suitability for rehabilitation, we developed a gait analysis application that depends on the underlying motion capture sub-system. Each subject's individual kinematics parameters, which are unique to that subject, are calculated and stored for monitoring individual progress of the clinical therapy. Experiments were conducted on 14 different subjects, 5 healthy, and 9 stroke survivors. The results show very close agreement of the resulting relevant joint angles with a benchmarking 12-camera based VICON system, a mean error of at most 1.75 [Formula Omitted] in detecting gait events w.r.t. the hand-labeled ground-truth, and significant performance improvements in terms of accuracy and efficiency compared to a previous Kinect-based system. |
Author | Cheng Yang Stankovic, Vladimir Minxiang Ye Kerr, Andrew Stankovic, Lina |
Author_xml | – sequence: 1 surname: Minxiang Ye fullname: Minxiang Ye email: minxiang.ye@strath.ac.uk organization: Dept. of Electron. & Electr. Eng. & Biomed. Eng. Dept., Univ. of Strathclyde, Glasgow, UK – sequence: 2 surname: Cheng Yang fullname: Cheng Yang email: cheng.yang@strath.ac.uk organization: Dept. of Electron. & Electr. Eng. & Biomed. Eng. Dept., Univ. of Strathclyde, Glasgow, UK – sequence: 3 givenname: Vladimir surname: Stankovic fullname: Stankovic, Vladimir email: vladimir.stankovic@strath.ac.uk organization: Dept. of Electron. & Electr. Eng. & Biomed. Eng. Dept., Univ. of Strathclyde, Glasgow, UK – sequence: 4 givenname: Lina surname: Stankovic fullname: Stankovic, Lina email: lina.stankovic@strath.ac.uk organization: Dept. of Electron. & Electr. Eng. & Biomed. Eng. Dept., Univ. of Strathclyde, Glasgow, UK – sequence: 5 givenname: Andrew surname: Kerr fullname: Kerr, Andrew email: a.kerr@strath.ac.uk organization: Dept. of Electron. & Electr. Eng. & Biomed. Eng. Dept., Univ. of Strathclyde, Glasgow, UK |
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SubjectTerms | Accuracy Algorithm design and analysis Algorithms Cameras Depth image processing feature extraction Gait Kinematics motion analysis Motion perception Optical imaging Optical sensors Portability Signal processing signal processing for rehabilitation tele-rehabilitation Three-dimensional displays |
Title | A Depth Camera Motion Analysis Framework for Tele-rehabilitation: Motion Capture and Person-Centric Kinematics Analysis |
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