Arm movement analysis via marker tracking with a single-camera system

Research output: Contribution to conferenceAbstract

Abstract

Optical motion capture systems have been widely adopted for limb movement analysis in stroke rehabilitation because of their real-time processing and high-accuracy features. However, these systems can be costly and not transportable due to multiple-camera requirement. This paper proposes a marker-tracking-based single-camera system, an alternative, portable and cheaper scheme to implement arm movement analysis.
LanguageEnglish
Pages1547-1548
Number of pages2
Publication statusPublished - 6 Jul 2014
EventWCB-2014 7th World Congress of Biomechanics - Boston, United States
Duration: 6 Jul 201411 Jul 2014

Conference

ConferenceWCB-2014 7th World Congress of Biomechanics
CountryUnited States
CityBoston
Period6/07/1411/07/14

Fingerprint

Cameras
Patient rehabilitation
Processing

Keywords

  • arm movements
  • movement tracking
  • movement anaylsis

Cite this

Yang, C., Kerr, A., Stankovic, V., Stankovic, L., & Rowe, P. (2014). Arm movement analysis via marker tracking with a single-camera system. 1547-1548. Abstract from WCB-2014 7th World Congress of Biomechanics, Boston, United States.
Yang, C. ; Kerr, A. ; Stankovic, V. ; Stankovic, L. ; Rowe, P. / Arm movement analysis via marker tracking with a single-camera system. Abstract from WCB-2014 7th World Congress of Biomechanics, Boston, United States.2 p.
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title = "Arm movement analysis via marker tracking with a single-camera system",
abstract = "Optical motion capture systems have been widely adopted for limb movement analysis in stroke rehabilitation because of their real-time processing and high-accuracy features. However, these systems can be costly and not transportable due to multiple-camera requirement. This paper proposes a marker-tracking-based single-camera system, an alternative, portable and cheaper scheme to implement arm movement analysis.",
keywords = "arm movements, movement tracking, movement anaylsis",
author = "C. Yang and A. Kerr and V. Stankovic and L. Stankovic and P. Rowe",
note = "Item M368 - Special Topics section; WCB-2014 7th World Congress of Biomechanics ; Conference date: 06-07-2014 Through 11-07-2014",
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}

Yang, C, Kerr, A, Stankovic, V, Stankovic, L & Rowe, P 2014, 'Arm movement analysis via marker tracking with a single-camera system' WCB-2014 7th World Congress of Biomechanics, Boston, United States, 6/07/14 - 11/07/14, pp. 1547-1548.

Arm movement analysis via marker tracking with a single-camera system. / Yang, C.; Kerr, A.; Stankovic, V.; Stankovic, L.; Rowe, P.

2014. 1547-1548 Abstract from WCB-2014 7th World Congress of Biomechanics, Boston, United States.

Research output: Contribution to conferenceAbstract

TY - CONF

T1 - Arm movement analysis via marker tracking with a single-camera system

AU - Yang, C.

AU - Kerr, A.

AU - Stankovic, V.

AU - Stankovic, L.

AU - Rowe, P.

N1 - Item M368 - Special Topics section

PY - 2014/7/6

Y1 - 2014/7/6

N2 - Optical motion capture systems have been widely adopted for limb movement analysis in stroke rehabilitation because of their real-time processing and high-accuracy features. However, these systems can be costly and not transportable due to multiple-camera requirement. This paper proposes a marker-tracking-based single-camera system, an alternative, portable and cheaper scheme to implement arm movement analysis.

AB - Optical motion capture systems have been widely adopted for limb movement analysis in stroke rehabilitation because of their real-time processing and high-accuracy features. However, these systems can be costly and not transportable due to multiple-camera requirement. This paper proposes a marker-tracking-based single-camera system, an alternative, portable and cheaper scheme to implement arm movement analysis.

KW - arm movements

KW - movement tracking

KW - movement anaylsis

UR - http://wcb2014.com/

M3 - Abstract

SP - 1547

EP - 1548

ER -

Yang C, Kerr A, Stankovic V, Stankovic L, Rowe P. Arm movement analysis via marker tracking with a single-camera system. 2014. Abstract from WCB-2014 7th World Congress of Biomechanics, Boston, United States.