DocumentCode :
2995886
Title :
Home Monitoring Musculo-skeletal Disorders with a Single 3D Sensor
Author :
Ruizhe Wang ; Medioni, Gerard ; Winstein, Carolee J. ; Blanco, Cristian
fYear :
2013
fDate :
23-28 June 2013
Firstpage :
521
Lastpage :
528
Abstract :
We address the problem of automated quantitative evaluation of musculo-skeletal disorders using a 3D sensor. This enables a non-invasive home monitoring system which extracts and analyzes the subject´s motion symptoms and provides clinical feedback. The subject is asked to perform several clinically validated standardized tests (e.g. sit-to-stand, repeated several times) in front of a 3D sensor to generate a sequence of skeletons (i.e. locations of 3D joints). While the complete sequence consists of multiple repeated Skeletal Action Units (SAU) (e.g. sit-to-stand, one repetition), we generate a single robust Representative Skeletal Action Unit (RSAU) which encodes the subject´s most consistent spatio-temporal motion pattern. Based on the Representative Skeletal Action Unit (RSAU) we extract a series of clinical measurements (e.g. step size, swing level of hand) which are crucial for prescription and rehabilitation plan design. In this paper, we propose a Temporal Alignment Spatial Summarization (TASS) method to decouple the complex spatio-temporal information of multiple Skeletal Action Units (SAU). Experimental results from people with Parkinson´s Disease (PD) and people without Parkinson´s Disease (non-PD) demonstrate the effectiveness of our methodology which opens the way for many related applications.
Keywords :
bone; diseases; feedback; home computing; image recognition; medical disorders; medical image processing; muscle; patient monitoring; patient rehabilitation; Parkinson´s disease; RSAU; TASS; automated quantitative evaluation; clinical feedback; clinical measurements; clinically validated standardized tests; home monitoring musculo-skeletal disorders; motion symptoms; multiple repeated skeletal action units; noninvasive home monitoring system; rehabilitation plan design; representative skeletal action unit; single 3D sensor; spatio-temporal motion pattern; temporal alignment spatial summarization; Heuristic algorithms; Legged locomotion; Monitoring; Noise; Parkinson´s disease; Robustness; Three-dimensional displays;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Vision and Pattern Recognition Workshops (CVPRW), 2013 IEEE Conference on
Conference_Location :
Portland, OR
Type :
conf
DOI :
10.1109/CVPRW.2013.83
Filename :
6595923
Link To Document :
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