DocumentCode
2087182
Title
Development and clinical validation of an unobtrusive ambulatory knee function monitoring system with inertial 9DoF sensors
Author
Schulze, Martin ; Calliess, T. ; Gietzelt, M. ; Wolf, K.H. ; Liu, T.H. ; Seehaus, F. ; Bocklage, R. ; Windhagen, H. ; Marschollek, M.
Author_Institution
Inst. for Med. Inf., Hannover, Germany
fYear
2012
fDate
Aug. 28 2012-Sept. 1 2012
Firstpage
1968
Lastpage
1971
Abstract
Patients suffering from end-stage knee osteoarthritis are often treated with total knee arthroplasty, improving their functional mobility. A number of patients, however, report continued difficulty with stair ascent and descent or sportive activity after surgery and are not completely satisfied with the outcome. State-of-the-art analyses to evaluate the outcome and mobility after knee replacement are conducted under supervised settings in specialized gait labs and thus can only reflect a short period of time. A number of external factors may lead to artificial gait patterns in patients. Moreover, clinically relevant situations are difficult to simulate in a stationary gait lab. In contrast to this, inertial sensors may be used additionally for unobtrusive gait monitoring. However, recent notable approaches found in literature concerning knee function analysis have so far not been applied in a clinical context and have therefore not yet been validated in a clinical setting. The aim of this paper is to present a system for unsupervised long-term monitoring of human gait with a focus on knee joint function, which is applicable in patients´ everyday lives and to report on the validation of this system gathered during walking with reference to state-of-the-art gait lab data using a vision system (VICON Motion System). The system KINEMATICWEAR - developed in close collaboration of computer scientists and physicians performing knee arthroplasty - consists of two sensor nodes with combined tri-axial accelerometer, gyroscope and magnetometer to be worn under normal trousers. Reliability of the system is shown in the results. An overall correlation of 0.99 (with an overall RMSE of 2.72) compared to the state-of-the-art reference system indicates a sound quality and a high degree of correspondence. KINEMATICWEAR enables ambulatory, unconstrained measurements of knee function outside a supervised lab inspection.
Keywords
accelerometers; artificial limbs; gait analysis; gyroscopes; kinematics; magnetometers; medical disorders; KINEMATICWEAR system; Motion System; artificial gait pattern; end-stage knee osteoarthritis; functional mobility; gyroscope; inertial 9DoF sensors; knee replacement; magnetometer; reliability; sportive activity; stair ascent; stair descent; surgery; total knee arthroplasty; triaxial accelerometer; unobtrusive ambulatory knee function monitoring system; Accelerometers; Gyroscopes; Joints; Knee; Legged locomotion; Monitoring; Sensors; Biomechanical Phenomena; Humans; Knee; Knee Joint; Knee Prosthesis; Monitoring, Ambulatory; Reproducibility of Results; Software; Walking;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2012 Annual International Conference of the IEEE
Conference_Location
San Diego, CA
ISSN
1557-170X
Print_ISBN
978-1-4244-4119-8
Electronic_ISBN
1557-170X
Type
conf
DOI
10.1109/EMBC.2012.6346341
Filename
6346341
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