DocumentCode
2932891
Title
Comparison of force and power generation patterns and their predictions under different external dynamic environments
Author
Chhatbar, Pratik Y. ; Francis, Joseph T.
Author_Institution
Downstate Med. Center, SUNY, New York, NY, USA
fYear
2010
fDate
Aug. 31 2010-Sept. 4 2010
Firstpage
1686
Lastpage
1690
Abstract
Use of neural activity to predict kinematic variables such as position, velocity and direction etc of movements has been implemented in real-time control of robotic systems and computer cursors. In everyday life, however, we generate variable amounts of force to manipulate objects of different inertial properties or to follow the same trajectory under different external dynamic environments like air or water. The resultant work during such movements, and its time derivative power, should depend on the dynamics of the movement. In order to give the users of a brain-machine interface (BMI) comprehensive control of a prosthetic limb under different dynamic conditions, it is imperative to consider the dynamics-related parameters like end-effector forces, joint torques or power. In this paper, we show distribution patterns of two such dynamics parameters - force and power - and their predictive efficiency under different dynamic environmental conditions. We intend to find the force-related parameter, which has optimal predictive efficiency across different dynamic environments that is generalization. Our ultimate goal is to materialize a force-based brain-machine interface (fBMI).
Keywords
brain-computer interfaces; neurophysiology; prosthetics; somatosensory phenomena; BMI; brain-machine interface; end-effector forces; external dynamic environments; neural activity; predictive efficiency; prosthetic limb; Dynamics; Elbow; Force; Joints; Kinematics; Shoulder; Torque; Brain-Computer Interface; Chronic Microelectrode Array; Force-related Parameters; Motor Learning; Neuroprosthetics; Power; Reaching Movements; Robotic Manipulandum; Algorithms; Animals; Electroencephalography; Energy Transfer; Evoked Potentials, Motor; Female; Macaca radiata; Movement; Muscle Contraction; Muscle, Skeletal; Pattern Recognition, Automated;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2010 Annual International Conference of the IEEE
Conference_Location
Buenos Aires
ISSN
1557-170X
Print_ISBN
978-1-4244-4123-5
Type
conf
DOI
10.1109/IEMBS.2010.5626832
Filename
5626832
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