Bockemühl T, Dürr V. A small set of principal components can efficiently describe human arm movement. In: Proc.7th Congr.Int.Soc.Neuroethol. 2004: po 228-po 228
The goal of this investigation is to develop a multi-degree of freedom (DOF) prosthesis controller t...
A Principal Components Analysis (PCA) based algorithm is used to drive a 16 DoF underactuated prosth...
How humans solve the ill-posed problem of motor control is still a mystery. In this paper, we attemp...
Human movements, recorded through kinematic data, can be described by means of principal component a...
Copyright © 2014 Ramana Vinjamuri et al. This is an open access article distributed under the Creati...
The rich variety of human upper limb movements requires an extraordinary coordination of different j...
The rich variety of human upper limb movements requires an extraordinary coordination of different j...
The human hand is an excellent example of versatile architecture which can easily accomplish numerou...
Objective. To explain and underscore the use of principal component analysis in clinical biomechanic...
Objective. To explain and underscore the use of principal component analysis in clinical biomechanic...
With the rise autonomous and robotic systems in field applications, the need for dexterous, highly a...
<p>Cumulative explained variance and the number of principal components are shown for each movement ...
Brüwer M, Wischmeyer E, Brockfeld P, Cruse H. The nature of the cost functions for the control of th...
Walking is a complex task which includes hundreds of muscles, bones and joints working together to d...
Human can successfully grasp various objects in different acceptable relative positions between huma...
The goal of this investigation is to develop a multi-degree of freedom (DOF) prosthesis controller t...
A Principal Components Analysis (PCA) based algorithm is used to drive a 16 DoF underactuated prosth...
How humans solve the ill-posed problem of motor control is still a mystery. In this paper, we attemp...
Human movements, recorded through kinematic data, can be described by means of principal component a...
Copyright © 2014 Ramana Vinjamuri et al. This is an open access article distributed under the Creati...
The rich variety of human upper limb movements requires an extraordinary coordination of different j...
The rich variety of human upper limb movements requires an extraordinary coordination of different j...
The human hand is an excellent example of versatile architecture which can easily accomplish numerou...
Objective. To explain and underscore the use of principal component analysis in clinical biomechanic...
Objective. To explain and underscore the use of principal component analysis in clinical biomechanic...
With the rise autonomous and robotic systems in field applications, the need for dexterous, highly a...
<p>Cumulative explained variance and the number of principal components are shown for each movement ...
Brüwer M, Wischmeyer E, Brockfeld P, Cruse H. The nature of the cost functions for the control of th...
Walking is a complex task which includes hundreds of muscles, bones and joints working together to d...
Human can successfully grasp various objects in different acceptable relative positions between huma...
The goal of this investigation is to develop a multi-degree of freedom (DOF) prosthesis controller t...
A Principal Components Analysis (PCA) based algorithm is used to drive a 16 DoF underactuated prosth...
How humans solve the ill-posed problem of motor control is still a mystery. In this paper, we attemp...