Publications using Octave: Difference between revisions

Jump to navigation Jump to search
Move item from pre-prints to 2014
(Move item from pre-prints to 2014)
Line 19: Line 19:
   
   
== Pre-prints ==
== Pre-prints ==
* Technical Note JAB-2013-0062 [http://journals.humankinetics.com/AcuCustom/Sitename/Documents/DocumentItem/DeRosario_jab_2013_0062-in%2520press.pdf Correction of Joint Angles From Kinect for Balance Exercising and Assessment], to appear in Journal of Applied Biomechanics !
* Preprint arXiv:1108.3206v2 [http://arxiv.org/abs/1108.3206 Modeling and frequency domain analysis of nonlinear compliant joints for a passive dynamic swimmer]!
* Preprint arXiv:1108.3206v2 [http://arxiv.org/abs/1108.3206 Modeling and frequency domain analysis of nonlinear compliant joints for a passive dynamic swimmer]!
* Technical Report UBLCS-2012-02 [http://www.informatica.unibo.it/ricerca/technical-report/2012/UBLCS-2012-02 Queueing Networks Analysis with the qnetworks Toolbox] !
* Technical Report UBLCS-2012-02 [http://www.informatica.unibo.it/ricerca/technical-report/2012/UBLCS-2012-02 Queueing Networks Analysis with the qnetworks Toolbox] !
Line 28: Line 27:


== 2014 ==
== 2014 ==
* Journal of Applied Biomechanics [http://dx.doi.org/10.1123/jab.2013-0062 Correction of Joint Angles From Kinect for Balance Exercising and Assessment]
* Journal of Biomechanics. [http://dx.doi.org/10.1016/j.jbiomech.2014.02.003 Point of optimal kinematic error: Improvement of the instantaneous helical pivot method for locating centers of rotation]
* Journal of Biomechanics. [http://dx.doi.org/10.1016/j.jbiomech.2014.02.003 Point of optimal kinematic error: Improvement of the instantaneous helical pivot method for locating centers of rotation]
* Frontiers in Computational Neurosciences. [http://www.frontiersin.org/Computational_Neuroscience/10.3389/fncom.2013.00191/abstract A computational analysis of motor synergies by dynamic response decomposition] !
* Frontiers in Computational Neurosciences. [http://www.frontiersin.org/Computational_Neuroscience/10.3389/fncom.2013.00191/abstract A computational analysis of motor synergies by dynamic response decomposition] !
Anonymous user

Navigation menu