Does the motor control system use multiple models and context switching to cope with a variable environment? A Karniel, FA Mussa-Ivaldi Experimental Brain Research 143, 520-524, 2002 | 178 | 2002 |
The exponential learning equation as a function of successful trials results in sigmoid performance N Leibowitz, B Baum, G Enden, A Karniel Journal of Mathematical Psychology 54 (3), 338-340, 2010 | 169 | 2010 |
A model for learning human reaching movements A Karniel, GF Inbar Biological cybernetics 77 (3), 173-183, 1997 | 135 | 1997 |
Minimum acceleration criterion with constraints implies bang-bang control as an underlying principle for optimal trajectories of arm reaching movements S Ben-Itzhak, A Karniel Neural Computation 20 (3), 779-812, 2008 | 123 | 2008 |
Perception of delayed stiffness A Pressman, A Karniel, FA Mussa-Ivaldi The First IEEE/RAS-EMBS International Conference on Biomedical Robotics and …, 2006 | 104 | 2006 |
Kinetic adaptation during locomotion on a split-belt treadmill F Mawase, T Haizler, S Bar-Haim, A Karniel Journal of neurophysiology 109 (8), 2216-2227, 2013 | 95 | 2013 |
Automated measurement of proprioception following stroke N Leibowitz, N Levy, S Weingarten, Y Grinberg, A Karniel, Y Sacher, ... Disability and rehabilitation 30 (24), 1829-1836, 2008 | 87 | 2008 |
Sequence, time, or state representation: how does the motor control system adapt to variable environments? A Karniel, FA Mussa-Ivaldi Biological cybernetics 89 (1), 10-21, 2003 | 87 | 2003 |
Three creatures named ‘forward model’ A Karniel Neural Networks 15 (3), 305-307, 2002 | 82 | 2002 |
Perception of stiffness in laparoscopy–the fulcrum effect I Nisky, F Huang, A Milstein, CM Pugh, FA Mussa-Ivaldi, A Karniel Medicine Meets Virtual Reality 19, 313-319, 2012 | 75 | 2012 |
Toward perceiving robots as humans: Three handshake models face the turing-like handshake test G Avraham, I Nisky, HL Fernandes, DE Acuna, KP Kording, GE Loeb, ... IEEE Transactions on Haptics 5 (3), 196-207, 2012 | 69 | 2012 |
A regression and boundary-crossing-based model for the perception of delayed stiffness I Nisky, FA Mussa-Ivaldi, A Karniel IEEE Transactions on Haptics 1 (2), 73-82, 2008 | 69 | 2008 |
Savings in locomotor adaptation explained by changes in learning parameters following initial adaptation F Mawase, L Shmuelof, S Bar-Haim, A Karniel Journal of neurophysiology 111 (7), 1444-1454, 2014 | 68 | 2014 |
Human motor control: learning to control a time-varying, nonlinear, many-to-one system A Karniel, GF Inbar IEEE Transactions on Systems, Man, and Cybernetics, Part C (Applications and …, 2000 | 66 | 2000 |
Duration and patterns of habitual physical activity in adolescents and young adults with cerebral palsy A Shkedy Rabani, N Harries, I Namoora, MD Al‐Jarrah, A Karniel, ... Developmental Medicine & Child Neurology 56 (7), 673-680, 2014 | 62 | 2014 |
Open questions in computational motor control A Karniel Journal of integrative neuroscience 10 (03), 385-411, 2011 | 62 | 2011 |
Perception and action in teleoperated needle insertion I Nisky, A Pressman, CM Pugh, FA Mussa-Ivaldi, A Karniel IEEE transactions on haptics 4 (3), 155-166, 2011 | 59 | 2011 |
Analytical study of perceptual and motor transparency in bilateral teleoperation I Nisky, FA Mussa-Ivaldi, A Karniel IEEE Transactions on Human-Machine Systems 43 (6), 570-582, 2013 | 52 | 2013 |
Feedback and feedforward adaptation to visuomotor delay during reaching and slicing movements L Botzer, A Karniel European Journal of Neuroscience 38 (1), 2108-2123, 2013 | 48 | 2013 |
The effect of force feedback delay on stiffness perception and grip force modulation during tool-mediated interaction with elastic force fields R Leib, A Karniel, I Nisky Journal of neurophysiology 113 (9), 3076-3089, 2015 | 46 | 2015 |