2008 |
17 | EE | Mark L. Latash,
Xun Niu,
Vladimir M. Zatsiorsky:
Multi-finger Prehension Synergy: Exploration with Transcranial Magnetic Stimulation.
EuroHaptics 2008: 389-394 |
2006 |
16 | EE | Mark K. Budgeon,
Mark L. Latash,
Vladimir M. Zatsiorsky,
Zong-Ming Li:
Inverse Piano Technique: a New Tool to Study Finger Interdependence.
HAPTICS 2006: 61 |
15 | EE | Simon R. Goodman,
Mark L. Latash:
Feed-forward control of a redundant motor system.
Biological Cybernetics 95(3): 271-280 (2006) |
2005 |
14 | EE | Mark L. Latash,
Jae Kun Shim,
Andrei V. Smilga,
Vladimir M. Zatsiorsky:
A central back-coupling hypothesis on the organization of motor synergies: a physical metaphor and a neural model.
Biological Cybernetics 92(3): 186-191 (2005) |
2004 |
13 | EE | Vladimir M. Zatsiorsky,
Mark L. Latash,
Frédéric Danion,
Fan Gao,
Zong-Ming Li,
Robert W. Gregory,
Sheng Li:
Inter-finger Connection Matrices.
International Conference on Computational Science 2004: 1056-1064 |
12 | EE | Simon R. Goodman,
Mark L. Latash,
Vladimir M. Zatsiorsky:
Indices of nonlinearity in finger force interaction.
Biological Cybernetics 90(4): 264-271 (2004) |
11 | EE | Todd C. Pataky,
Mark L. Latash,
Vladimir M. Zatsiorsky:
Prehension synergies during nonvertical grasping, I: experimental observations.
Biological Cybernetics 91(3): 148-158 (2004) |
10 | EE | Todd C. Pataky,
Mark L. Latash,
Vladimir M. Zatsiorsky:
Prehension synergies during nonvertical grasping, II: Modeling and optimization.
Biological Cybernetics 91(4): 231-242 (2004) |
9 | EE | Fan Gao,
Mark L. Latash,
Vladimir M. Zatsiorsky:
Neural network modeling supports a theory on the hierarchical control of prehension.
Neural Computing and Applications 13(4): 352-359 (2004) |
8 | EE | Vladimir M. Zatsiorsky,
Mark L. Latash,
Fan Gao,
Jae Kun Shim:
The principle of superposition in human prehension.
Robotica 22(2): 231-234 (2004) |
2003 |
7 | EE | Frédéric Danion,
Gregor Schöner,
Mark L. Latash,
Sheng Li,
John P. Scholz,
Vladimir M. Zatsiorsky:
A mode hypothesis for finger interaction during multi-finger force-production tasks.
Biological Cybernetics 88(2): 91-98 (2003) |
6 | EE | Vijaya Krishnamoorthy,
Simon R. Goodman,
Vladimir M. Zatsiorsky,
Mark L. Latash:
Muscle synergies during shifts of the center of pressure by standing persons: identification of muscle modes.
Biological Cybernetics 89(2): 152-161 (2003) |
5 | EE | Fan Gao,
Sheng Li,
Zong-Ming Li,
Mark L. Latash,
Vladimir M. Zatsiorsky:
Matrix analyses of interaction among fingers in static force production tasks.
Biological Cybernetics 89(6): 407-414 (2003) |
2002 |
4 | EE | John P. Scholz,
Frédéric Danion,
Mark L. Latash,
Gregor Schöner:
Understanding finger coordination through analysis of the structure of force variability.
Biological Cybernetics 86(1): 29-39 (2002) |
3 | EE | Vladimir M. Zatsiorsky,
Robert W. Gregory,
Mark L. Latash:
Force and torque production in static multifinger prehension: biomechanics and control. II. Control.
Biological Cybernetics 87(1): 40-49 (2002) |
2 | EE | Vladimir M. Zatsiorsky,
Robert W. Gregory,
Mark L. Latash:
Force and torque production in static multifinger prehension: biomechanics and control. I. Biomechanics.
Biological Cybernetics 87(1): 50-57 (2002) |
1 | EE | Zong-Ming Li,
Vladimir M. Zatsiorsky,
Mark L. Latash,
N. K. Bose:
Anatomically and experimentally based neural networks modeling force coordination in static multi-finger tasks.
Neurocomputing 47(1-4): 259-275 (2002) |