Published in Conf Proc IEEE Eng Med Biol Soc on January 01, 2005
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Interacting adaptive processes with different timescales underlie short-term motor learning. PLoS Biol (2006) 6.69
Sensory prediction errors drive cerebellum-dependent adaptation of reaching. J Neurophysiol (2007) 4.31
Quantifying generalization from trial-by-trial behavior of adaptive systems that learn with basis functions: theory and experiments in human motor control. J Neurosci (2003) 3.65
Neural correlates of reach errors. J Neurosci (2005) 3.40
Intact ability to learn internal models of arm dynamics in Huntington's disease but not cerebellar degeneration. J Neurophysiol (2004) 3.27
The dynamics of memory as a consequence of optimal adaptation to a changing body. Nat Neurosci (2007) 3.11
Adaptive control of saccades via internal feedback. J Neurosci (2008) 2.89
Generalization of motor learning depends on the history of prior action. PLoS Biol (2006) 2.55
Consolidation of motor memory. Trends Neurosci (2005) 2.37
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Size of error affects cerebellar contributions to motor learning. J Neurophysiol (2010) 2.19
Learned dynamics of reaching movements generalize from dominant to nondominant arm. J Neurophysiol (2003) 2.14
Reach adaptation: what determines whether we learn an internal model of the tool or adapt the model of our arm? J Neurophysiol (2008) 2.09
Detecting and adjusting for artifacts in fMRI time series data. Neuroimage (2005) 2.09
The coordination of movement: optimal feedback control and beyond. Trends Cogn Sci (2009) 2.03
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Representation of internal models of action in the autistic brain. Nat Neurosci (2009) 1.72
A gain-field encoding of limb position and velocity in the internal model of arm dynamics. PLoS Biol (2003) 1.70
Cerebellar contributions to adaptive control of saccades in humans. J Neurosci (2009) 1.69
Persistence of motor memories reflects statistics of the learning event. J Neurophysiol (2009) 1.60
Spontaneous recovery of motor memory during saccade adaptation. J Neurophysiol (2008) 1.59
Consolidation patterns of human motor memory. J Neurosci (2008) 1.59
Dissociable effects of the implicit and explicit memory systems on learning control of reaching. Exp Brain Res (2006) 1.51
Internal models of limb dynamics and the encoding of limb state. J Neural Eng (2005) 1.49
Why does the brain predict sensory consequences of oculomotor commands? Optimal integration of the predicted and the actual sensory feedback. J Neurosci (2006) 1.45
Adaptation and generalization in acceleration-dependent force fields. Exp Brain Res (2005) 1.38
A shared resource between declarative memory and motor memory. J Neurosci (2010) 1.37
Protection and expression of human motor memories. J Neurosci (2011) 1.36
The intrinsic value of visual information affects saccade velocities. Exp Brain Res (2009) 1.32
Effects of human cerebellar thalamus disruption on adaptive control of reaching. Cereb Cortex (2005) 1.28
On-line processing of uncertain information in visuomotor control. J Neurosci (2008) 1.27
Dissociating timing and coordination as functions of the cerebellum. J Neurosci (2007) 1.25
Mechanisms influencing acquisition and recall of motor memories. J Neurophysiol (2002) 1.23
A real-time state predictor in motor control: study of saccadic eye movements during unseen reaching movements. J Neurosci (2002) 1.23
Motor learning relies on integrated sensory inputs in ADHD, but over-selectively on proprioception in autism spectrum conditions. Autism Res (2012) 1.22
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Sensitivity to prediction error in reach adaptation. J Neurophysiol (2012) 1.18
Changes in control of saccades during gain adaptation. J Neurosci (2008) 1.16
Internal models and contextual cues: encoding serial order and direction of movement. J Neurophysiol (2004) 1.15
Evolution of motor memory during the seconds after observation of motor error. J Neurophysiol (2007) 1.15
Contributions of the motor cortex to adaptive control of reaching depend on the perturbation schedule. Cereb Cortex (2010) 1.13
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Stimulation of the human motor cortex alters generalization patterns of motor learning. J Neurosci (2011) 1.10
Evidence for hyperbolic temporal discounting of reward in control of movements. J Neurosci (2012) 1.09
Acquisition of internal models of motor tasks in children with autism. Brain (2008) 1.01
Preparing to reach: selecting an adaptive long-latency feedback controller. J Neurosci (2012) 0.97
Decay of motor memories in the absence of error. J Neurosci (2013) 0.95
Active learning: learning a motor skill without a coach. J Neurophysiol (2008) 0.95
Changes in corticospinal excitability during reach adaptation in force fields. J Neurophysiol (2012) 0.90
Some perspectives on saccade adaptation. Ann N Y Acad Sci (2009) 0.88
TMS perturbs saccade trajectories and unmasks an internal feedback controller for saccades. J Neurosci (2011) 0.87
Motor costs and the coordination of the two arms. J Neurosci (2014) 0.86
Electrifying the motor engram: effects of tDCS on motor learning and control. Exp Brain Res (2014) 0.86
Towards a computational neuropsychology of action. Prog Brain Res (2007) 0.85
Vigor of movements and the cost of time in decision making. J Neurosci (2014) 0.83
Saccade adaptation in response to altered arm dynamics. J Neurophysiol (2003) 0.83
Carotid bifurcation calcium and correlation with percent stenosis of the internal carotid artery on CT angiography. Neuroradiology (2005) 0.80
Sequential neural changes during motor learning in schizophrenia. Psychiatry Res (2008) 0.78
Mesenteric lipodystrophy of the left colon. Am Surg (2007) 0.75