R Shadmehr, F A Mussa-Ivaldi. J Neurosci 1994
Times Cited: 1361
Times Cited: 1361
Times Cited
Times Co-cited
Similarity
Interacting adaptive processes with different timescales underlie short-term motor learning.
Maurice A Smith, Ali Ghazizadeh, Reza Shadmehr. PLoS Biol 2006
Maurice A Smith, Ali Ghazizadeh, Reza Shadmehr. PLoS Biol 2006
34
Error correction, sensory prediction, and adaptation in motor control.
Reza Shadmehr, Maurice A Smith, John W Krakauer. Annu Rev Neurosci 2010
Reza Shadmehr, Maurice A Smith, John W Krakauer. Annu Rev Neurosci 2010
31
Explicit and implicit contributions to learning in a sensorimotor adaptation task.
Jordan A Taylor, John W Krakauer, Richard B Ivry. J Neurosci 2014
Jordan A Taylor, John W Krakauer, Richard B Ivry. J Neurosci 2014
27
An implicit plan overrides an explicit strategy during visuomotor adaptation.
Pietro Mazzoni, John W Krakauer. J Neurosci 2006
Pietro Mazzoni, John W Krakauer. J Neurosci 2006
24
Learning of visuomotor transformations for vectorial planning of reaching trajectories.
J W Krakauer, Z M Pine, M F Ghilardi, C Ghez. J Neurosci 2000
J W Krakauer, Z M Pine, M F Ghilardi, C Ghez. J Neurosci 2000
22
Learning of action through adaptive combination of motor primitives.
K A Thoroughman, R Shadmehr. Nature 2000
K A Thoroughman, R Shadmehr. Nature 2000
21
Optimal feedback control as a theory of motor coordination.
Emanuel Todorov, Michael I Jordan. Nat Neurosci 2002
Emanuel Todorov, Michael I Jordan. Nat Neurosci 2002
20
20
Motor Learning.
John W Krakauer, Alkis M Hadjiosif, Jing Xu, Aaron L Wong, Adrian M Haith. Compr Physiol 2019
John W Krakauer, Alkis M Hadjiosif, Jing Xu, Aaron L Wong, Adrian M Haith. Compr Physiol 2019
20
Independent learning of internal models for kinematic and dynamic control of reaching.
J W Krakauer, M F Ghilardi, C Ghez. Nat Neurosci 1999
J W Krakauer, M F Ghilardi, C Ghez. Nat Neurosci 1999
19
An internal model for sensorimotor integration.
D M Wolpert, Z Ghahramani, M I Jordan. Science 1995
D M Wolpert, Z Ghahramani, M I Jordan. Science 1995
18
Rapid adaptation to Coriolis force perturbations of arm trajectory.
J R Lackner, P Dizio. J Neurophysiol 1994
J R Lackner, P Dizio. J Neurophysiol 1994
17
Persistence of motor adaptation during constrained, multi-joint, arm movements.
R A Scheidt, D J Reinkensmeyer, M A Conditt, W Z Rymer, F A Mussa-Ivaldi. J Neurophysiol 2000
R A Scheidt, D J Reinkensmeyer, M A Conditt, W Z Rymer, F A Mussa-Ivaldi. J Neurophysiol 2000
15
The assessment and analysis of handedness: the Edinburgh inventory.
R C Oldfield. Neuropsychologia 1971
R C Oldfield. Neuropsychologia 1971
15
15
Learning to move amid uncertainty.
R A Scheidt, J B Dingwell, F A Mussa-Ivaldi. J Neurophysiol 2001
R A Scheidt, J B Dingwell, F A Mussa-Ivaldi. J Neurophysiol 2001
14
Motor learning by field approximation.
F Gandolfo, F A Mussa-Ivaldi, E Bizzi. Proc Natl Acad Sci U S A 1996
F Gandolfo, F A Mussa-Ivaldi, E Bizzi. Proc Natl Acad Sci U S A 1996
14
Sensory prediction errors drive cerebellum-dependent adaptation of reaching.
Ya-Weng Tseng, Jörn Diedrichsen, John W Krakauer, Reza Shadmehr, Amy J Bastian. J Neurophysiol 2007
Ya-Weng Tseng, Jörn Diedrichsen, John W Krakauer, Reza Shadmehr, Amy J Bastian. J Neurophysiol 2007
14
Rethinking motor learning and savings in adaptation paradigms: model-free memory for successful actions combines with internal models.
Vincent S Huang, Adrian Haith, Pietro Mazzoni, John W Krakauer. Neuron 2011
Vincent S Huang, Adrian Haith, Pietro Mazzoni, John W Krakauer. Neuron 2011
13
Quantifying generalization from trial-by-trial behavior of adaptive systems that learn with basis functions: theory and experiments in human motor control.
Opher Donchin, Joseph T Francis, Reza Shadmehr. J Neurosci 2003
Opher Donchin, Joseph T Francis, Reza Shadmehr. J Neurosci 2003
13
The central nervous system stabilizes unstable dynamics by learning optimal impedance.
E Burdet, R Osu, D W Franklin, T E Milner, M Kawato. Nature 2001
E Burdet, R Osu, D W Franklin, T E Milner, M Kawato. Nature 2001
13
Savings upon Re-Aiming in Visuomotor Adaptation.
J Ryan Morehead, Salman E Qasim, Matthew J Crossley, Richard Ivry. J Neurosci 2015
J Ryan Morehead, Salman E Qasim, Matthew J Crossley, Richard Ivry. J Neurosci 2015
13
Explicit and Implicit Processes Constitute the Fast and Slow Processes of Sensorimotor Learning.
Samuel D McDougle, Krista M Bond, Jordan A Taylor. J Neurosci 2015
Samuel D McDougle, Krista M Bond, Jordan A Taylor. J Neurosci 2015
13
The influence of movement preparation time on the expression of visuomotor learning and savings.
Adrian M Haith, David M Huberdeau, John W Krakauer. J Neurosci 2015
Adrian M Haith, David M Huberdeau, John W Krakauer. J Neurosci 2015
12
Relation between reaction time and reach errors during visuomotor adaptation.
Juan Fernandez-Ruiz, William Wong, Irene T Armstrong, J Randall Flanagan. Behav Brain Res 2011
Juan Fernandez-Ruiz, William Wong, Irene T Armstrong, J Randall Flanagan. Behav Brain Res 2011
13
Principles of sensorimotor learning.
Daniel M Wolpert, Jörn Diedrichsen, J Randall Flanagan. Nat Rev Neurosci 2011
Daniel M Wolpert, Jörn Diedrichsen, J Randall Flanagan. Nat Rev Neurosci 2011
12
The coordination of arm movements: an experimentally confirmed mathematical model.
T Flash, N Hogan. J Neurosci 1985
T Flash, N Hogan. J Neurosci 1985
12
Reach adaptation: what determines whether we learn an internal model of the tool or adapt the model of our arm?
JoAnn Kluzik, Jörn Diedrichsen, Reza Shadmehr, Amy J Bastian. J Neurophysiol 2008
JoAnn Kluzik, Jörn Diedrichsen, Reza Shadmehr, Amy J Bastian. J Neurophysiol 2008
11
Characteristics of Implicit Sensorimotor Adaptation Revealed by Task-irrelevant Clamped Feedback.
J Ryan Morehead, Jordan A Taylor, Darius E Parvin, Richard B Ivry. J Cogn Neurosci 2017
J Ryan Morehead, Jordan A Taylor, Darius E Parvin, Richard B Ivry. J Cogn Neurosci 2017
15
Flexible explicit but rigid implicit learning in a visuomotor adaptation task.
Krista M Bond, Jordan A Taylor. J Neurophysiol 2015
Krista M Bond, Jordan A Taylor. J Neurophysiol 2015
11
Motor Planning, Not Execution, Separates Motor Memories.
Hannah R Sheahan, David W Franklin, Daniel M Wolpert. Neuron 2016
Hannah R Sheahan, David W Franklin, Daniel M Wolpert. Neuron 2016
18
Relevance of error: what drives motor adaptation?
Kunlin Wei, Konrad Körding. J Neurophysiol 2009
Kunlin Wei, Konrad Körding. J Neurophysiol 2009
10
The dynamics of memory as a consequence of optimal adaptation to a changing body.
Konrad P Kording, Joshua B Tenenbaum, Reza Shadmehr. Nat Neurosci 2007
Konrad P Kording, Joshua B Tenenbaum, Reza Shadmehr. Nat Neurosci 2007
10
10
Shared internal models for feedforward and feedback control.
Mark J Wagner, Maurice A Smith. J Neurosci 2008
Mark J Wagner, Maurice A Smith. J Neurosci 2008
10
Neural correlates of reach errors.
Jörn Diedrichsen, Yasmin Hashambhoy, Tushar Rane, Reza Shadmehr. J Neurosci 2005
Jörn Diedrichsen, Yasmin Hashambhoy, Tushar Rane, Reza Shadmehr. J Neurosci 2005
10
A memory of errors in sensorimotor learning.
David J Herzfeld, Pavan A Vaswani, Mollie K Marko, Reza Shadmehr. Science 2014
David J Herzfeld, Pavan A Vaswani, Mollie K Marko, Reza Shadmehr. Science 2014
10
Intact ability to learn internal models of arm dynamics in Huntington's disease but not cerebellar degeneration.
Maurice A Smith, Reza Shadmehr. J Neurophysiol 2005
Maurice A Smith, Reza Shadmehr. J Neurophysiol 2005
10
How is a motor skill learned? Change and invariance at the levels of task success and trajectory control.
Lior Shmuelof, John W Krakauer, Pietro Mazzoni. J Neurophysiol 2012
Lior Shmuelof, John W Krakauer, Pietro Mazzoni. J Neurophysiol 2012
10
9
Dissociating the roles of the cerebellum and motor cortex during adaptive learning: the motor cortex retains what the cerebellum learns.
Joseph M Galea, Alejandro Vazquez, Neel Pasricha, Jean-Jacques Orban de Xivry, Pablo Celnik. Cereb Cortex 2011
Joseph M Galea, Alejandro Vazquez, Neel Pasricha, Jean-Jacques Orban de Xivry, Pablo Celnik. Cereb Cortex 2011
9
Multiple paired forward and inverse models for motor control.
D M Wolpert, M Kawato. Neural Netw 1998
D M Wolpert, M Kawato. Neural Netw 1998
9
Use-dependent and error-based learning of motor behaviors.
Jörn Diedrichsen, Olivier White, Darren Newman, Níall Lally. J Neurosci 2010
Jörn Diedrichsen, Olivier White, Darren Newman, Níall Lally. J Neurosci 2010
9
Learning from sensory and reward prediction errors during motor adaptation.
Jun Izawa, Reza Shadmehr. PLoS Comput Biol 2011
Jun Izawa, Reza Shadmehr. PLoS Comput Biol 2011
9
Distinct motor plans form and retrieve distinct motor memories for physically identical movements.
Masaya Hirashima, Daichi Nozaki. Curr Biol 2012
Masaya Hirashima, Daichi Nozaki. Curr Biol 2012
13
Rapid feedback responses correlate with reach adaptation and properties of novel upper limb loads.
Tyler Cluff, Stephen H Scott. J Neurosci 2013
Tyler Cluff, Stephen H Scott. J Neurosci 2013
13
Gone in 0.6 seconds: the encoding of motor memories depends on recent sensorimotor states.
Ian S Howard, James N Ingram, David W Franklin, Daniel M Wolpert. J Neurosci 2012
Ian S Howard, James N Ingram, David W Franklin, Daniel M Wolpert. J Neurosci 2012
13
Cerebellar contributions to locomotor adaptations during splitbelt treadmill walking.
Susanne M Morton, Amy J Bastian. J Neurosci 2006
Susanne M Morton, Amy J Bastian. J Neurosci 2006
9
Temporal structure of motor variability is dynamically regulated and predicts motor learning ability.
Howard G Wu, Yohsuke R Miyamoto, Luis Nicolas Gonzalez Castro, Bence P Ölveczky, Maurice A Smith. Nat Neurosci 2014
Howard G Wu, Yohsuke R Miyamoto, Luis Nicolas Gonzalez Castro, Bence P Ölveczky, Maurice A Smith. Nat Neurosci 2014
9
Impedance control and internal model use during the initial stage of adaptation to novel dynamics in humans.
Theodore E Milner, David W Franklin. J Physiol 2005
Theodore E Milner, David W Franklin. J Physiol 2005
8
Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.