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Daniel M Wolpert

Biographic Data

ID1840102
NAMEDaniel M Wolpert
GIVEN NAMESDaniel M
FAMILY NAMEWolpert
SIGNATUREWOLPERT D M
AFFILIATIONSNational Hospital for Neurology and Neurosurgery
ORCID0000-0003-2011-2790
VERIFIEDYes
TOTAL WORKS15
TOTAL CITATIONS1
AUTHOR COUNT14
EDITOR COUNT1
FIRST PUBLICATION YEAR1995
LATEST PUBLICATION YEAR2024
H-INDEX1
  • Ouvrai opens access to remote virtual reality studies of human behavioural neuroscience

    Open Access•Evan Cesanek, Sabyasachi Shivkumar et al.•ARTICLE•Nature Human Behaviour•2024•References: 54

  • Multiple motor memories are learned to control different points on a tool

    Open Access•James B Heald, James N Ingram et al.•ARTICLE•Nature Human Behaviour•2018•Cited by: 1•References: 81

  • Bayesian integration in sensorimotor learning

    Open Access•Konrad Paul Kording, Daniel M Wolpert•ARTICLE•Nature•2004

  • A unifying computational framework for motor control and social interaction

    Open Access•Kenji Doya, Mitsuo Kawato et al.•ARTICLE•Philosophical Transactions of the…•2003

    Recent empirical studies have implicated the use of the motor system during action observation, imitation and social interaction. In this paper, we explore the computational parallels between the processes that occur in motor control and in action observation, imitation, social interaction and theory of mind. In particular, we examine the extent to which motor commands acting on the body can be equated with communicative signals acting on other p…

  • Abnormalities in the awareness of action

    Open Access•Sarah‐jayne Blakemore, Sarah-Jayne Blakemore et al.•ARTICLE•Trends in Cognitive Sciences•2002

  • Motor prediction

    Open Access•Daniel M Wolpert, J Randall Flanagan•ARTICLE•Current Biology•2001

  • Computational principles of movement neuroscience

    Open Access•Daniel M Wolpert, Zoubin Ghahramani•ARTICLE•Nature Neuroscience•2000

  • Why canʼt you tickle yourself?

    Sarah‐jayne Blakemore, Sarah-Jayne Blakemore et al.•ARTICLE•NeuroReport•2000

    It is well known that you cannot tickle yourself. Here, we discuss the proposal that such attenuation of self-produced tactile stimulation is due to the sensory predictions made by an internal forward model of the motor system. A forward model predicts the sensory consequences of a movement based on the motor command. When a movement is self-produced, its sensory consequences can be accurately predicted, and this prediction can be used to attenua…

  • Abnormalities in the awareness and control of action

    Open Access•Chris Frith, Christopher D Frith et al.•ARTICLE•Philosophical Transactions of the…•2000

    Much of the functioning of the motor system occurs without awareness. Nevertheless, we are aware of some aspects of the current state of the system and we can prepare and make movements in the imagination. These mental representations of the actual and possible states of the system are based on two sources: sensory signals from skin and muscles, and the stream of motor commands that have been issued to the system. Damage to the neural substrates …

  • Spatio-Temporal Prediction Modulates the Perception of Self-Produced Stimuli

    Open Access•Sarah‐jayne Blakemore, Sarah-J Blakemore et al.•ARTICLE•Journal of Cognitive Neuroscience•1999

    We investigated why self-produced tactile stimulation is perceived as less intense than the same stimulus produced externally. A tactile stimulus on the palm of the right hand was either externally produced, by a robot or self-produced by the subject. In the conditions in which the tactile stimulus was self-produced, subjects moved the arm of a robot with their left hand to produce the tactile stimulus on their right hand via a second robot. Subj…

  • Central cancellation of self-produced tickle sensation

    Open Access•Sarah‐jayne Blakemore, Sarah-J Blakemore et al.•ARTICLE•Nature Neuroscience•1998

  • Multiple paired forward and inverse models for motor control

    Open Access•Daniel M Wolpert, Mitsuo Kawato•ARTICLE•Neural Networks•1998

  • Computational approaches to motor control

    Open Access•Daniel M Wolpert•ARTICLE•Trends in Cognitive Sciences•1997

  • Forward Models for Physiological Motor Control

    Open Access•R Chris Miall, Daniel M Wolpert•ARTICLE•Neural Networks•1996

  • An Internal Model for Sensorimotor Integration

    Open Access•Daniel M Wolpert, Zoubin Ghahramani et al.•ARTICLE•Science•1995

    On the basis of computational studies it has been proposed that the central nervous system internally simulates the dynamic behavior of the motor system in planning, control, and learning; the existence and use of such an internal model is still under debate. A sensorimotor integration task was investigated in which participants estimated the location of one of their hands at the end of movements made in the dark and under externally imposed forc…

  • Multiple motor memories are learned to control different points on a tool

    Open Access•James B Heald, James N Ingram et al.•ARTICLE•Nature Human Behaviour•2018•Cited by: 1•References: 81

  • An Internal Model for Sensorimotor Integration

    Open Access•Daniel M Wolpert, Zoubin Ghahramani et al.•ARTICLE•Science•1995

    On the basis of computational studies it has been proposed that the central nervous system internally simulates the dynamic behavior of the motor system in planning, control, and learning; the existence and use of such an internal model is still under debate. A sensorimotor integration task was investigated in which participants estimated the location of one of their hands at the end of movements made in the dark and under externally imposed forc…

  • Forward Models for Physiological Motor Control

    Open Access•R Chris Miall, Daniel M Wolpert•ARTICLE•Neural Networks•1996

  • Computational approaches to motor control

    Open Access•Daniel M Wolpert•ARTICLE•Trends in Cognitive Sciences•1997

  • Central cancellation of self-produced tickle sensation

    Open Access•Sarah‐jayne Blakemore, Sarah-J Blakemore et al.•ARTICLE•Nature Neuroscience•1998

  • Multiple paired forward and inverse models for motor control

    Open Access•Daniel M Wolpert, Mitsuo Kawato•ARTICLE•Neural Networks•1998

  • Spatio-Temporal Prediction Modulates the Perception of Self-Produced Stimuli

    Open Access•Sarah‐jayne Blakemore, Sarah-J Blakemore et al.•ARTICLE•Journal of Cognitive Neuroscience•1999

    We investigated why self-produced tactile stimulation is perceived as less intense than the same stimulus produced externally. A tactile stimulus on the palm of the right hand was either externally produced, by a robot or self-produced by the subject. In the conditions in which the tactile stimulus was self-produced, subjects moved the arm of a robot with their left hand to produce the tactile stimulus on their right hand via a second robot. Subj…

  • Computational principles of movement neuroscience

    Open Access•Daniel M Wolpert, Zoubin Ghahramani•ARTICLE•Nature Neuroscience•2000

  • Why canʼt you tickle yourself?

    Sarah‐jayne Blakemore, Sarah-Jayne Blakemore et al.•ARTICLE•NeuroReport•2000

    It is well known that you cannot tickle yourself. Here, we discuss the proposal that such attenuation of self-produced tactile stimulation is due to the sensory predictions made by an internal forward model of the motor system. A forward model predicts the sensory consequences of a movement based on the motor command. When a movement is self-produced, its sensory consequences can be accurately predicted, and this prediction can be used to attenua…

  • Abnormalities in the awareness and control of action

    Open Access•Chris Frith, Christopher D Frith et al.•ARTICLE•Philosophical Transactions of the…•2000

    Much of the functioning of the motor system occurs without awareness. Nevertheless, we are aware of some aspects of the current state of the system and we can prepare and make movements in the imagination. These mental representations of the actual and possible states of the system are based on two sources: sensory signals from skin and muscles, and the stream of motor commands that have been issued to the system. Damage to the neural substrates …

  • Motor prediction

    Open Access•Daniel M Wolpert, J Randall Flanagan•ARTICLE•Current Biology•2001

  • Abnormalities in the awareness of action

    Open Access•Sarah‐jayne Blakemore, Sarah-Jayne Blakemore et al.•ARTICLE•Trends in Cognitive Sciences•2002

  • A unifying computational framework for motor control and social interaction

    Open Access•Kenji Doya, Mitsuo Kawato et al.•ARTICLE•Philosophical Transactions of the…•2003

    Recent empirical studies have implicated the use of the motor system during action observation, imitation and social interaction. In this paper, we explore the computational parallels between the processes that occur in motor control and in action observation, imitation, social interaction and theory of mind. In particular, we examine the extent to which motor commands acting on the body can be equated with communicative signals acting on other p…

  • Bayesian integration in sensorimotor learning

    Open Access•Konrad Paul Kording, Daniel M Wolpert•ARTICLE•Nature•2004

  • Multiple motor memories are learned to control different points on a tool

    Open Access•James B Heald, James N Ingram et al.•ARTICLE•Nature Human Behaviour•2018•Cited by: 1•References: 81

  • Ouvrai opens access to remote virtual reality studies of human behavioural neuroscience

    Open Access•Evan Cesanek, Sabyasachi Shivkumar et al.•ARTICLE•Nature Human Behaviour•2024•References: 54

Motor Control and Adaptation (14 works) · Computer Science (12 works) · Neuroscience (12 works) · Action Observation and Synchronization (11 works) · Psychology (11 works) · Artificial Intelligence (10 works) · Control (management) (8 works) · Motor Control (8 works) · Cognitive psychology (7 works) · Engineering (5 works)

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