On the control of unstable objects: the dynamics of human stick balancing.
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Summary
An intermittent, drift-and-correct mechanism that is sensitive to the cognitive and physical task demands of the stick-balancing task and the Dynamical system’s approaches to motor control and learning are discussed in detail.
- Type
- article
- Published
- 2013-01-01
- Cited by
- 24
- References
- 79
- OpenAlex
- https://openalex.org/W51503508
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:29656671
Keywords
Inverted pendulum, Computer science, Motor control, Mechanism (biology), Task (project management)
References
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- Random walking during quiet standing.
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- On-off intermittency in a human balancing task.
- Optimal feedback control as a theory of motor coordination
- Stochastic two-delay differential model of delayed visual feedback effects on postural dynamics
- Dynamic regulation of sensorimotor integration in human postural control.
- Application of the Kalman-Levy Filter for Tracking Maneuvering Targets
- Augmented Feedback Presented in a Virtual Environment Accelerates Learning of a Difficult Motor Task.
- Postural stabilization for the control of touching
- Upright, correlated random walks: A statistical-biomechanics approach to the human postural control system.
- Evidence for an error deadzone in compensatory tracking.
- Multisensory fusion and the stochastic structure of postural sway
Cited by
- Double-well dynamics of noise-driven control activation in human intermittent control: the case of stick balancing
- To react or not to react? Intrinsic stochasticity of human control in virtual stick balancing
- How the Type of Visual Feedback Affects Actions of Human operators: The Case of Virtual Stick Balancing
- Statistical Properties of Human Response Delay: Analysis of Virtual Stick Balancing Experiments
- To react or not to react? A double-well potential model of event-driven human control
- Noise-induced phase transition in the model of human virtual stick balancing
- Intermittent Control Properties of Car Following: Theory and Driving Simulator Experiments
- Interacting Learning Processes during Skill Acquisition: Learning to control with gradually changing system dynamics
- Statistical Properties of Decision-Making Governed by Reinforcement Learning with Status Quo Bias
- Cloud Type Interpretation of Statistical Properties of Human Response Delay in Pendulum Balancing
- Coupling relations underlying the production of speech articulator movements and their invariance to speech rate
- Spatially Separating Haptic Guidance From Task Dynamics Through Wearable Devices
- Statistical Properties of Car Following: Theory and Driving Simulator Experiments
- A Robust Nonlinear Control Strategy for Unsupported Paraplegic Standing Using Functional Electrical Stimulation: Controller Synthesis and Simulation
- Spatially Separated Cutaneous Haptic Guidance for Training of a Virtual Sensorimotor Task
- Heavy-tailed distributions in haptic perception of wielded rods
- Is acrobatic pyramid performance determined by the individual balance of the gymnasts?
- cTBS Over the Left Supplementary Motor Area (lSMA) Does Not Modulate Rhythmic Bimanual Coordination in the Presence and Absence of Visual Cues
- In a visual inverted pendulum balancing task avoiding impending falls gets harder as we age
- Dynamic Analysis of Micromobility In-Wheel Suspension System – Enhancing Safety in Urban Environments
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