Skip to content

🏃Methods

Motor Control · From intention to muscle — cortico-basal ganglia-cerebellar loops that select, time and correct movement.

Reviewed 2026-08·Sources & research·Methodology·Media credits

Charles Sherrington
Motor ControlUnknown author Unknown author · CC BY 4.0 · Wikimedia Commons

Methods range from kinematics and EMG to perturbation psychophysics, neuroimaging and invasive recordings — each with impurity problems.

Triangulate behavioural and neural measures; never trust a single lab score.

Tools

3D kinematics / motion capture

Quantify trajectories, variability and synergies.

EMG / H-reflex

Probe muscle drive and spinal gain.

Force-field / prism adaptation

Assay cerebellar learning curves.

fMRI / MEG / EEG

Map preparation and error-related dynamics.

Intracranial / single-unit (lab)

Causal-resolution recordings in surgical contexts.

Computational optimal control

Formalise cost, noise and feedback policies.

Protocols

Sensorimotor adaptation designs

Clamp, washout and savings to probe retention.

Dual-task gait protocols

Reveal cognitive–motor interference.

DBS ON/OFF comparisons

Causal clinical windows onto BG loops.

Longitudinal skill cohorts

Track plasticity across practice and ageing.

Limits

Task impurity

Motivation and attention confound “pure” motor scores.

Lab–life gap

Treadmill gait ≠ cluttered real-world walking.

Species translation

Rodent reach ≠ human hand fractionation.

Preregister adaptation and transfer claims; many fail to generalise.

Sources & research

  1. Error correction, sensory prediction, and adaptation in motor controlShadmehr R; et al. · 2010 · Annual Review of NeuroscienceSynthesis of prediction and adaptation in motor control.DOI
  2. Ethological Action Maps: A Paradigm Shift for the Motor CortexGraziano MSA · 2016 · Trends in Cognitive SciencesAction-map view of motor cortex organisation.DOI
  3. The basal ganglia: focused selection and inhibition of competing motor programsMink JW · 1996 · Progress in NeurobiologyCanonical basal-ganglia selection model.DOI

Media credits

Keep exploring

More in Cognition

🧩

Memory

How the brain encodes, stores and retrieves experience across systems.

Research 75
🎯

Attention

Selecting what enters awareness — and what the brain must ignore.

Research 88
💬

Language

Speech, comprehension and the cortical networks that make meaning.

Research 74
💓

Emotion

Affective circuits linking body states, appraisal and social meaning.

Research 67
⚖️

Decision-Making

Value, risk and control — how choices emerge from competing signals.

Research 66
😴

Sleep

Oscillations, stages and the nightly work of memory and repair.

Research 97
🔄

Neuroplasticity

How experience rewires synapses, maps and recovery trajectories.

Research 50

Consciousness

Awareness, reportability and the hard problem still facing science.

Research 89
📚

Learning

How practice, prediction and reward reshape circuits over time.

Research 90
👁️

Perception

Building a usable world from noisy sensors and prior expectations.

Research 77
🔥

Pain

A protective percept built from nociception, context and prediction.

Research 74

Brain Aging

Lifelong change in structure, networks and cognitive reserve.

Research 57

Belief, Expectation & Becoming

Where self-help, manifestation metaphors and religious hope meet expectancy, attention and prediction — and where they overclaim.

Research 78
🕯️

Contemplative Practice

Meditation, prayer and liturgy as trained attention and regulation — evidence, limits and cultural context.

Research 82
🧭

Executive Function

Working memory, inhibition and cognitive flexibility — the control system that steers thought and action toward goals.

Research 88
🤝

Social Cognition

How brains read minds, faces and norms — theory of mind, empathy and the networks that make us social.

Research 85