Area of research
Cognitive Neuroscience · Neurology
Research interest
Research interests include Motor Control and Adaptation, Action Observation and Synchronization, Muscle activation and electromyography studies, and Vestibular and auditory disorders.
Preserved cerebellar functions despite structural degeneration in older adults
Age-related changes in proprioception are of limited size, outcome-dependent and task-dependent
Preserved cerebellar functions despite structural degeneration in older adults
No effect of anodal high-definition transcranial direct current stimulation during motor sequence learning in older people
ABSTRACT NUMBER: ESOC2026OT187 ROBUST: INTEGRATED SENSORIMOTOR UPPER LIMB THERAPY FOR CHRONIC STROKE – RCT PROTOCOL
Adults up to 80 years old maintain effective movement planning when facing complex body dynamics
A paradigm to study the learning of muscle activity patterns outside of the natural repertoire
3D-printable stimulation electrodes to improve precision, reproducibility, and reliability of transcranial electric current stimulation
Modeling Human Visuomotor Adaptation with a Disturbance Observer Framework
A control policy can be adapted to task demands during both motor execution and motor planning
The differential effect of age on upper limb sensory processing, proprioception, and motor function
Lower back muscle activity during weight-shifting is affected by ageing and dual-tasking
Does proprioceptive acuity influence the extent of implicit sensorimotor adaptation in young and older adults?
Increased upper-limb sensory attenuation with age
Why is the explicit component of motor adaptation limited in elderly adults?
Internal model recalibration does not deteriorate with age while motor adaptation does
Why is the explicit component of motor adaptation limited in elderly adults?
Weighted integration of short-term memory and sensory signals in the oculomotor system
Robot-assisted line bisection test in virtual reality
Two hands, one brain, and aging
Overlap of movement planning and movement execution reduces reaction time
Formation of model-free motor memories during motor adaptation depends on perturbation schedule