Area of research
Neurology · Physiology
Research interest
Research interests include Neuroscience, Vestibular system, Spaceflight, Medicine, Somatosensory system, and Stroke (engine).
Prolonged microgravity induces reversible and persistent changes on human cerebral connectivity
Paving the way to better understand the effects of prolonged spaceflight on operational performance and its neural bases
Eye-brain axis in microgravity and its implications for Spaceflight Associated Neuro-ocular Syndrome
The effect of prolonged spaceflight on cerebrospinal fluid and perivascular spaces of astronauts and cosmonauts
Brain Connectometry Changes in Space Travelers After Long-Duration Spaceflight
Macro- and microstructural changes in cosmonauts’ brains after long-duration spaceflight
Prediction contribution of the cranial collateral circulation to the clinical and radiological outcome of ischemic stroke
Brain ventricular volume changes induced by long-duration spaceflight
Brain Tissue–Volume Changes in Cosmonauts
Functional correlate and delineated connectivity pattern of human motion aftereffect responses substantiate a subjacent visual-vestibular interaction
Delineating function and connectivity of optokinetic hubs in the cerebellum and the brainstem
Ageing‐related changes in the cortical processing of otolith information in humans
Insula and sensory insular cortex and somatosensory control in patients with insular stroke
Interoceptive and multimodal functions of the operculo-insular cortex: Tactile, nociceptive and vestibular representations
Posterior insular cortex – a site of vestibular–somatosensory interaction?
Insular Strokes Cause No Vestibular Deficits
Ventral and dorsal streams processing visual motion perception (FDG-PET study)
On the recall of vestibular sensations