Area of research
Cognitive Neuroscience · Cellular and Molecular Neuroscience
Research interest
Research interests include Memory and Neural Mechanisms, Neuroscience and Neuropharmacology Research, Spatial Cognition and Navigation, and Neural dynamics and brain function.
Living off the grid: Spatial representations show systematic non-Euclidean distortions regardless of their age and how measured
Language statistics shape spatial processing
Toward embodied, ecological cognition with ambulatory virtual reality
Illusory path configurations reveal age-related differences in egocentric pointing variability
A cognitive–motor framework for spatial navigation in aging and early-stage Alzheimer's disease
Age differences in spatial navigation stem from a preference for familiar routes rather than impaired landmark-dependent strategies.
Newly trained navigation and verbal memory skills in humans elicit changes in task-related networks but not brain structure
Newly trained navigation and verbal memory skills in humans elicit changes in task-related networks but not brain structure.
Naturalistic movements enrich episodic memories but not their spatiotemporal structure
Despite dense amnesia, patients with hippocampal lesions show partially intact navigation for recent and remotely learned environments.
Despite dense amnesia, patients with hippocampal lesions show partially intact navigation for recent and remotely learned environments
Ambulation improves memory for rotated scenes
Newly trained navigation and verbal memory skills in humans elicit changes in task-related networks but not brain structure
Age differences in spatial memory are mitigated during naturalistic navigation
CW_ICA: an efficient dimensionality determination method for independent component analysis
Towards Analysis of Multivariate Time Series Using Topological Data Analysis
Topological Data Analysis for Scalp Eeg with Application in Brain-Computer Interfaces
A Cognitive-Motor Framework for Spatial Navigation in Aging and Alzheimer’s Disease
The hippocampus supports precise memory for public events regardless of their remoteness.
Age differences in spatial navigation stem from a preference for familiar routes rather than impaired landmark-dependent strategies
A Cognitive-Motor Framework for Spatial Navigation in Aging and Alzheimer’s Disease
Differences and similarities between human hippocampal low-frequency oscillations during navigation and mental simulation
Spatial navigation and memory: A review of the similarities and differences relevant to brain models and age
Memory-related processing is the primary driver of human hippocampal theta oscillations
Hippocampal contributions to novel spatial learning are both age-related and age-invariant
Memory-related processing is the primary driver of human hippocampal theta oscillations.
Frontal-midline theta and posterior alpha oscillations index early processing of spatial representations during active navigation
Hippocampal contributions to novel spatial learning are both age-related and age-invariant.
Spatial memory distortions for the shapes of walked paths occur in violation of physically experienced geometry
Machine learning classifiers for electrode selection in the design of closed-loop neuromodulation devices for episodic memory improvement