- APID
- 11040
- ORCID
- 0000-0002-1222-9115
- Scopus
- 57221674276
- Google Scholar
- 3Fwmc7gAAAAJ
- Location
- New York, New York, United States
- Expertise
- Bio-signal Processing, Signal Detection Theory, Optimization, Image Processing, Immunohistology, Pattern Recognition, Bayesian Model Machine Learning, Deep Learning, Data Mining, Information Theory, Neuropsychology, Single-Unit Electrophysiology, Fiber Photometry, Optogenetics, Pupilometry, Electrocardiography, Electroencephalography, Electromyography, Inertial Measurement Unit,
- Areas of interest
- Systems Neuroscience, Neuromodulation, Cognitive Sciences, Neuropsychology, Proprioception, Perceptual Decision-Making, Executive Functions, Neural Circuits, Norepinephrine, Acetylcholine, Prefrontal Cortex, Locus Coeruleus, Brainstem, Thalamus, Somatosensation, Neuroprosthesis, Wearables, Telemetry Devices, Neurostimulation, Parkinson's Disease, Alzheimer's Disease, Attention, Arousal, Healthcare
- Member since
- September 2025
Biography
Neuroscientist trained in electrical and computer engineering, with 7 years of experience in experiment-based and data-driven research, interested in the intersection of systems neuroscience (neural circuits & behavior), biological systems, neurotechnologies (wearables & neuromodulation), and artificial intelligence (algorithms development & optimization).
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Sign inPublications
- Forearm Motion Recognition With Noncontact Capacitive Sensing
- Optogenetic Locus Coeruleus Stimulation Improves Pupil Size Tracking of Cortical State
- Perceptual Behavior Depends Differently on Pupil-Linked Arousal and Heartbeat Dynamics-Linked Arousal in Rats Performing Tactile Discrimination Tasks
- Phase synchrony between prefrontal noradrenergic and cholinergic signals indexes inhibitory control
- SAR target recognition via incremental nonnegative matrix factorization with Lp sparse constraint
- The neuromodulatory role of the noradrenergic and cholinergic systems and their interplay in cognitive functions: A focused review