APID Academic Profile Identity
yl3996

Dr. yl3996

Research Scientist · Biomedical Engineering
Author
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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Publications

  1. Forearm Motion Recognition With Noncontact Capacitive Sensing
  2. Optogenetic Locus Coeruleus Stimulation Improves Pupil Size Tracking of Cortical State
  3. Perceptual Behavior Depends Differently on Pupil-Linked Arousal and Heartbeat Dynamics-Linked Arousal in Rats Performing Tactile Discrimination Tasks
  4. Phase synchrony between prefrontal noradrenergic and cholinergic signals indexes inhibitory control
  5. SAR target recognition via incremental nonnegative matrix factorization with Lp sparse constraint
  6. The neuromodulatory role of the noradrenergic and cholinergic systems and their interplay in cognitive functions: A focused review