Area of research
Radiology, Nuclear Medicine and Imaging · Biomedical Engineering
Research interest
Research interests include Optical Imaging and Spectroscopy Techniques, Photoacoustic and Ultrasonic Imaging, Non-Invasive Vital Sign Monitoring, and Optical Coherence Tomography Applications.
The neurovascular impulse response function differentially reflects intrinsic neuromodulation across cortical regions.
Capillary transit time heterogeneity comes into focus.
Cortical activity for conversational responses in young neurotypical individuals, older neurotypical individuals, and individuals with aphasia: A functional near-infrared spectroscopy study.
Optical methods for cuffless blood pressure measurements.
Surface-based image reconstruction optimization for high-density functional near-infrared spectroscopy.
Comparative validation of speckle contrast optical spectroscopy against diffuse correlation spectroscopy for monitoring human cerebral blood flow.
Mapping Slow Speckle Dynamics to Probe Cellular Metabolic Activity In Vivo using Laser Speckle Contrast Imaging
Physics-Informed Neural Network for Mapping Vascular and Tissue Dynamics Using Laser Speckle Contrast Imaging
NIRS-BIDS: Brain Imaging Data Structure Extended to Near-Infrared Spectroscopy.
NIRS-BIDS: Brain Imaging Data Structure Extended to Near-Infrared Spectroscopy
Quantifying the impact of hair and skin characteristics on fNIRS signal quality for enhanced inclusivity
Mapping of blood flow and slow speckle tissue dynamics using laser speckle contrast imaging
Validation of the Linearity in Image Reconstruction Methods for Speckle Contrast Optical Tomography.
High-density multidistance fNIRS enhances detection of brain activity during a word-color Stroop task.
Quantitative analysis of lipofuscin in neurodegenerative diseases using serial sectioning two-photon microscopy and fluorescence lifetime imaging microscopy.
High-Density Multi-Distance fNIRS Enhances Detection of Brain Activity during a Word-Color Stroop Task
Mapping human cerebral blood flow with high-density, multi-channel speckle contrast optical spectroscopy.
Co-localized optode-electrode design for multimodal functional near infrared spectroscopy and electroencephalography.
Brief disruptions in capillary flow result in rapid onset of hypoxia.
Machine learning-based method to detect capillary stalling using optical coherence tomography
Mesoscopic vascular alterations in Alzheimer's disease
Comparing the performance potential of speckle contrast optical spectroscopy and diffuse correlation spectroscopy for cerebral blood flow monitoring using Monte Carlo simulations in realistic head geometries
Grand Challenges at the Interface of Engineering and Medicine
Comparing the performance potential of speckle contrast optical spectroscopy and diffuse correlation spectroscopy for cerebral blood flow monitoring using Monte Carlo simulations in realistic head geometries.
Targeted micro-fiber arrays for measuring and manipulating localized multi-scale neural dynamics over large, deep brain volumes during behavior
Choosing a camera and optimizing system parameters for speckle contrast optical spectroscopy
ninjaCap: a fully customizable and 3D printable headgear for functional near-infrared spectroscopy and electroencephalography brain imaging.
ninjaCap: a fully customizable and 3D printable headgear for functional near-infrared spectroscopy and electroencephalography brain imaging
Widefield <i>in vivo</i> imaging system with two fluorescence and two reflectance channels, a single sCMOS detector, and shielded illumination.
ninjaNIRS: an open hardware solution for wearable whole-head high-density functional near-infrared spectroscopy