Real-time 3D shape, deformation and vibration measurements

Projects utilize precise techniques like structured light and stereo vision in experimental mechanics and optical metrology, including Fringe Projection Profilometry (FPP) and Digital Image Correlation (DIC).

Accurate 3D shape measurement of multiple separate objects with stereo vision

*Meas. Sci. Techn. 2014

Audio extraction from silent high-speed video using an optical technique

*Optical Engineering 2014

Real-time, high-accuracy 3D imaging and shape measurement

*Applied Optics 2015

3D shape, deformation, and vibration measurements using infrared Kinect sensors and digital image correlation

*Applied Optics 2017

Three-dimensional facial digitization using advanced digital image correlation

*Applied Optics 2018

Real-time 3D shape measurement using 3LCD projection and deep machine learning

*Applied Optics 2019

Structured-light and Deep Learning Integration

The projects combine traditional Fringe Projection Profilometry (FPP) with deep learning to enhance 3D shape reconstruction while reducing the need for multiple inputs. This integration yields high-quality 3D results using techniques like fringe-to-depth, fringe-to-fringe, and fringe-to-phase approaches.

Single-Shot 3D Shape Reconstruction Using Structured Light and Deep Convolutional Neural Networks

*Sensors 2020

MIMONet: Structured-light 3D shape reconstruction by a multi-input multi-output network

*Applied Optics 2021

hNet: Single-shot 3D shape reconstruction using structured light and h-shaped global guidance network

*Results in Optics 2021

Accurate 3D Shape Reconstruction from Single Structured-Light Image via Fringe-to-Fringe Network

*Photonics 2021

Accurate 3D reconstruction via fringe-to-phase network

*Measurement 2022

Learning-based 3D imaging from single structured-light image

*Graphical Models 2023

Generalized fringe-to-phase framework for single-shot 3D reconstruction integrating structured light with deep learning

*Sensors 2023

Preclinical Transcranial Magnetic Stimulation (TMS) system

Development of a comprehensive TMS sytem for rodents, incorporating a high-frequency biphasic stimulator and rodent coil with high focality.

A High-Density Theta Burst Paradigm Enhances the Aftereffects of Transcranial Magnetic Stimulation: Evidence from Focal Stimulation of Rat Motor Cortex

*Brain Stimulation 2022

Modeling Transcranial Magnetic Stimulation Coils with Magnetic Cores

*Journal of Neural Engineering 2023

High inductance magnetic-core coils have enhanced efficiency in inducing suprathreshold motor response in rats

*Physics in Medicine and Biology 2023