Tong Ye

Tong Ye

Clemson University

H-index: 32

North America-United States

About Tong Ye

Tong Ye, With an exceptional h-index of 32 and a recent h-index of 20 (since 2020), a distinguished researcher at Clemson University, specializes in the field of Ultrafast spectroscopy, light microscopy, tissue functions.

His recent articles reflect a diverse array of research interests and contributions to the field:

Modeling the mechanical focal plane of atomic force microscopy

Enhancing digital hologram reconstruction using reverse-attention loss for untrained physics-driven deep learning models with uncertain distance

Noninvasive imaging of blood flow in neoplastic skin lesions using laser speckle contrast

Mask R-CNN provides efficient and accurate measurement of chondrocyte viability in the label-free assessment of articular cartilage

Quantification of cardiac capillarization in single-immunostained myocardial slices using weakly supervised instance segmentation

Management of autofluorescence in formaldehyde-fixed myocardium: choosing the right treatment

Applications of Laser Speckle Contrast Imaging Technology in Dermatology

Assessment of the microstructural differences of the articular cartilage surface in a porcine tibiofemoral joint using nonlinear optical microscopy

Tong Ye Information

University

Position

Associate Professor of Bioengineering

Citations(all)

3355

Citations(since 2020)

1405

Cited By

2444

hIndex(all)

32

hIndex(since 2020)

20

i10Index(all)

60

i10Index(since 2020)

34

Email

University Profile Page

Google Scholar

Tong Ye Skills & Research Interests

Ultrafast spectroscopy

light microscopy

tissue functions

Top articles of Tong Ye

Modeling the mechanical focal plane of atomic force microscopy

2024/3/13

Delphine Dean
Delphine Dean

H-Index: 14

Tong Ye
Tong Ye

H-Index: 19

Enhancing digital hologram reconstruction using reverse-attention loss for untrained physics-driven deep learning models with uncertain distance

2024/3/13

Noninvasive imaging of blood flow in neoplastic skin lesions using laser speckle contrast

2024/3/12

Mask R-CNN provides efficient and accurate measurement of chondrocyte viability in the label-free assessment of articular cartilage

Osteoarthritis and Cartilage Open

2023/11/7

Quantification of cardiac capillarization in single-immunostained myocardial slices using weakly supervised instance segmentation

arXiv preprint arXiv:2311.18173

2023/11/30

Management of autofluorescence in formaldehyde-fixed myocardium: choosing the right treatment

European Journal of Histochemistry: EJH

2023/10/10

Applications of Laser Speckle Contrast Imaging Technology in Dermatology

2023/9/1

Assessment of the microstructural differences of the articular cartilage surface in a porcine tibiofemoral joint using nonlinear optical microscopy

2023/4/25

Co-registration of multiphoton fluorescence with nanoscopic resolution atomic force microscopy

2023/3/15

Multimodal microscopy imaging of cardiac collagen network: Are we looking at the same structures?

2023/3/14

Evaluating vessel mechanics with optical coherence tomography based digital image correlation

2023/3/8

Tong Ye
Tong Ye

H-Index: 19

Qi Wang
Qi Wang

H-Index: 13

Measuring chondrocyte viability of articular cartilage based on label-free two-photon microscopy and deep learning image analysis

bioRxiv

2023/2/14

Human adipose-and amnion-derived mesenchymal stromal cells similarly mitigate osteoarthritis progression in the Dunkin Hartley guinea pig

The American Journal of Sports Medicine

2022/12

Tong Ye
Tong Ye

H-Index: 19

High speed two-photon laser scanning stereomicroscopy for three-dimension tracking multiple particles simultaneously in three-dimension

Frontiers in Photonics

2022/9/6

Automated chondrocyte viability analysis of articular cartilage based on deep learning segmentation and classification of two-photon microscopic images

2022/3/2

Integrating SHG and two-color STED microscopy for super-resolved imaging of cell-matrix interactions in myocardium

Proc. of SPIE Vol

2022

A noninvasive fluorescence imaging-based platform measures 3D anisotropic extracellular diffusion

Nature Communications

2021/3/26

Effects of timolol in skin tissue repair: a longitudinal and multimodal in vivo imaging study with two-photon excitation fluorescence and second harmonic generation microscopy

2021/3/5

Deep learning provides high accuracy in automated chondrocyte viability assessment in articular cartilage using nonlinear optical microscopy

Biomedical optics express

2021/5/1

Multiple Beam Laser Guidance for Patterning Irregularly Shaped Cells

Frontiers in Physics

2020/10/29

Tong Ye
Tong Ye

H-Index: 19

See List of Professors in Tong Ye University(Clemson University)

Co-Authors

academic-engine