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Kaiyan Li
ORCID
Publication Activity (10 Years)
Years Active: 2019-2023
Publications (10 Years): 8
Top Topics
Signal Detection
Image Denoising
Denoising
Undecimated Wavelet Transform
Top Venues
Medical Imaging: Image Perception, Observer Performance, and Technology Assessment
IEEE Trans. Medical Imaging
IEEE Trans. Geosci. Remote. Sens.
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Publications
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Kaiyan Li
,
Weimin Zhou
,
Hua Li
,
Mark A. Anastasio
Estimating task-based performance bounds for image reconstruction methods by use of learned-ideal observers.
Medical Imaging: Image Perception, Observer Performance, and Technology Assessment
(2023)
Sourya Sengupta
,
Craig K. Abbey
,
Kaiyan Li
,
Mark A. Anastasio
Investigation of adversarial robust training for establishing interpretable CNN-based numerical observers.
Medical Imaging: Image Perception, Observer Performance, and Technology Assessment
(2022)
Kaiyan Li
,
Weimin Zhou
,
Hua Li
,
Mark A. Anastasio
A Hybrid Approach for Approximating the Ideal Observer for Joint Signal Detection and Estimation Tasks by Use of Supervised Learning and Markov-Chain Monte Carlo Methods.
IEEE Trans. Medical Imaging
41 (5) (2022)
Kaiyan Li
,
Hua Li
,
Mark A. Anastasio
A task-informed model training method for deep neural network-based image denoising.
Medical Imaging: Image Perception, Observer Performance, and Technology Assessment
(2022)
Kaiyan Li
,
Weimin Zhou
,
Hua Li
,
Mark A. Anastasio
Supervised learning-based ideal observer approximation for joint detection and estimation tasks.
Medical Imaging: Image Perception, Observer Performance, and Technology Assessment
(2021)
Kaiyan Li
,
Weimin Zhou
,
Hua Li
,
Mark A. Anastasio
Task-based performance evaluation of deep neural network-based image denoising.
Medical Imaging: Image Perception, Observer Performance, and Technology Assessment
(2021)
Kaiyan Li
,
Weimin Zhou
,
Hua Li
,
Mark A. Anastasio
Assessing the Impact of Deep Neural Network-Based Image Denoising on Binary Signal Detection Tasks.
IEEE Trans. Medical Imaging
40 (9) (2021)
Kaiyan Li
,
Weiying Xie
,
Qian Du
,
Yunsong Li
DDLPS: Detail-Based Deep Laplacian Pansharpening for Hyperspectral Imagery.
IEEE Trans. Geosci. Remote. Sens.
57 (10) (2019)