Prof. Andrew D. A. Maidment
Associate Professor at University of Pennsylvania
SPIE Involvement:
Author | Instructor
Publications (152)

Proceedings Article | 3 April 2024 Presentation + Paper
Proceedings Volume 12927, 129271O (2024) https://doi.org/10.1117/12.3007467
KEYWORDS: Digital breast tomosynthesis, Image quality, Breast, Artificial intelligence, Deep learning, Algorithm development, Imaging systems

Proceedings Article | 1 April 2024 Poster + Paper
Proceedings Volume 12925, 1292548 (2024) https://doi.org/10.1117/12.3006839
KEYWORDS: Breast, Simulations, Quantum noise, Anatomy, Tissues, Breast density, Digital breast tomosynthesis, Adipose tissue, X-rays, Breast cancer

Proceedings Article | 7 April 2023 Poster + Paper
Chloe Choi, Raymond Acciavatti, Andrew D. Maidment
Proceedings Volume 12463, 124632B (2023) https://doi.org/10.1117/12.2653139
KEYWORDS: Image restoration, Tomosynthesis, Digital breast tomosynthesis, Stars, Image quality, Chest, Fourier transforms, Breast, Tunable filters, Fourier theory

Proceedings Article | 7 April 2023 Poster + Paper
Proceedings Volume 12463, 124632N (2023) https://doi.org/10.1117/12.2653857
KEYWORDS: Digital breast tomosynthesis, Medical imaging, Computer simulations, Modulation transfer functions, Breast cancer, Voxels, Image processing, Cancer detection, Breast

Proceedings Article | 3 April 2023 Poster + Paper
Lucas Soares, Renann Brandao, Lucas Borges, Renato Caron, Bruno Barufaldi, Andrew D. Maidment, Marcelo A. Vieira
Proceedings Volume 12467, 1246714 (2023) https://doi.org/10.1117/12.2654111
KEYWORDS: Image quality, Digital mammography, Quantum noise, Clinical trials, Image processing, Medical imaging

Showing 5 of 152 publications
Course Instructor
SC1239: Virtual Clinical Trials: An In-depth Tutorial
Clinical trials are the essential mechanism through which new medical imaging devices and methods are tested. However, with the growing number of such medical solution, clinical trials are proven to be too slow and too costly. Computational resources and modeling technologies have brought us to a place that we can consider computational alternatives to clinical trials: virtual trials where the trial take place in silico. This course provides an essential introduction to virtual clinical trials, focused primarily on imaging. Topics covered include models of human anatomy and physiology, models of imaging processes primarily CT and breast imaging, models of interpretation processes, standardization of the VCT pipeline, and regulatory prospects of VCT. The course will include applications of VCT in designing and affirming new medical imaging equipment and methods, the use VCT data for prototyping and/or complementing the conduct of real clinical trials, and near-hands-on experience in conducting a few example mini-trials as a part of the class.
SC1185: Radiation Dosimetry in Diagnostic Radiology: A Primer
This course provides a foundation of knowledge in radiation dosimetry for scientists and engineers who need to work with dosimetric quantities. Topics to be covered include: a review of the medical uses of ionizing radiation; the basics of radiation biology, including the bioeffects of radiation and radiation injury mechanisms; the concepts of kerma and dose; measurement methods for kerma and dose; the uncertainty of these measurements; application specific dosimetric quantities (such as those for mammography or CT); and methods for reporting dose including DICOM dose structured reports. The course will serve to separate fact from fiction. At the conclusion of the course, attendees should understand the various dosimetric quantities reported with modern medical images.
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