Publications

Protocol selection formalism for minimizing detectable differences in morphological radiomics features of lung lesions in repeated CT acquisitions

Zarei M, Abadi E, Vancoillie L, Samei E.
Protocol selection formalism for minimizing detectable differences in morphological radiomics features of lung lesions in repeated CT acquisitions.
Journal of Medical Imaging. 2024;11(2)025501. Epub 2024/04/26.[Foundation]
https://doi.org/10.1117/1.JMI.11.2.025501

Protocol selection formalism for minimizing detectable differences in morphological radiomics features of lung lesions in repeated CT acquisitions Read More »

Technology Characterization Through Diverse Evaluation Methodologies: Application to Thoracic Imaging in Photon-Counting Computed Tomography

Rajagopal JR, Schwartz FR, McCabe C, Farhadi F, Zarei M, Ria F, Abadi E, Segars WP, Ramirez-Giraldo JC, et al.
Technology Characterization Through Diverse Evaluation Methodologies: Application to Thoracic Imaging in Photon-Counting Computed Tomography.
J Comput Assist Tomogr. 2024;49(1):113-124 Epub 2024/04/15. [Foundation]
https://doi.org/10.1097/RCT.0000000000001608

Technology Characterization Through Diverse Evaluation Methodologies: Application to Thoracic Imaging in Photon-Counting Computed Tomography Read More »

Development of physiologically-informed computational coronary artery plaques for use in virtual imaging trials

Sauer TJ, Buckler AJ, Abadi E, Daubert M, Douglas PS, Samei E, Segars WP.
Development of physiologically-informed computational coronary artery plaques for use in virtual imaging trials.
Medical Physics. 2024;51(3). Epub 2024/03/21. [Foundation]
https://doi.org/10.1002/mp.16959

Development of physiologically-informed computational coronary artery plaques for use in virtual imaging trials Read More »

Characterizing imaging radiation risk in a population of 8918 patients with recurrent imaging for a better effective dose

Ria F, Rehani MM, Samei E.
Characterizing imaging radiation risk in a population of 8918 patients with recurrent imaging for a better effective dose.
Scientific Reports. 2024;14,6240. Epub 2024/03/14. [Foundation]
https://doi.org/10.1038/s41598-024-56516-1

Characterizing imaging radiation risk in a population of 8918 patients with recurrent imaging for a better effective dose Read More »

Coronary stenosis quantification in cardiac computed tomography angiography: multi-factorial optimization of image quality and radiation dose

Zarei M, Abadi E, Segars WP, Samei E.
Coronary stenosis quantification in cardiac computed tomography angiography: multi-factorial optimization of image quality and radiation dose.
J Med Imaging (Bellingham). 2023;10(6):063502. Epub 2023/12/27. [Foundation]
https://doi.org/10.1117/1.JMI.10.6.063502

Coronary stenosis quantification in cardiac computed tomography angiography: multi-factorial optimization of image quality and radiation dose Read More »

Impact of the confluence of cardiac motion and high spatial resolution on performance of ECG-gated imaging with an investigational photon-counting CT system: A phantom study

Rajagopal J, Farhadi F, NikpanahM, Sahbaee P, Saboury B, Pritchard WF, Jones EC, Chen MY, Samei E.
Impact of the confluence of cardiac motion and high spatial resolution on performance of ECG-gated imaging with an investigational photon-counting CT system: A phantom study.
Physica Medica. 2023; 114. Epub 2023/09/20.[Foundation]
https://doi.org/10.1016/j.ejmp.2023.102683

Impact of the confluence of cardiac motion and high spatial resolution on performance of ECG-gated imaging with an investigational photon-counting CT system: A phantom study Read More »

Development and CT image-domain validation of a computational lung lesion model for use in virtual imaging trials.

Sauer TJ, Bejan A, Segars P, Samei E.
Development and CT image-domain validation of a computational lung lesion model for use in virtual imaging trials.
Medical Physics. 2023;50:4366–4378. Epub 2023/07/23. [Foundation]
https://doi.org/10.1002/mp.16222

Development and CT image-domain validation of a computational lung lesion model for use in virtual imaging trials. Read More »