Effect of an advanced model-based iterative reconstruction algorithm on texture and visual impression of images privieded by a dual source CT scanner
Babak Alikhani PhD, Thomas Werncke MD, Hans-J\"urgen Raatschen MD,, Frank Wacker MD, Hoen-oh Shin MD

TL;DR
This study evaluates how the advanced ADMIRE model-based iterative reconstruction algorithm affects image texture and visual quality in dual source CT scans, demonstrating potential for significant dose reduction while maintaining image quality.
Contribution
It introduces a comprehensive assessment combining texture analysis and visual similarity metrics to evaluate dose reduction capabilities of ADMIRE in CT imaging.
Findings
ADMIRE levels reduce texture contrast and entropy.
Comparable image quality achieved with up to 50% dose reduction.
Spatial resolution maintained up to 90% dose reduction.
Abstract
Purpose: To evaluate the influence of ADMIRE algorithm on image texture and image visual impression as a supplement to measurements of common image quality parameters such as noise levels and spatial resolution. Methods: An ACR phantom was examined at different radiation dose levels. To characterize the image texture, two Haralick texture parameters, contrast and entropy, for different dose level and reconstruction algorithms were assessed. The visual impression of images and their structural differences were evaluated using the structural similarity index (SSIM). Noise was determined for all dose and AMIRE levels and compared to those by filtered back projection (FBP). The spatial resolution was determined by the modulation transfer functions and the line spread function. Results: The Haralick texture parameters decreased with increasing ADMIRE levels I up to V. ADMIRE III, IV and V…
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Taxonomy
TopicsRadiation Dose and Imaging · Advanced X-ray and CT Imaging · Medical Imaging Techniques and Applications
