Since 1971 and Hounsfield's first CT system, clinical CT systems have used scintillating energy-integrating detectors (EIDs) that use a two-step detection process. First, the X-ray …
Advanced cross-sectional and functional imaging techniques enable non-invasive visualization of tumor extent and functional metabolic activity and play a central role in the …
The advancements in nanotechnology have created multifunctional nanomaterials aimed at enhancing diagnostic accuracy and treatment efficacy for cancer. However, the ability to …
Dual-energy computed tomography (DECT) uses different energy spectrum x-ray beams for differentiating materials with similar attenuation at a certain energy. Compared with single …
T D'Angelo, G Cicero, S Mazziotti… - The British journal of …, 2019 - academic.oup.com
Dual energy CT (DECT) has evolved into a commonly applied imaging technique in clinical routine due to its unique post-processing opportunities for improved evaluation of all body …
Objectives This study was conducted in order to evaluate a novel risk stratification model using dual-energy CT (DECT) texture analysis of head and neck squamous cell carcinoma …
B Görgec, IS Hansen, G Kemmerich… - The Lancet …, 2024 - thelancet.com
Background Guidelines are inconclusive on whether contrast-enhanced MRI using gadoxetic acid and diffusion-weighted imaging should be added routinely to CT in the …
W Shao, T He, JX Wang, Y Zhou, P Yuan… - ACS Energy …, 2023 - ACS Publications
Dual-energy X-ray imaging (DEXI) is a cutting-edge technology that provides more detailed material-specific information than the traditional single-energy X-ray imaging strategy …
F Tatsugami, T Higaki, Y Nakamura, Y Honda… - Japanese Journal of …, 2022 - Springer
Dual-energy CT, the object is scanned at two different energies, makes it possible to identify the characteristics of materials that cannot be evaluated on conventional single-energy CT …