Research map: Power law spectral photon-counting CT for quantitative effective atomic number and electron density imaging
Back to the article
Papers in this map
Energy-selective reconstructions in X-ray computerised tomography
· R. E. Alvarez · 1976 · 2015 citations · Cited by this paper
UNetrDose: a fast and accurate transformer-based dose prediction model for radiotherapy
· 2026 · Related
Photon-counting CT: Technical Principles and Clinical Prospects
· Martin J. Willemink · 2018 · 1330 citations · Cited by this paper
Analytical convolution/superposition modelling of one-dimensional dose profiles with asymmetric energy deposition kernels in homogeneous media
· 2026 · Related
The calibration of CT Hounsfield units for radiotherapy treatment planning
· Uwe Schneider · 1996 · 1097 citations · Cited by this paper
Quantitative relationship between microdosimetric quantities and plasmid DNA damage induced by auger electrons
· 2026 · Related
X-ray attenuation coefficients of elements and mixtures
· Daphne F. Jackson · 1981 · 672 citations · Cited by this paper
Spatial signal distribution learning for high-resolution 3D system matrix calibration in magnetic particle imaging
· 2026 · Related
Dual-Energy CT: General Principles
· Thorsten R. C. Johnson · 2012 · 633 citations · Cited by this paper
Unsupervised waveform reshaping for enhanced time-of-flight precision in PET detectors
· 2026 · Related
Report of the Task Group 186 on model‐based dose calculation methods in brachytherapy beyond the TG‐43 formalism: Current status and recommendations for clinical implementation
· Luc Beaulieu · 2012 · 544 citations · Cited by this paper
Improved synthetic CT image quality does not guarantee dosimetric agreement in CBCT-based adaptive proton radiotherapy
· 2026 · Related
Measurement of effective atomic number and electron density using an EMI scanner
· R. A. Rutherford · 1976 · 299 citations · Cited by this paper
Pulse-resolved tumor control probability modeling for FLASH radiotherapy using a variable-time treatment-course framework
· 2026 · Related
Magnetic Resonance Imaging Versus Computed Tomography for Three‐Dimensional Bone Imaging of Musculoskeletal Pathologies: A Review
· Mateusz C. Florkow · 2022 · 231 citations · Cited by this paper
A proof-of-concept study of sub-resolution hepatic vasculature modeling to assess dose heterogeneity in transarterial radioembolization
· 2026 · Related
Technical approaches to the optimisation of CT
· Willi A. Kalender · 2008 · 200 citations · Cited by this paper
Custom TMS coils designs for single and multi-locus stimulation of the cerebellum
· 2026 · Related
A stoichiometric calibration method for dual energy computed tomography
· Alexandra E Bourque · 2014 · 159 citations · Cited by this paper
Systematic evaluation of magnetic particle imaging quantification strategies in biologically relevant scenarios using anatomically correct 3D printed mouse phantoms
· 2026 · Related
The technical development of photon-counting detector CT
· Cynthia H. McCollough · 2023 · 116 citations · Cited by this paper
Relationship between electron density and effective densities of body tissues for stopping, scattering, and nuclear interactions of proton and ion beams
· Nobuyuki Kanematsu · 2012 · 51 citations · Cited by this paper
MARS-MD: rejection based image domain material decomposition
· Christopher Bateman · 2018 · 42 citations · Cited by this paper
Quantitative performance of photon‐counting CT at low dose: Virtual monochromatic imaging and iodine quantification
· Stevan Vrbaški · 2023 · 42 citations · Cited by this paper
Pixel sensitivity variations in a CdTe-Medipix2 detector using poly-energetic x-rays
· R Aamir · 2011 · 39 citations · Cited by this paper
Measuring Identification and Quantification Errors in Spectral CT Material Decomposition
· Aamir Younis Raja · 2018 · 23 citations · Cited by this paper
Medipix3RX: Characterizing the Medipix3 Redesign With Synchrotron Radiation
· E.N. Giménez · 2015 · 22 citations · Cited by this paper
Assessment of Material Identification Errors, Image Quality, and Radiation Doses Using Small Animal Spectral Photon-Counting CT
· Emmanuel Marfo · 2020 · 16 citations · Cited by this paper
Characterization of breast tissues in density and effective atomic number basis via spectral X-ray computed tomography
· Stevan Vrbaški · 2023 · 15 citations · Cited by this paper
Significance of the spectral correction of photon counting detector response in material classification from spectral x-ray CT
· Doniyor Jumanazarov · 2022 · 11 citations · Cited by this paper
Assessment of material identification and quantification in the presence of metals using spectral photon counting CT
· Briya Tariq · 2024 · 8 citations · Cited by this paper
Fast filtered backprojection algorithm for low-dose computed tomography
· Zeng GL · 2020 · 7 citations · Cited by this paper
Improving the Accuracy of the Effective Atomic Number (EAN) and Relative Electron Density (RED) with Stoichiometric Calibration on PCD-CT Images
· Kihong Son · 2022 · 7 citations · Cited by this paper
Determination of appropriate energy threshold range for accurate estimation of effective atomic number considering statistical uncertainty in photon‐counting techniques
· Tomonobu Haba · 2025 · 7 citations · Cited by this paper
Clinical photon-counting CT increases CT number precision and reduces patient size dependence compared to single- and dual-energy CT
· Jessica D Flores · 2025 · 7 citations · Cited by this paper
SU‐FF‐I‐160: SpekCalc: A Free and User‐Friendly Software Program for Calculating X‐Ray Tube Spectra
· Gavin G. Poludniowski · 2009 · 6 citations · Cited by this paper
Electron Density and Effective Atomic Number Measurement by Using a Newly Developing Photon Counting CT System
· Hiroshi Sakurai · 2020 · 4 citations · Cited by this paper
Source: OpenAlex (CC0)