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Framework for evaluating photon-counting detectors under pile-up conditions.
David Leibold1, Stefan J van der Sar1, Marlies C Goorden1
1Delft University of Technology, Department of Radiation Science and Technology, Delft, The Netherlands.
Journal of Medical Imaging (Bellingham, Wash.)
|May 27, 2024
Summary
X-ray photon-counting detectors (PCDs) exhibit non-linear behavior under clinical conditions due to pile-up. This study introduces a new framework to evaluate PCDs, considering their non-linear response for accurate medical imaging analysis.
Area of Science:
- Medical Imaging Physics
- Detector Science
Background:
- X-ray photon-counting detectors (PCDs) offer advanced capabilities for medical imaging.
- Existing theoretical frameworks often assume linear detector response, which is invalid under typical clinical operating conditions with significant pile-up.
Purpose of the Study:
- To develop a framework for evaluating PCDs that accounts for their non-linear behavior caused by pile-up.
- To enable accurate assessment of PCD performance under clinically relevant conditions.
Main Methods:
- Utilized small-signal analysis to study PCD behavior under pile-up.
- Introduced the perturbation point spread function (pPSF) to describe detector response.
- Employed Monte-Carlo simulations for idealized direct- and indirect-conversion PCDs.
Main Results:
- Calculated pPSFs for two PCDs, demonstrating their utility in assessing signal sensitivity to lesions.
- Illustrated detrimental pile-up effects, including contrast inversion and bin cancellation.
- Quantified spectral and spatial performance under realistic operating conditions.
Conclusions:
- The proposed framework accurately quantifies PCD performance under clinical conditions, highlighting non-linear effects.
- PCDs should not be analyzed as linear systems; this framework adapts existing measures like the modulation transfer function.
- The framework aids in developing better PCDs and imaging systems.

