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Georgios Angelis

Publications and source records attributed to Georgios Angelis.

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The Matching Function: A Unified Look into the Black Box

In this paper, we use tools from network theory to trace the properties of the matching function to the structure of granular connections between applicants and vacancies. We unify seemingly disparate parts of the literature by recovering multiple functional forms as special cases including the CES. We derive a testable condition under which matching in any network from the broad class we analyze can be thought "as if" it comes from a CES matching function, up to a first-order approximation. We provide a theory of match efficacy in which inequality in search intensities is the key determinant of how well the matching process works. A robust finding of our analysis is that dispersion of search intensities on either side of the market is bad for the matching process. We also show that a rise in the market's mean search intensity can reduce match efficacy when it is associated with a higher Gini coefficient of search intensities.

econ.TH

Virtual Cylindrical PET for Efficient DOI Image Reconstruction with Sub-millimetre Resolution

Objective: Image reconstruction in high resolution PET scanners with depth of interaction (DOI) capability is computationally challenging due to the high sampling in detector and image space. This study evaluates the use of a virtual cylinder to reduce the number of lines of response (LOR) for DOI-based reconstruction while maintaining uniform sub-millimetre spatial resolution. Approach: Virtual geometry was investigated using the awake animal mousePET as a test case. Using GATE, we simulated the physical scanner and three virtual cylinder implementations with detector size 0.7405 mm, 0.4712 mm and 0.3575 mm. The virtual cylinder condenses physical LORs stemming from various crystal pairs and DOI combinations, and which intersect a single virtual detector pair, into a single virtual LOR. Quantitative comparisons of the point spread function (PSF) at various positions within the field of view (FOV) were compared for reconstructions based on the vPET implementations and the physical scanner. We also assessed the impact of the anisotropic PSFs by reconstructing images of a micro Derenzo phantom. Main results: All virtual cylinder implementations achieved LOR data compression >50%. PSF anisotropy in radial/tangential profiles was chiefly influenced by DOI resolution. Spatial degradation introduced by virtual cylinders was most prominent axially. All virtual cylinders achieved sub-millimetre volumetric resolution across the FOV using 6-bin DOI reconstructions (3.3 mm DOI resolution). Using 0.4712 mm detectors with 6 DOI bins (LOR compression 86%) yielded nearly identical reconstructions to the non-virtual case. Significance: Our results show that DOI PET reconstruction with 50-86% LOR compression and sub-millimetre spatial resolution is possible using virtual cylinders. The methodology and analysis can be extended to high resolution scanners with DOI capability.

physics.med-ph