X-ray projection imaging of metal oxide particles inside gingival tissues
Jarrod N. Cortez (1), Ignacio O. Romero (1), Md Sayed Tanveer (3),, Chuang Niu (3), C\'assio Luiz Coutinho Almeida-da-Silva (2), Leticia Ferreira, Cabido (2), David M. Ojcius (2), Wei-Chun Chin (1), Ge Wang (3), Changqing Li, (1) ((1) University of California, Merced

TL;DR
This study demonstrates the feasibility of using multi-energy X-ray projection imaging, supported by simulations, to detect and differentiate metal oxide particles within gingival tissues, aiding in diagnosing inflammation causes.
Contribution
The paper introduces a simulation-based approach for detecting and distinguishing metal oxide particles in gingival tissues using multi-energy X-ray imaging, advancing non-invasive oral health diagnostics.
Findings
Detection of particles as small as 0.5 micrometers is feasible.
Different metal particles can be differentiated based on CNR at various X-ray energies.
Simulation results guide future imaging system development.
Abstract
There is increasing recognition that oral health affects overall health and systemic diseases. Nonetheless it remains challenging to rapidly screen patient biopsies for signs of inflammation or the pathogens or foreign materials that elicit the immune response. This is especially true in conditions such as foreign body gingivitis (FBG), where the foreign particles are often difficult to detect. Our long term goal is to establish a method to determine if the inflammation of the gingival tissue is due to the presence of a metal oxide, with emphasis on elements that were previously reported in FBG biopsies, such as silicon dioxide, silica, and titanium dioxide whose persistent presence can be carcinogenic. In this paper, we proposed to use multiple energy X-ray projection imaging to detect and to differentiate different metal oxide particles embedded inside gingival tissues. To simulate…
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Taxonomy
TopicsAdvanced X-ray and CT Imaging · Dental Radiography and Imaging · Medical Imaging Techniques and Applications
