Metal artefact reduction in digital tomosynthesis using component decomposition

Author:

Soloviev Vadim YORCID,Wells Stephen G,Renforth Kate L,Dirckx Conrad J

Abstract

Abstract We propose a technique for metal artefact reduction in digital tomosynthesis reconstruction. Although the problem was addressed earlier in the literature, we suggest another approach, which is, in our opinion, simpler, and easier to implement. It is a two-stage algorithm. At the first stage, attenuation images are segmented by decomposing their intensity distributions into gaussian-like components. Statistical information contained in each component is used for pixel classification. Components corresponding to metallic objects are identified, and a pixel threshold value separating regions occupied by metal objects from the rest of the image is found. Based on this value, at the second stage, a smooth mapping of image intensity is applied. This makes dense regions transparent, resulting in the artefact reduction in reconstruction. The methodology is demonstrated by several examples.

Publisher

IOP Publishing

Subject

General Nursing

Reference23 articles.

1. Meshless reconstruction technique for digital tomosynthesis;Soloviev;Phys. Med. Biol.,2020

2. Modelling the use of stationary, rectangular arrays of x-ray emitters for digital breast tomosynthesis;Wells;Proc. SPIE, Medical Imaging 2020: Physics of Medical Imaging,2020

3. Three-dimensional digital tomosynthesis;Levakhina,2013

4. Out-of-plane artifact reduction in tomosynthesis based on regression modeling and outlier detection;Abdurahman,2012

5. Metal artefact reduction in tomosynthesis by metal extraction and ordered subset-expectation maximization (OS-EM) reconstruction;Sakimoto;Proc. of SPIE, Medical Imaging 2015: Physics of Medical Imaging,2013

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