OPTIMAL SELECTION OF BASE MATERIALS FOR ACCURATE DUAL-ENERGY COMPUTED TOMOGRAPHY: COMPARISON BETWEEN THE ALVAREZ–MACOVSKI METHOD AND DIRA

Author:

Magnusson Maria123,Alm Carlsson Gudrun23,Sandborg Michael23,Carlsson Tedgren Åsa234,Malusek Alexandr23

Affiliation:

1. Department of Electrical Engineering; Linköping University, SE-581 83, Linköping, Sweden

2. Department of Health, Medicine and Caring Sciences; Linköping University, SE-581 83, Linköping, Sweden

3. Center for Medical Image Science and Visualization (CMIV); Linköping University, SE-581 85, Linköping, Sweden

4. Department of Medical Radiation Physics and Nuclear Medicine; Karolinska University Hospital, SE-171 77, Stockholm, Sweden

Abstract

Abstract The choice of the material base to which the material decomposition is performed in dual-energy computed tomography may affect the quality of reconstructed images. The aim of this work is to investigate how the commonly used bases (water, bone), (water, iodine) and (photoelectric effect, Compton scattering) affect the reconstructed linear attenuation coefficient in the case of the Alvarez–Macovski method. The performance of this method is also compared with the performance of the Dual-energy Iterative Reconstruction Algorithm (DIRA). In both cases, the study is performed using simulations. The results show that the Alvarez–Macovski method produced artefacts when iodine was present in the phantom together with human tissues since this method can only work with one doublet. It was shown that these artefacts could be avoided with DIRA using the (water, bone) doublet for tissues and the (water, iodine) doublet for the iodine solution.

Funder

Cancerfonden

ALF Grants Region Östergötland

Patientsäkerhetsforskning Region Östergötland

Vetenskapsrådet

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology, Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

Reference15 articles.

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