Literature DB >> 28742062

A method to incorporate the effect of beam quality on image noise in a digitally reconstructed radiograph (DRR) based computer simulation for optimisation of digital radiography.

Craig S Moore1, Tim J Wood, John R Saunderson, Andrew W Beavis.   

Abstract

The use of computer simulated digital x-radiographs for optimisation purposes has become widespread in recent years. To make these optimisation investigations effective, it is vital simulated radiographs contain accurate anatomical and system noise. Computer algorithms that simulate radiographs based solely on the incident detector x-ray intensity ('dose') have been reported extensively in the literature. However, while it has been established for digital mammography that x-ray beam quality is an important factor when modelling noise in simulated images there are no such studies for diagnostic imaging of the chest, abdomen and pelvis. This study investigates the influence of beam quality on image noise in a digital radiography (DR) imaging system, and incorporates these effects into a digitally reconstructed radiograph (DRR) computer simulator. Image noise was measured on a real DR imaging system as a function of dose (absorbed energy) over a range of clinically relevant beam qualities. Simulated 'absorbed energy' and 'beam quality' DRRs were then created for each patient and tube voltage under investigation. Simulated noise images, corrected for dose and beam quality, were subsequently produced from the absorbed energy and beam quality DRRs, using the measured noise, absorbed energy and beam quality relationships. The noise images were superimposed onto the noiseless absorbed energy DRRs to create the final images. Signal-to-noise measurements in simulated chest, abdomen and spine images were within 10% of the corresponding measurements in real images. This compares favourably to our previous algorithm where images corrected for dose only were all within 20%.

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Year:  2017        PMID: 28742062     DOI: 10.1088/1361-6560/aa81fb

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  4 in total

1.  Optimisation of tube voltage range (kVp) for AP abdomen, pelvis and spine imaging of average patients with a digital radiography (DR) imaging system using a computer simulator.

Authors:  Craig Steven Moore; Tim Wood; Stephen Balcam; Liam Needler; Tim Guest; Wee Ping Ngu; Lee Wun Chong; John Saunderson; Andrew Beavis
Journal:  Br J Radiol       Date:  2020-08-12       Impact factor: 3.039

2.  Use of a computer simulator to investigate optimized tube voltage for chest imaging of average patients with a digital radiography (DR) imaging system.

Authors:  Craig Steven Moore; Tim Wood; Ged Avery; Steve Balcam; Liam Needler; Hiten Joshi; Najeeb Ahmed; John Saunderson; Andrew Beavis
Journal:  Br J Radiol       Date:  2019-10-07       Impact factor: 3.039

Review 3.  Weight-bearing cone-beam computed tomography in the foot and ankle specialty: where we are and where we are going - an update.

Authors:  Alexandre Leme Godoy-Santos; Alessio Bernasconi; Marcelo Bordalo-Rodrigues; François Lintz; Carlos Felipe Teixeira Lôbo; Cesar de Cesar Netto
Journal:  Radiol Bras       Date:  2021 May-Jun

4.  Weight-bearing cone beam CT scans in the foot and ankle.

Authors:  François Lintz; Cesar de Cesar Netto; Alexeij Barg; Arne Burssens; Martinus Richter
Journal:  EFORT Open Rev       Date:  2018-05-21
  4 in total

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