Comparison of methods for acceptance and constancy testing in dental cone-beam computed tomography

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Abstract

Purpose: The aim of this work was to implement, validate, and compare two procedures for routine image quality (IQ) assurance in dental cone-beam computed tomography (CBCT): 1. the German standard DIN 6868 - 161 introduced in 2013 and 2. the established standard IEC 61 223 - 3-5 for clinical CT x-ray equipment referenced as DIN and IEC below. Materials and Methods: The approximated in-plane modulation transfer function (MTF), the contrast-to-noise indicator (CNI), and the uniformity indicator (UI) were determined in accordance with DIN. Image noise, the uniformity index (UI), the contrast-to-noise ratio (CNR), and the 3 D MTF were measured according to IEC 61 223 - 3-5 using a previously proposed quality assurance (QA) framework. For this, a modular phantom was used. All experiments were performed on a clinical dental CBCT unit. The severity of image artefacts was measured at different z-positions. A dedicated computer program was implemented to allow for automated QA procedure. Results: The position and orientation of the phantoms were detected automatically in all of the measurements providing a reproducible placement of the evaluation regions and volumes. 50 and 10 in-plane MTF values of the approximated and the exact MTF calculation procedure were in agreement to within 5. With increasing axial distance from the isocentre, UI∗ and CNI dropped by 30 and 19, respectively. Conventional IQ parameters showed higher sensitivity to image artefacts; i. e., UI and CNR were reduced by about 197 and 37. Conclusion: The implemented automated QA routines are compatible with both the DIN and the IEC approach and offer reliable and quantitative tracking of imaging performance in dental CBCT for clinical practice. However, there is no equivalence between the DIN and the IEC metrics. In addition, direct measurements of physical IQ parameters such as image contrast and noise, uniformity, and axial resolution are not supported by the new concept according to DIN.

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Steiding, C., Kolditz, D., & Kalender, W. (2015). Comparison of methods for acceptance and constancy testing in dental cone-beam computed tomography. RoFo Fortschritte Auf Dem Gebiet Der Rontgenstrahlen Und Der Bildgebenden Verfahren, 187(4), 283–290. https://doi.org/10.1055/s-0034-1385333

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