Open Access
Evaluation of image quality and radiation dose in kilovoltage cone beam computed tomography
Author(s) -
N. Pinsaitong,
Sawwanee Asavaphatiboon,
P Tangboonduangjit
Publication year - 2019
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/1248/1/012050
Subject(s) - contrast (vision) , image quality , filter (signal processing) , nuclear medicine , image resolution , cone beam computed tomography , resolution (logic) , materials science , optics , computed tomography , physics , computer science , image (mathematics) , medicine , artificial intelligence , computer vision , radiology
This study was to evaluate the image quality and radiation dose of kV-CBCT when varying mAs and reconstruction filter. The radiation dosimetry (CBDI w ) and quality control of kV-CBCT image were done. Routine protocols in head, thorax, and pelvis protocols were performed as a reference image. Then the images were acquired with varied mAs, the other parameters were fixed. Each technique was reconstructed with different filter. The image quality in terms of low contrast and high contrast resolution including CBDI w were compared. The result found that the variation of mAs with auto filter affected low contrast resolution, but slightly effect high contrast resolution. When mAs increased, low contrast detectability increased. Decreasing one step of mAs (16.67%) kept in acceptable image quality and reduced about 15% of CBDI w . The smooth filter improved the low contrast resolution, but it decreased the high contrast resolution. While the sharp or ultra-sharp filter improved the high contrast resolution. In conclusion, the changing of mAs affects the low contrast resolution and CBDI W . While the reconstruction filter changed the both of low and high contrast resolution, but no effect to CBDI w . To optimize the image quality and radiation dose of routine protocols, mAs can reduce one step-down.