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A noise power spectrum study of a new model-based iterative reconstruction system: Veo 3.0.
Journal of Applied Clinical Medical Physics 2016 September
The purpose of this study was to evaluate performance of the third generation of model-based iterative reconstruction (MBIR) system, Veo 3.0, based on noise power spectrum (NPS) analysis with various clinical presets over a wide range of clinically applicable dose levels. A CatPhan 600 surrounded by an oval, fat-equivalent ring to mimic patient size/shape was scanned 10 times at each of six dose levels on a GE HD 750 scanner. NPS analysis was performed on images reconstructed with various Veo 3.0 preset combinations for comparisons of those images reconstructed using Veo 2.0, filtered back projection (FBP) and adaptive statistical iterative reconstruction (ASiR). The new Target Thickness setting resulted in higher noise in thicker axial images. The new Texture Enhancement function achieved a more isotropic noise behavior with less image artifacts. Veo 3.0 provides additional reconstruction options designed to allow the user choice of balance between spatial resolution and image noise, relative to Veo 2.0. Veo 3.0 provides more user selectable options and in general improved isotropic noise behavior comparing to Veo 2.0. The overall noise reduction performance of both versions of MBIR was improved comparing to FBP and ASiR, especially at low-dose levels. PACS number(s): 87.57.-s, 87.57.Q-, 87.57.C-, 87.57.nf, 87.57.C-, 87.57.cm.
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