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Cytiva Europe post reconstruction gaussian filter width
Reconstruction and acquisition parameters for all NEMA IQ scans using Fluorine-18 and Gallium-68
Post Reconstruction Gaussian Filter Width, supplied by Cytiva Europe, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Reconstruction and acquisition parameters for all NEMA IQ scans using Fluorine-18 and Gallium-68

Journal: EJNMMI Physics

Article Title: Standardisation of conventional and advanced iterative reconstruction methods for Gallium-68 multi-centre PET-CT trials

doi: 10.1186/s40658-021-00400-8

Figure Lengend Snippet: Reconstruction and acquisition parameters for all NEMA IQ scans using Fluorine-18 and Gallium-68

Article Snippet: Fig. 2 RC max (left), RC mean (middle) and RC peak (right) for Gallium-68 measured from the NEMA IQ phantom scanned on a GE Discovery 710 scanner and reconstructed using BPL with varying penalisation factor (top row) and PSF with varying post-reconstruction Gaussian filter width (bottom row).

Techniques:

Surface plots for the 37-mm sphere of the NEMA IQ phantom taken from the slice with the largest diameter. The top row refers to BPL reconstructions with increasing penalisation factor (left to right) and the bottom row to PSF reconstructions with increasing width (left to right) of Gaussian post-reconstruction filter. The averaged peak-to-valley ratios from six profiles are also shown on the right for BPL (top) and PSF (bottom) reconstructions for the 37-, 28-, and 22-mm spheres. The error bars represent the standard deviations.

Journal: EJNMMI Physics

Article Title: Standardisation of conventional and advanced iterative reconstruction methods for Gallium-68 multi-centre PET-CT trials

doi: 10.1186/s40658-021-00400-8

Figure Lengend Snippet: Surface plots for the 37-mm sphere of the NEMA IQ phantom taken from the slice with the largest diameter. The top row refers to BPL reconstructions with increasing penalisation factor (left to right) and the bottom row to PSF reconstructions with increasing width (left to right) of Gaussian post-reconstruction filter. The averaged peak-to-valley ratios from six profiles are also shown on the right for BPL (top) and PSF (bottom) reconstructions for the 37-, 28-, and 22-mm spheres. The error bars represent the standard deviations.

Article Snippet: Fig. 2 RC max (left), RC mean (middle) and RC peak (right) for Gallium-68 measured from the NEMA IQ phantom scanned on a GE Discovery 710 scanner and reconstructed using BPL with varying penalisation factor (top row) and PSF with varying post-reconstruction Gaussian filter width (bottom row).

Techniques:

RC max (left), RC mean (middle) and RC peak (right) for Gallium-68 measured from the NEMA IQ phantom scanned on a GE Discovery 710 scanner and reconstructed using BPL with varying penalisation factor (top row) and PSF with varying post-reconstruction Gaussian filter width (bottom row).

Journal: EJNMMI Physics

Article Title: Standardisation of conventional and advanced iterative reconstruction methods for Gallium-68 multi-centre PET-CT trials

doi: 10.1186/s40658-021-00400-8

Figure Lengend Snippet: RC max (left), RC mean (middle) and RC peak (right) for Gallium-68 measured from the NEMA IQ phantom scanned on a GE Discovery 710 scanner and reconstructed using BPL with varying penalisation factor (top row) and PSF with varying post-reconstruction Gaussian filter width (bottom row).

Article Snippet: Fig. 2 RC max (left), RC mean (middle) and RC peak (right) for Gallium-68 measured from the NEMA IQ phantom scanned on a GE Discovery 710 scanner and reconstructed using BPL with varying penalisation factor (top row) and PSF with varying post-reconstruction Gaussian filter width (bottom row).

Techniques: