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Respiratory Motion three-dimensional (3d) pet imaging
Coronal slices of a 4D <t>PET</t> (left), simulated <t>3D</t> (middle) and motion corrected (right) scans of the phantom case at the circular marker location. The background is color-coded according to SUV values and shape represents an automated segmentation at 50% of the maximum SUV value.
Three Dimensional (3d) Pet Imaging, supplied by Respiratory Motion, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-dimensional+(3d)+pet+imaging/three+dimensional++3d++pet+imaging/pmc04215703-1-8-21
Average 90 stars, based on 1 article reviews
three-dimensional (3d) pet imaging - by Bioz Stars, 2026-09
90/100 stars

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1) Product Images from "Four-dimensional (4D) Motion Detection to Correct Respiratory Effects in Treatment Response Assessment Using Molecular Imaging Biomarkers"

Article Title: Four-dimensional (4D) Motion Detection to Correct Respiratory Effects in Treatment Response Assessment Using Molecular Imaging Biomarkers

Journal: Technology in Cancer Research & Treatment

doi: 10.7785/tcrtexpress.2013.600255

Coronal slices of a 4D PET (left), simulated 3D (middle) and motion corrected (right) scans of the phantom case at the circular marker location. The background is color-coded according to SUV values and shape represents an automated segmentation at 50% of the maximum SUV value.
Figure Legend Snippet: Coronal slices of a 4D PET (left), simulated 3D (middle) and motion corrected (right) scans of the phantom case at the circular marker location. The background is color-coded according to SUV values and shape represents an automated segmentation at 50% of the maximum SUV value.

Techniques Used: Marker

Related Articles

Positron Emission Tomography:

Article Title: Four-dimensional (4D) Motion Detection to Correct Respiratory Effects in Treatment Response Assessment Using Molecular Imaging Biomarkers
Article Snippet: However, for thoracic regions, the use of three-dimensional (3D) PET imaging is unfeasible because the radiotracer activity is smeared by the respiratory motion and averaged during the imaging acquisition process.

Imaging:

Article Title: Four-dimensional (4D) Motion Detection to Correct Respiratory Effects in Treatment Response Assessment Using Molecular Imaging Biomarkers
Article Snippet: However, for thoracic regions, the use of three-dimensional (3D) PET imaging is unfeasible because the radiotracer activity is smeared by the respiratory motion and averaged during the imaging acquisition process.

Activity Assay:

Article Title: Four-dimensional (4D) Motion Detection to Correct Respiratory Effects in Treatment Response Assessment Using Molecular Imaging Biomarkers
Article Snippet: However, for thoracic regions, the use of three-dimensional (3D) PET imaging is unfeasible because the radiotracer activity is smeared by the respiratory motion and averaged during the imaging acquisition process.

Marker:

Article Title: Four-dimensional (4D) Motion Detection to Correct Respiratory Effects in Treatment Response Assessment Using Molecular Imaging Biomarkers
Article Snippet: However, for thoracic regions, the use of three-dimensional (3D) PET imaging is unfeasible because the radiotracer activity is smeared by the respiratory motion and averaged during the imaging acquisition process.



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Respiratory Motion three-dimensional (3d) pet imaging
Coronal slices of a 4D <t>PET</t> (left), simulated <t>3D</t> (middle) and motion corrected (right) scans of the phantom case at the circular marker location. The background is color-coded according to SUV values and shape represents an automated segmentation at 50% of the maximum SUV value.
Three Dimensional (3d) Pet Imaging, supplied by Respiratory Motion, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/three-dimensional+(3d)+pet+imaging/three+dimensional++3d++pet+imaging/pmc04215703-1-8-21
Average 90 stars, based on 1 article reviews
three-dimensional (3d) pet imaging - by Bioz Stars, 2026-09
90/100 stars
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Coronal slices of a 4D PET (left), simulated 3D (middle) and motion corrected (right) scans of the phantom case at the circular marker location. The background is color-coded according to SUV values and shape represents an automated segmentation at 50% of the maximum SUV value.

Journal: Technology in Cancer Research & Treatment

Article Title: Four-dimensional (4D) Motion Detection to Correct Respiratory Effects in Treatment Response Assessment Using Molecular Imaging Biomarkers

doi: 10.7785/tcrtexpress.2013.600255

Figure Lengend Snippet: Coronal slices of a 4D PET (left), simulated 3D (middle) and motion corrected (right) scans of the phantom case at the circular marker location. The background is color-coded according to SUV values and shape represents an automated segmentation at 50% of the maximum SUV value.

Article Snippet: However, for thoracic regions, the use of three-dimensional (3D) PET imaging is unfeasible because the radiotracer activity is smeared by the respiratory motion and averaged during the imaging acquisition process.

Techniques: Marker