Dynamic spect camera
First Claim
Patent Images
1. A method for anatomic construction of voxels, comprising:
- providing a structural image of a region of interest;
constructing an anatomic system of voxels, for the region of interest, in which voxel boundaries are aligned with boundaries of structural objects of the region of interest, based on the structural image;
performing radioactive-emission imaging of the region of interest, utilizing the anatomic system of voxels;
performing reconstruction of the radioactive-emission imaging, utilizing the anatomic system of voxels; and
fitting the boundaries of the structural objects to parametric equations and utilizing the parametric equations in the constructing of the anatomic system of voxels.
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Abstract
A method of reconstruction of a radioactive emission image. The method comprises providing a first system of voxels for a region of interest, obtaining radioactive-emission data from the region of interest, performing a first reconstruction, based on the radioactive-emission data and the first system of voxels, to obtain a first image, correcting the first system of voxels, by aligning voxel boundaries with object boundaries, based on the first image; thus obtaining a second system of voxels, and performing a second reconstruction, based on the radioactive-emission data and the second system of voxels, thus obtaining a second image.
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Citations
19 Claims
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1. A method for anatomic construction of voxels, comprising:
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providing a structural image of a region of interest; constructing an anatomic system of voxels, for the region of interest, in which voxel boundaries are aligned with boundaries of structural objects of the region of interest, based on the structural image; performing radioactive-emission imaging of the region of interest, utilizing the anatomic system of voxels; performing reconstruction of the radioactive-emission imaging, utilizing the anatomic system of voxels; and fitting the boundaries of the structural objects to parametric equations and utilizing the parametric equations in the constructing of the anatomic system of voxels. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
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9. A method for anatomic construction of voxels, comprising:
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providing a structural image of a region of interest; constructing an anatomic system of voxels, for the region of interest, in which voxel boundaries are aligned with boundaries of structural objects of the region of interest, based on the structural image; performing radioactive-emission imaging of the region of interest, utilizing the anatomic system of voxels; and performing reconstruction of the radioactive-emission imaging, utilizing the anatomic system of voxels; wherein the anatomic system of voxels includes voxels of varying volumes, depending on their anatomic position and relevance.
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10. A method for anatomic construction of voxels, comprising:
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providing a structural image of a region of interest; constructing an anatomic system of voxels, for the region of interest, in which voxel boundaries are aligned with boundaries of structural objects of the region of interest, based on the structural image; performing radioactive-emission imaging of the region of interest, utilizing the anatomic system of voxels; performing reconstruction of the radioactive-emission imaging, utilizing the anatomic system of voxels; and time- binning of the radioactive emissions to time periods not greater than substantially 30 seconds.
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11. A method for anatomic construction of voxels, comprising:
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providing a structural image of a region of interest; constructing an anatomic system of voxels, for the region of interest, in which voxel boundaries are aligned with boundaries of structural objects of the region of interest, based on the structural image; performing radioactive-emission imaging of the region of interest, utilizing the anatomic system of voxels; and performing reconstruction of the radioactive-emission imaging, utilizing the anatomic system of voxels; wherein the anatomic system of voxels includes voxels of varying volumes, depending on the relevance of their dynamic activity.
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12. A method of reconstruction of a radioactive emission image, comprising:
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providing a first system of voxels for a region of interest; obtaining radioactive-emission data from the region of interest; performing a first reconstruction, based on the radioactive-emission data and the first system of voxels, to obtain a first image; correcting the first system of voxels, by aligning voxel boundaries with object boundaries, based on the first image;
thus obtaining a second system of voxels;performing a second reconstruction, based on the radioactive-emission data and the second system of voxels, thus obtaining a second image.
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13. A dynamic SPECT camera configured for dynamically determining a spectral energy bin for each detecting unit, the camera comprising:
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an overall structure, which defines proximal and distal ends with respect to a body; a plurality of detecting unit;
arranged on the overall structure and configured for detecting radioactive emissions in a spectral range between 10 KeV and 1 MeV;a spectral selection mechanism, for enabling a selection of a spectral energy bin to be used for each detecting unit, independently from the other detecting units; and a lookup system of recommended spectral energy bin values, as functions of at least one of a specific region of interest, an administered radiopharmaceutical, time since the administration of the radiopharmaceutical, a view of the detecting unit with respect to the region of interest, and patient'"'"'s details; wherein the spectral selection mechanism is further configured for dynamically determining the spectral energy bin for each detecting unit, as functions of at least one of the specific region of interest, the administered radiopharmaceutical, the time elapsed since the administration of the radiopharmaceutical, the view of the detecting unit with respect to the region of interest, and patients'"'"' details, from the lookup system. - View Dependent Claims (14, 15, 16, 17, 18, 19)
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Specification