Normalization apparatus for PET and SPECT scanners and method for using same
First Claim
1. An apparatus for simulating a sheet source for determining normalization coefficients, said apparatus comprising:
- a tomography scanner having a gantry, said gantry having an axis;
said tomography scanner having at least one detector attached to said gantry;
a patient bed adapted to move relative to said gantry of said scanner; and
a line source attached to said patient bed, said line source adapted to fit into a tunnel defined by said gantry.
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Accused Products
Abstract
Apparatus and methods for simulating a sheet source with a line source for determining normalization coefficients for the detectors in positron emission tomography (PET) scanners and single photon emission computed tomography (SPECT) scanners. A line source, oriented perpendicular to the axis of a scanner gantry, is moved along the axis while the detectors are stationary and positioned substantially parallel to the plane in which the source moves. In another embodiment, an axially mounted line source moves parallel to a diameter of the gantry while the stationary detectors are positioned substantially parallel to the plane in which the source moves. In still another embodiment, the line source is stationary and positioned parallel to the gantry axis and off center while the detectors move relative to the line source. A shaped attenuator is placed around the source in this last embodiment.
49 Citations
23 Claims
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1. An apparatus for simulating a sheet source for determining normalization coefficients, said apparatus comprising:
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a tomography scanner having a gantry, said gantry having an axis;
said tomography scanner having at least one detector attached to said gantry;
a patient bed adapted to move relative to said gantry of said scanner; and
a line source attached to said patient bed, said line source adapted to fit into a tunnel defined by said gantry. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11)
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12. An apparatus for simulating a sheet source for determining normalization coefficients, said apparatus comprising:
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a tomography scanner having a gantry, said gantry having an axis;
said tomography scanner having at least one detector;
a line source positioned substantially parallel to said axis, said line source positioned off-center relative to said axis; and
a moving device causing said line source to revolve about said axis at a specified radius, said line source moving relative to said at least one detector for determining normalization coefficients. - View Dependent Claims (13, 14, 15)
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16. A method for determining normalization coefficients, said method comprising the steps of:
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(a) positioning a line source in a tunnel defined by a gantry of a tomography scanner, said tunnel having an axis;
said tomography scanner having at least one detector;
(b) changing the spatial relationship between said line source and said at least one detector;
(c) acquiring a sinogram; and
(d) determining normalization coefficients from said sinogram. - View Dependent Claims (17, 18, 19, 20, 21, 22, 23)
wherein said step of changing said spatial relationship includes the steps of positioning said line source substantially parallel to a plane defined by said at least one detector, attaching said line source to a patient bed, and moving said patient bed such that said line source moves along said axis of said tunnel.
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19. The method of claim 16 wherein said step of positioning said line source includes a step of positioning said line source substantially parallel to the axis of said tunnel;
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wherein said step of changing said spatial relationship includes a step of positioning said at least one detector in a fixed position and a step of causing said line source to move in a path substantially parallel to a plane defined by said at least one detector.
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20. The method of claim 16 wherein said step of positioning said line source includes a step of positioning said line source substantially parallel to the axis of said tunnel;
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wherein said step of changing said spatial relationship includes a step of positioning said at least one detector and a step of causing said line source to move along a diameter of said tunnel.
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21. The method of claim 16 wherein said step of positioning said line source includes a step of positioning said line source substantially parallel to said axis of said tunnel and closer to a surface of said tunnel than to a diametrically opposite surface of said tunnel;
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wherein said step of changing said spatial relationship includes a step of fixedly positioning said line source and a step of rotating said at least one detector around said axis.
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22. The method of claim 21 wherein said step of positioning said line source includes a step of surrounding said line source with a shaped attenuator.
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23. The method of claim 16 wherein said step of changing the spatial relationship includes moving said line source at a uniform speed.
Specification