Cardiac helical half scan reconstructions for multiple detector row CT
First Claim
1. A method for reconstructing cardiac images using a computed tomographic (CT) imaging system, said method comprising the steps of:
- selecting a helical scanning pitch for scanning a patient;
scanning the patient, including the patient'"'"'s heart, with a computed tomographic imaging system having a plurality of detector rows and a rotating gantry to acquire projection data from the plurality of detector rows;
selecting a phase of the cardiac cycle for imaging;
combining portions of the acquired projection data from a plurality of detector rows, the combined portions corresponding to the selected cardiac phase; and
reconstructing images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein said step of reconstructing images comprises performing cardiac helical half scan reconstructions (CH), and wherein selecting a helical scanning pitch comprises selecting a helical scanning pitch pitch having a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breathhold.
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Abstract
One embodiment of the present invention is a method for reconstructing cardiac images using a computed tomographic (CT) imaging system. The method includes steps of: selecting a helical scanning pitch for scanning a patient; scanning the patient, including the patient'"'"'s heart, with a computed tomographic imaging system having a plurality of detector rows and a rotating gantry to acquire projection data from the plurality of detector rows; selecting a phase of the cardiac cycle for imaging; combining portions of the acquired projection data from a plurality of detector rows, the combined portions corresponding to the selected cardiac phase; and reconstructing images, including images of the patient'"'"'s heart, from the combined, interpolated projection data.
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Citations
20 Claims
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1. A method for reconstructing cardiac images using a computed tomographic (CT) imaging system, said method comprising the steps of:
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selecting a helical scanning pitch for scanning a patient;
scanning the patient, including the patient'"'"'s heart, with a computed tomographic imaging system having a plurality of detector rows and a rotating gantry to acquire projection data from the plurality of detector rows;
selecting a phase of the cardiac cycle for imaging;
combining portions of the acquired projection data from a plurality of detector rows, the combined portions corresponding to the selected cardiac phase; and
reconstructing images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein said step of reconstructing images comprises performing cardiac helical half scan reconstructions (CH), and wherein selecting a helical scanning pitch comprises selecting a helical scanning pitch pitch having a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breathhold. - View Dependent Claims (2, 3)
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4. A method for reconstructing cardiac images using a computed tomographic (CT) imaging system, said method comprising the steps of:
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selecting a helical scanning pitch for scanning a patient;
scanning the patient, including the patient'"'"'s heart, with a computed tomographic imaging system having a plurality of detector rows and a rotating gantry to acquire projection data from the plurality of detector rows;
selecting a phase of the cardiac cycle for imaging;
combining portions of the acquired projection data from a plurality of detector rows, the combined portions corresponding to the selected cardiac phase; and
reconstructing images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein said step of reconstructing images comprises performing cardiac helical half scan reconstructions (CH), and wherein selecting a helical scanning pitch comprises selecting a helical scanning pitch pitch having a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breathhold. - View Dependent Claims (5, 6)
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7. A method for reconstructing cardiac images using a computed tomographic (CT) imaging system, said method comprising the steps of:
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selecting a helical scanning pitch for scanning a patient;
scanning the patient, including the patient'"'"'s heart, with a computed tomographic imaging system having a plurality of detector rows and a rotating gantry to acquire projection data from the plurality of detector rows;
selecting a phase of the cardiac cycle for imaging;
combining portions of the acquired projection data from a plurality of detector rows, the combined portions corresponding to the selected cardiac phase;
reconstructing images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein said step of reconstructing images comprises performing cardiac helical half scan reconstructions (CH); and
selecting an image separation parameter s, wherein said selecting a helical scanning pitch comprises selecting a helical scanning pitch pitch having a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breathhold. - View Dependent Claims (8, 9)
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10. A method for reconstructing cardiac images using a computed tomographic (CT) imaging system, said method comprising the steps of:
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selecting a helical scanning pitch for scanning a patient;
scanning the patient, including the patient'"'"'s heart, with a computed tomographic imaging system having a plurality of detector rows and a rotating gantry to acquire projection data from the plurality of detector rows;
selecting a phase of the cardiac cycle for imaging;
combining portions of the acquired projection data from a plurality of detector rows, the combined portions corresponding to the selected cardiac phase; and
reconstructing images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein said step of reconstructing images comprises performing cardiac helical half scan reconstructions (CH), and wherein selecting a helical scanning pitch comprises selecting a helical scanning pitch pitch having a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breathhold, and said step of combining comprises combining projection data acquired during corresponding phases of two consecutive cardiac cycles.
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11. A computed tomographic imaging system for reconstructing cardiac images, said imaging system comprising a plurality of detector rows and a rotating gantry, and said imaging system being configured to:
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scan at a selected helical scanning pitch pitch having a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breatbhold;
acquire projection data of the patient, including the patient'"'"'s heart, from the plurality of detector rows;
correlate the acquired projection data with cardiac cycles of the patient'"'"'s heart;
combine portions of the acquired projection data from the plurality of detector rows, the combined portions corresponding to a selected cardiac phase; and
reconstruct images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein to reconstruct said images, said imaging system is configured to perform cardiac helical half scan reconstructions (CH). - View Dependent Claims (12, 13)
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14. A computed tomographic imaging system for reconstructing cardiac images, said imaging system comprising a plurality of detector rows and a rotating gantry, and said imaging system being configured to:
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scan at a selected a helical scanning pitch pitch having a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breatbhold;
acquire projection data of the patient, including the patient'"'"'s heart, from the plurality of detector rows;
correlate the acquired projection data with cardiac cycles of the patient'"'"'s heart;
combine portions of the acquired projection data from the plurality of detector rows, the combined portions corresponding to a selected cardiac phase; and
reconstruct images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein to reconstruct said images, said imaging system is configured to perform cardiac helical half scan reconstructions (CH). - View Dependent Claims (15, 16)
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17. A computed tomographic imaging system for reconstructing cardiac images, said imaging system comprising a plurality of detector rows and a rotating gantry, and said imaging system being configured to:
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scan at a helical scanning pitch selected in accordance with an image separation parameter s wherein the helical scanning pitch pitch has a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breathhold;
acquire projection data of the patient, including the patient'"'"'s heart, from the plurality of detector rows;
correlate the acquired projection data with cardiac cycles of the patient'"'"'s heart;
combine portions of the acquired projection data from the plurality of detector rows, the combined portions corresponding to a selected cardiac phase; and
reconstruct images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein to reconstruct said images, said imaging system is configured to perform cardiac helical half scan reconstructions (CH). - View Dependent Claims (18, 19)
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20. A computed tomographic imaging system for reconstructing cardiac images, said imaging system comprising a plurality of detector rows and a rotating gantry, and said imaging system being configured to:
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scan at a helical scanning pitch pitch having a maximum value not greater than;
where nss is a total number of detector rows, bpm is the patient'"'"'s cardiac rate in beats per minute, and gsp is the gantry speed in seconds per rotation, and a minimum value not less than a pitch required to scan an entire cardiac region of the patient in one breathhold;
acquire projection data of the patient, including the patient'"'"'s heart, from the plurality of detector rows;
correlate the acquired projection data with cardiac cycles of the patient'"'"'s heart;
combine portions of the acquired projection data from the plurality of detector rows, the combined portions corresponding to a selected cardiac phase; and
reconstruct images, including images of the patient'"'"'s heart, from the combined, interpolated projection data, wherein said imaging system being configured to combine projection data comprises said imaging system being configured to combine projection data acquired during corresponding phases of two consecutive cardiac cycles, wherein to reconstruct said images, said imaging system is configured to perform cardiac helical half scan reconstructions (CH).
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Specification