CT colonography system
First Claim
Patent Images
1. An imaging scanner comprising:
- a radiation source;
a radiation detector; and
a computer programmed to decompose CT data acquired by the radiation detector into a first dataset and a second dataset to delineate composition of a colorectal region of a subject, the colorectal region having an intravenously administered contrast agent positioned in a polyp attached to a colon wall, wherein the first dataset is comprised of data at an energy level different than that of the second dataset.
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Abstract
A method and system of CT colonography is presented that includes the acquisition of energy sensitive or energy-discriminating CT data from a colorectal region of a subject. CT data is acquired and decomposed into basis material density maps and used to differentiate and enhance contrast between tissues in the colorectal region. The invention is particularly applicable with the detection of colon polyps without cathartic preparation or insufflation of the colorectal region. The invention is further directed to the automatic detection of colon polyps.
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Citations
24 Claims
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1. An imaging scanner comprising:
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a radiation source; a radiation detector; and a computer programmed to decompose CT data acquired by the radiation detector into a first dataset and a second dataset to delineate composition of a colorectal region of a subject, the colorectal region having an intravenously administered contrast agent positioned in a polyp attached to a colon wall, wherein the first dataset is comprised of data at an energy level different than that of the second dataset. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. A method of CT imaging comprising the steps of:
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acquiring energy sensitive CT data from an ROI of a subject; decomposing the energy sensitive CT data into a first energy bin and a second energy bin, wherein the first energy bin is segmented to represent a density of a contrast agent intravenously administered and the second energy bin is segmented to represent a density of water; and encoding pixels corresponding to data from the first energy bin dissimilarly than pixels corresponding to data from the second energy bin to enhance contrast in an image of the ROI. - View Dependent Claims (9, 10, 11, 12, 13)
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14. A computer readable storage medium having a computer program stored thereon and representing a set of instructions that when executed by a computer causes the computer to:
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receive energy sensitive CT data acquired from a colorectal region of a subject; decompose the energy sensitive CT data into at least two datasets; assign an encoding value to each dataset; and reconstruct an image of the colorectal region with contrast between stool and abnormal tissue of the colorectal region without insufflation of the colorectal region, the abnormal tissue having a first contrast agent therein, and the stool having a second contrast agent therein. - View Dependent Claims (15, 16, 17, 18, 19)
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20. A CT system comprising:
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a radiation source; a radiation detector; and a computer programmed to; receive data in a first energy spectrum acquired from a colorectal region of a subject, the colorectal region comprising stool, polyps, and a colon wall wherein iodine is an intravenously administered contrast agent in one of the polyps and the colon wall; receive data in a second energy spectrum acquired from the colorectal region of the subject; and reconstruct an image of the colorectal region of the subject with contrast between data in the first energy spectrum and data in the second energy spectrum.
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21. A CT system comprising:
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a radiation source; a radiation detector; and a computer programmed to; receive data in a first energy spectrum acquired from a colorectal region of a subject; receive data in a second energy spectrum acquired from the colorectal region of the subject; and detect a labeled, intravenously administered contrast agent delivered to an abnormal tissue of the colorectal region from the received data.
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22. A CT system comprising:
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a radiation source; a radiation detector; and a computer programmed to; receive data regarding a first energy spectrum acquired from a colorectal region of a subject; receive data regarding a second energy spectrum acquired from the colorectal region of the subject; and automatically characterize tissue as cancerous and non-cancerous based upon the received data.
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23. A method of CT imaging comprising the steps of:
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acquiring energy sensitive CT data from an ROI of a subject, wherein the ROI includes a colorectal region of the subject; introducing a contrast agent into the ROI; decomposing the energy sensitive CT data into a first energy bin and a second energy bin; and encoding pixels corresponding to data from the first energy bin dissimilarly than pixels corresponding to data from the second energy bin to enhance contrast in an image of the ROI.
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24. A method of CT imaging comprising the steps of:
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acquiring energy sensitive CT data from an ROI of a subject; imaging the ROI without cathartic preparation or insufflation of the ROI; decomposing the energy sensitive CT data into a first energy bin and a second energy bin; and encoding pixels corresponding to data from the first energy bin dissimilarly than pixels corresponding to data from the second energy bin to enhance contrast in an image of the ROI.
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Specification