IP Library › Patent Application 15913540
Patent Application
App. No. 15/913,540

METHOD AND APPARATUS FOR ARTIFACT REDUCTION FOR JOINT REGION IN STEP AND SHOOT COMPUTED TOMOGRAPHY

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Quick Facts
Patent No.
US None
App. No.
15/913,540
Abstract

A computed tomography (CT) system includes a rotatable gantry having an opening to receive an object to be scanned, an x-ray tube having an anode, the x-ray tube positioned on the gantry to generate x-rays from a focal spot of the anode and through the opening, a pixelated detector positioned on the gantry to receive the x-rays from which CT projection data is generated, and a computer. The computer programmed to acquire step-and-shoot (SAS) full scan CT projection data for a first scan and for a first rotation, and for a second scan and for a second rotation, wherein the first scan is axially offset from the second scan, interpolate across the first and second scans to generate interpolated projection data, and reconstruct an image based on the interpolated projection data.

Claims (41)

1 . A computed tomography (CT) system, comprising:

a rotatable gantry having an opening to receive an object to be scanned;

an x-ray tube having an anode, the x-ray tube positioned on the gantry to generate x-rays from a focal spot of the anode and through the opening;

a pixelated detector positioned on the gantry to receive the x-rays from which CT projection data is generated; and

a computer programmed to:

acquire step-and-shoot (SAS) full scan CT projection data for a first scan and for a first rotation, and for a second scan and for a second rotation, wherein the first scan is axially offset from the second scan;

interpolate across the first and second scans to generate interpolated projection data; and

reconstruct an image based on the interpolated projection data.

2 . The CT system of claim 1 , wherein the computer is programmed to:

identify a voxel that is not illuminated in at least a portion of the first scan and at a given angle theta; and

generate the interpolated projection data based on the identified voxel.

3 . The CT system of claim 2 , wherein the computer is further programmed to generate the interpolated projection data using the second scan and based on the given angle theta.

4 . The CT system of claim 3 , wherein the computer is further programmed to generate the interpolated projection data using the second scan at an angle that is complementary to the given angle theta.

5 . The CT system of claim 4 , wherein the voxel is neither illuminated in one scan at a given angle nor a consecutive scan at the angle that is complementary to the given angle theta.

6 . The CT system of claim 5 , wherein the computer is further programmed to re-bin the acquired CT projection data from a fan geometry to a parallel geometry to generate re-binned projection data.

7 . The CT system of claim 6 , wherein the computer is further programmed to filter the re-binned projection data by a ramp filtering kernel.

8 . A method of imaging, comprising:

passing an object through an opening of a rotatable gantry to be scanned;

receiving x-rays that pass through the object, in a pixelated detector positioned on the gantry, from which CT projection data is generated;

acquiring step-and-shoot (SAS) full scan CT projection data for a first scan and for a first rotation, and for a second scan and for a second rotation, wherein the first scan is axially offset from the second scan;

interpolating across the first and second scans to generate interpolated projection data; and

reconstructing an image based on the interpolated projection data.

9 . The method of claim 8 , further comprising:

identifying a voxel that is neither illuminated in one scan at a given angle nor a consecutive scan at an angle that is complementary to the given angle; and

generating the interpolated projection data based on the identified voxel.

10 . The method of claim 9 , further comprising generating the interpolated projection data using the second scan and based on the given angle theta.

11 . The method of claim 10 , further comprising generating the interpolated projection data using the second scan at the angle that is complementary to the given angle theta.

12 . The method of claim 11 , further comprising re-binning the acquired CT projection data from a fan geometry to a parallel geometry to generate re-binned projection data.

13 . The method of claim 12 , further comprising filtering the re-binned projection data by a ramp filtering kernel.

14 . A computer readable storage medium having stored thereon a computer comprising instructions, which, when executed by a computer, cause the computer to:

acquire step-and-shoot (SAS) full scan CT projection data for a first scan and for a first rotation of a gantry, and for a second scan and for a second rotation of the gantry, wherein the first scan is axially offset from the second scan;

interpolate across the first and second scans to generate interpolated projection data; and

reconstruct an image based on the interpolated projection data.

15 . The computer readable storage medium of claim 14 , wherein the computer is further caused to:

identify a voxel that is neither illuminated in one scan at a given angle nor a consecutive scan at an angle that is complementary to the given angle; and

generate the interpolated projection data based on the identified voxel.

16 . The computer readable storage medium of claim 15 , wherein the computer is further caused to generate the interpolated projection data using the second scan and based on the given angle theta.

17 . The computer readable storage medium of claim 16 , wherein the computer is further caused to generate the interpolated projection data using the second scan at an angle that is complementary to the given angle theta.

18 . The computer readable storage medium of claim 14 , wherein the voxel is not illuminated in the second scan and at the angle that is complementary to the given angle theta.

19 . The computer readable storage medium of claim 18 , wherein the computer is further caused to re-bin the acquired CT projection data from a fan geometry to a parallel geometry to generate re-binned projection data.

20 . The computer-readable storage medium of claim 19 , wherein the computer is further caused to filter the re-binned projection data by a ramp filtering kernel.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2020
From: FMI MEDICAL SYSTEMS CO. LTD
To: MINFOUND MEDICAL SYSTEMS CO. LTD.
Reel/Frame 052756/0779 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2018
From: GUO, HONGBIN; MIAO, CHUANG; IKHLEF, ABDELAZIZ; CUI, XUELIN
To: FMI MEDICAL SYSTEMS CO., LTD.
Reel/Frame 045128/0398 →