IP Library Granted Patent US 9,826,943
Granted Patent B2
US 9,826,943 · App. 14/407,200 · Granted Nov 28, 2017

Method for operating a computer tomography system, and computer tomography system

Inventors: Herbert Bruder (Hochstadt, DE); Thomas Flohr (Uehlfeld, DE)
Assignee: Siemens Aktiengesellschaft
A61B6/032A61B6/027A61B6/03A61B6/4233A61B6/52A61B6/54A61B6/547G01T1/2985
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Quick Facts
Patent No.
US 9,826,943
App. No.
14/407,200
Granted
Nov 28, 2017
Kind
B2
Abstract

In a computer tomography system having an x-ray detector with a detector surface at which sensor pixels, for detection of x-ray radiation, are distributed non-uniformly, and a method for operating such a system, either a pitch factor is selected, and a value range for an extent of a reconstruction field for image data is determined dependent on the distribution of the sensor pixels and dependent on the selected pitch factor, or a value for the extent of the reconstruction field is selected, and a value range for the pitch factor is determined dependent on the distribution of the sensor pixels and dependent on the selected value for the extent of the reconstruction field.

Claims (31)

1. A method to operate a computer tomography system that comprises an x-ray detector with a detector surface having a detector middle, with sensor pixels for detection of x-ray radiation being distributed non-uniformly over said detector surface, and a control computer that operates said tomography system, including operating said x-ray detector in order to acquire image data, said method comprising:

via an input interface in communication with said control computer, making an entry that is one of either a pitch factor, or a value for an extent of a reconstruction field for said image data detected at said detector surface by said x-ray detector, in order to produce an electronic output from said control computer that controls operation of said x-ray detector for detecting said image data;

in said control computer, when said entry is said pitch factor, automatically selecting a value range for an extent of said reconstruction field dependent on said distribution of said sensor pixels over said detector surface and dependent on said pitch factor, and generating an electronic signal to represent said value range of said extent of said reconstruction field;

in said control computer, when said entry is said value for said extent of said reconstruction field, automatically determining a value range for said pitch factor dependent on said distribution of said sensor pixels over the detector surface and dependent on the entered value for the extent of the reconstruction field, and generating an electronic signal to represent said value range of said pitch factor; and

providing the electronic signal that is generated by said control computer from said control computer to an output interface in communication with said control computer, and presenting the value range represented by said electronic signal at a display, prior to operating said x-ray detector in order to acquire said image data.

2. A method as claimed in claim 1 comprising configuring said detector surface with a central region having a first sensor pixel density situated around said detector middle, and a border region, outside of said central region, having a second sensor pixel density, said first sensor pixel density being higher than said second sensor pixel density.

3. A method as claimed in claim 2 comprising providing said x-ray detector with a measurement field associated with said reconstruction field, with said extent of said reconstruction field determining an extent of said measurement field and, in said control computer, providing a base value range with a maximum value for said pitch factor for all values of said extent of said measurement field that are less than or equal to a value of an extent of said central region.

4. A method as claimed in claim 3 comprising, in said control computer, setting an upper limit of the value range for said pitch factor to be smaller, dependent on said maximum value, for values of said extent of said measurement field that are larger than the value of the extent of said central region.

5. A method as claimed in claim 4 comprising, in said control computer, setting a minimum value for said upper limit.

6. A method as claimed in claim 1 comprising:

at said input interface in communication with said control computer, providing a value range for said pitch factor for manual viewing;

receiving, as said value for said pitch factor, a user-selected value from said value range at said input interface; and

in said control computer, automatically determining said value range for the extent of said reconstruction field after selection of said value for said pitch factor from said value range at said input interface.

7. A method as claimed in claim 1 comprising:

at said input interface in communication with said control computer, providing a value range for said extent of said reconstruction field for manual viewing;

receiving, as said value for said extent of said reconstruction field, a user-selected value from said value range at said input interface; and

in said control computer, automatically determining said value range for said pitch factor after selection of said value for said extent of said reconstruction field from said value range at said input interface.

8. A method as claimed in claim 7 comprising, in said control computer, automatically user-selected value of said extent of said reconstruction field if a value thereof selected by said user is outside of a predetermined value range for said extent of said reconstruction field.

9. A method as claimed in claim 1 comprising:

operating said computer tomography system to obtain a topogram of a subject; and

in said control computer, automatically adapting said value for the extent of said reconstruction field and said value range for said pitch factor dependent on said topogram.

10. A computer tomography system comprising

an x-ray detector with a detector surface having a detector middle, with sensor pixels for detection of x-ray radiation being distributed non-uniformly over said detector surface;

a control computer that operates said x-ray detector in order to acquire image data;

a display in communication with said control computer;

an input interface and an output interface each in communication with said control computer;

said control computer being configured to receive, via said input interface, an entry that is one of either a pitch factor, or a value for an extent of a reconstruction field for image data detected at said detector surface by said x-ray detector, and said control computer being configured to produce an electronic output from said control computer in response to said entry that controls operation of said x-ray detector for detecting said image data;

when said entry is said pitch factor, said control computer being configured to automatically select a value range for an extent of said reconstruction field dependent on said distribution of said sensor pixels over said detector surface and dependent on said pitch factor, and to generate an electronic signal to represent said value range of said extent of said reconstruction field;

when said entry is said value for said extent of said reconstruction field, said control computer being configured to automatically determine a value range for said pitch factor dependent on said distribution of said sensor pixels over the detector surface and dependent on the entered value for the extent of the reconstruction field, and to generate an electronic signal to represent said value range of said pitch factor; and

said control computer being configured to provide said electronic signal from said to said said output interface, and to present the value range represented by said electronic signal at said display, prior to operating said x-ray detector in order to acquire said image data.

11. A computer tomography system as claimed in claim 10 wherein said sensor pixel distribution at said detector surface of said x-ray detector is T-shaped.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 066088 FRAME: 0256. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 17, 2024
From: SIEMENS HEALTHCARE GMBH
To: SIEMENS HEALTHINEERS AG
Reel/Frame 071178/0246 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2023
From: SIEMENS HEALTHCARE GMBH
To: SIEMENS HEALTHINEERS AG
Reel/Frame 066088/0256 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2018
From: SIEMENS AKTIENGESELLSCHAFT
To: SIEMENS HEALTHCARE GMBH
Reel/Frame 047022/0164 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2015
From: BRUDER, HERBERT; FLOHR, THOMAS
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 036107/0904 →
Priority Claims (1)
DE 10 2012 209 692 · Jun 11, 2012 · national
Continuity (1)
Related Publication 20150313556A1 · Nov 5, 2015