IP Library › Granted Patent US 12,082,957
Granted Patent B2
US 12,082,957 · App. 17/116,102 · Granted Sep 10, 2024

Photon-counting X-ray detector and method for operating a photon-counting X-ray detector

Inventors: Bjoern Kreisler (Hausen, DE); Edgar Goederer (Forchheim, DE); Martin Hupfer (Erlangen, DE); Martin Petersilka (Adelsdorf, DE)
Assignee: Siemens Healthineers AG
A61B6/4241A61B6/032A61B6/4233G01T1/17G01T1/247
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Quick Facts
Patent No.
US 12,082,957
App. No.
17/116,102
Granted
Sep 10, 2024
Kind
B2
Abstract

A photon-counting X-ray detector is for acquiring an X-ray image data set of an object penetrated by X-ray radiation. The detector includes a converter element, designed to convert incident X-ray radiation into an electrical signal; and a matrix with a plurality of pixel elements. At least a partial number of the plurality of pixel elements receive a signal input and at least one configurable counter is coupled to the at least a partial number of the plurality of pixel elements, for signaling. Further, the at least one configurable counter is designed to count either a pixel count signal, based on a signal directly received in each respective pixel element, or a coincidence count signal, based on the signal received directly in the respective pixel element and on a coincident signal of at least one further pixel element.

Claims (42)

1. A photon-counting X-ray detector for acquiring an X-ray image data set of an object penetrated by X-ray radiation, the photon-counting X-ray detector comprising:

a converter element, configured to convert incident X-ray radiation into an electrical signal; and

a matrix of a plurality of pixel elements, at least a partial number of the plurality of pixel elements configured to receive a signal input based on the electrical signal; and

at least one configurable counter coupled to the at least a partial number of the plurality of pixel elements, the at least one configurable counter including a configurable multiplexer configured to cause the at least one configurable counter to

count a pixel count in response to the configurable multiplexer being set to a first setting, the pixel count based on a direct signal received in a respective pixel element of the partial number of the plurality of pixel elements, and

count a coincidence count in response to the configurable multiplexer being set to a second setting, the coincidence count based on the direct signal received in the respective pixel element and on a coincident signal of at least one further pixel element of the plurality of pixel elements.

2. The photon-counting X-ray detector of claim 1 , wherein the at least one configurable counter is at least one of

individually configurable for each respective pixel element of the partial number of the plurality of pixel elements, or

jointly configurable for a group of pixel elements of the partial number of the plurality of pixel elements.

3. The photon-counting X-ray detector of claim 2 , wherein each respective pixel element of the plurality of pixel elements includes a conversion apparatus connected to a respective signal input, each conversion apparatus including at least one signal amplifier and a number of comparators, and each comparator of the number of comparators respectively having a settable threshold value, and

wherein for each respective pixel element of the partial number of the plurality of pixel elements, at least one comparator of the number of comparators is coupled to the at least one configurable counter.

4. The photon-counting X-ray detector of claim 3 , wherein each respective pixel element of the partial number of the plurality of pixel elements includes at least one coincidence logic coupled to at least one comparator of the respective pixel element and to at least one comparator of the at least one further pixel element, and

wherein the coincidence count is based on an output signal of the coincidence logic.

5. The photon-counting X-ray detector of claim 4 , wherein each respective pixel element of the plurality of pixel elements includes a plurality of comparators, and

wherein the at least one coincidence logic of a pixel element of the partial number of the plurality of pixel elements is coupled to more than one comparator of the at least one further pixel element of the plurality of pixel elements.

6. The photon-counting X-ray detector of claim 1 , wherein each respective pixel element of the plurality of pixel elements includes a conversion apparatus connected to a respective signal input, each conversion apparatus including at least one signal amplifier and a number of comparators, and each comparator of the number of comparators respectively having a settable threshold value, and

wherein for each respective pixel element of the partial number of the plurality of pixel elements, at least one comparator of the number of comparators is coupled to the at least one configurable counter.

7. The photon-counting X-ray detector of claim 6 , wherein each respective pixel element of the partial number of the plurality of pixel elements includes at least one coincidence logic coupled to at least one comparator of the respective pixel element and to at least one comparator of the at least one further pixel element, and

wherein the coincidence count is based on an output signal of the coincidence logic.

8. The photon-counting X-ray detector of claim 7 , wherein each respective pixel element of the plurality of pixel elements includes a plurality of comparators, and

wherein the at least one coincidence logic of a pixel element of the partial number of the plurality of pixel elements is coupled to more than one comparator of the at least one further pixel element of the plurality of pixel elements.

9. The photon-counting X-ray detector of claim 7 , wherein each respective pixel element of the partial number of the plurality of pixel elements includes at least one setting element configurable for at least one of runtime adjustment, or delaying an input signal into the at least one coincidence logic.

10. The photon-counting X-ray detector of claim 6 , wherein each respective pixel element of the partial number of the plurality of pixel elements includes a plurality of configurable counters, each configurable counter of the plurality of configurable counters respectively coupled to at least one comparator of the respective pixel element and to at least one comparator of the at least one further pixel element of the plurality of pixel elements.

11. The photon-counting X-ray detector of claim 6 , wherein the at least one configurable counter is at least one of

individually configurable for each respective pixel element of the partial number of the plurality of pixel elements, or

jointly configurable for a group of pixel elements of the partial number of the plurality of pixel elements.

12. The photon-counting X-ray detector of claim 1 , wherein the coincidence count signal is based on

the direct signal received in the respective pixel element of the partial number of the plurality of pixel elements, and

coincident signals of between one and 24 further pixel elements of the plurality of pixel elements.

13. The photon-counting X-ray detector of claim 1 , wherein at least one of a number or a choice of further pixel elements of the plurality of pixel elements, on which the coincidence count signal is based, is different for different pixel elements of the plurality of pixel elements.

14. The photon-counting X-ray detector of claim 1 , wherein at least one of a number or choice of further pixel elements of the plurality of pixel elements, on which the coincidence count signal for a pixel element arranged at an edge within the matrix of pixel elements is based, is different from at least one of a number or choice of further pixel elements of the plurality of pixel elements, on which the coincidence count signal for a pixel element arranged centrally within the matrix of pixel elements is based.

15. The photon-counting X-ray detector of claim 1 , wherein each respective pixel element of the partial number of the plurality of pixel elements includes at least one electronic element configured to prevent paralysis of the at least one configurable counter.

16. A medical imaging device, comprising:

the photon-counting X-ray detector of claim 1 .

17. The medical imaging device of claim 16 , wherein the medical imaging device is a computed tomography system.

18. A method for operating a photon-counting X-ray detector for acquiring an X-ray image data set of an object penetrated by X-ray radiation, the method comprising:

counting a pixel count, in response to a configurable multiplexer of at least one configurable counter of a respective pixel element of a partial number of a plurality of pixel elements of the photon-counting X-ray detector being set to a first counting mode, the pixel count signal based on a direct signal received in the respective pixel element of the partial number of the plurality of pixel elements; and

counting a coincidence count, in response to the configurable multiplexer being set to a second counting mode, the coincidence count based on the direct signal received in the respective pixel element and on a coincident signal of at least one further pixel element of the plurality of pixel elements,

wherein the at least one configurable counter is configured to be switchable between the first counting mode and the second counting mode.

19. The method of claim 18 , wherein the at least one configurable counter is at least one of

individually configurable for each respective pixel element of the partial number of the plurality of pixel elements, or

jointly configurable for a group of pixel elements of the partial number of the plurality of pixel elements.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2023
From: SIEMENS HEALTHCARE GMBH
To: SIEMENS HEALTHINEERS AG
Reel/Frame 066267/0346 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2022
From: KREISLER, BJOERN; GOEDERER, EDGAR; HUPFER, MARTIN; PETERSILKA, MARTIN
To: SIEMENS HEALTHCARE GMBH
Reel/Frame 059879/0123 →
Priority Claims (1)
EP 19217562 · Dec 18, 2019 · regional
Continuity (1)
Related Publication 20210186440A1 · Jun 24, 2021