IP Library Granted Patent US 11,262,318
Granted Patent B2
US 11,262,318 · App. 16/393,853 · Granted Mar 1, 2022

Adaption for a turntable of a CT system

Inventors: Michael Salamon (Erlangen, DE); Florian Gabsteiger (Erlangen, DE); Carina Kreutner (Erlangen, DE); Johannes Leisner (Erlangen, DE)
Assignee: Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V.
G01N23/046G01N2223/3306G01N2223/419
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Quick Facts
Patent No.
US 11,262,318
App. No.
16/393,853
Granted
Mar 1, 2022
Kind
B2
Abstract

An adaptor for a turntable of a CT system includes at least two object turntables for at least two objects and a rotation transmission element configured to be coupled to the turntable of the CT system. The two object turntables are coupled to each other using a coupler such that the at least two object turntables rotate simultaneously. The rotation transmission element is coupled to the coupler and configured to transmit a rotation from the turntable of the CT system to the coupler in order to drive the at least two object turntables.

Claims (34)

1. An adaptor for a turntable of a CT system, comprising:

at least two object turntables for at least two objects, the at least two object turntables are coupled to each other by a coupler such that the at least two object turntables rotate simultaneously;

a rotation transmission element configured to be coupled to a turntable of the CT system, coupled to the coupler and configured to transmit a rotation from the turntable of the CT system to the coupler in order to drive the at least two object turntables; and

wherein the adaptor further comprises a common housing for the at least two object turntables, wherein the common housing is configured to support the at least two object turntables, and wherein the common housing is fixed by means of a rotation sensor, controller and a drive between the transmission element and the common housing or between the turntable and the common housing and/or wherein the common housing is configured to remain stable if the coupler and the at least two object turntables perform a rotation, and wherein the sensor is configured to detect a rotation of the coupler, wherein the drive is configured to rotate the common housing against the transmission element or against the turntable and wherein the controller is configured to control the drive such that the rotation of the coupler and the rotation caused by the drive balance out each other; or

wherein the rotation transmission element comprises a shape enabling coupling to a standard object holder of the turntable of the CT system, and wherein the transmission element comprises an eccentric adaptor arranged between the standard object holder and the transmission element.

2. The adaptor according to claim 1 , wherein the at least two object turntables are coupled to each other by a belt.

3. The adaptor according to claim 1 , wherein the at least two object turntables are coupled to each other via gear wheels.

4. The adaptor according to claim 1 , wherein the transmission element comprises a rod to be arranged in parallel to the rotation axis of the turntable of the CT system.

5. The adaptor according to claim 4 , wherein the rod is arranged in the center of the turntable of the CT system.

6. The apparatus according to claim 1 , wherein the common housing is fixed using a mechanical fixture and/or configured to remain in a stable position when the coupler and the at least two objects perform a rotation.

7. The adaptor according to claim 1 , wherein the adaptor comprises a rotation sensor configured to detect a rotation between the common housing and the transmission element or between the common housing and the turntable.

8. The adaptor according to claim 1 , wherein the adapter comprises at least three object turntables which are arranged on a curved line or on a straight line.

9. The adaptor according to claim 1 , wherein the adaptor comprises a misalignment sensor and/or a misalignment unit.

10. The adaptor according to claim 1 , wherein the adaptor comprises a sensor for detecting an electrical field.

11. The adaptor according to claim 1 , wherein the coupler is arranged on a first side of the adaptor and wherein the at least two object turntables are arranged on a second side, opposite to the first side.

12. A system comprising an adaptor according to claim 1 and a CT apparatus comprising an X-ray source, an X-ray detector and the turntable.

13. A system comprising an adaptor and a CT apparatus comprising an X-ray source, an X-ray detector and the turntable; wherein the system further comprises a laser enabling the alignment of the adaptor with respect to the turntable and/or with respect to the center of the X-ray source; wherein the adaptor for a turntable of a CT system, comprising: at least two object turntables for at least two objects, the at least two object turntables are coupled to each other by a coupler such that the at least two object turntables rotate simultaneously; and a rotation transmission element configured to be coupled to a turntable of the CT system, coupled to the coupler and configured to transmit a rotation from the turntable of the CT system to the coupler in order to drive the at least two object turntables.

14. The system according to claim 12 , wherein the X-ray source and the X-ray detector define a X-Ray beam path comprising an aperture angle larger than 5°.

15. A method for reconstructing a CT model, the method comprising:

receiving a plurality of X-ray images from a CT system and receiving rotation information from a sensor of an adaptor for a turntable of a CT system; and

image processing the plurality of X-ray images taking the rotation information into account in order to output the CT model of at least two objects;

wherein the adaptor comprises at least two object turntables for at least two objects, the at least two object turntables are coupled to each other by a coupler such that the at least two object turntables rotate simultaneously; a rotation transmission element configured to be coupled to a turntable of the CT system, coupled to the coupler and configured to transmit a rotation from the turntable of the CT system to the coupler in order to drive the at least two object turntables; and

wherein the adaptor further comprises a common housing for the at least two object turntables, wherein the common housing is configured to support the at least two object turntables, and wherein the common housing is fixed by means of a rotation sensor, controller and a drive between the transmission element and the common housing or between the turntable and the common housing and/or wherein the common housing is configured to remain stable if the coupler and the at least two object turntables perform a rotation, and wherein the sensor is configured to detect a rotation of the coupler, wherein the drive is configured to rotate the common housing against the transmission element or against the turntable and wherein the controller is configured to control the drive such that the rotation of the coupler and the rotation caused by the drive balance out each other; or wherein the rotation transmission element comprises a shape enabling coupling to a standard object holder of the turntable of the CT system, and wherein the transmission element comprises an eccentric adaptor arranged between the standard object holder and the transmission element.

16. A non-transitory digital storage medium having a computer program stored thereon to perform a method for reconstructing a CT model, the method comprising:

receiving a plurality of X-ray images from a CT system and receiving rotation information from a sensor of an adaptor for a turntable system; and

image processing the plurality of X-ray images taking the rotation information into account in order to output the CT model of at least two objects,

when said computer program is run by a computer;

wherein the adaptor comprises at least two object turntables for at least two objects, the at least two object turntables are coupled to each other by a coupler such that the at least two object turntables rotate simultaneously; a rotation transmission element configured to be coupled to a turntable of the CT system, coupled to the coupler and configured to transmit a rotation from the turntable of the CT system to the coupler in order to drive the at least two object turntables; and

wherein the adaptor further comprises a common housing for the at least two object turntables, wherein the common housing is configured to support the at least two object turntables, and wherein the common housing is fixed by means of a rotation sensor, controller and a drive between the transmission element and the common housing or between the turntable and the common housing and/or wherein the common housing is configured to remain stable if the coupler and the at least two object turntables perform a rotation, and wherein the sensor is configured to detect a rotation of the coupler, wherein the drive is configured to rotate the common housing against the transmission element or against the turntable and wherein the controller is configured to control the drive such that the rotation of the coupler and the rotation caused by the drive balance out each other; or wherein the rotation transmission element comprises a shape enabling coupling to a standard object holder of the turntable of the CT system, and wherein the transmission element comprises an eccentric adaptor arranged between the standard object holder and the transmission element.

17. An apparatus for reconstructing a CT model, comprising:

an interface adapted for receiving a plurality of X-ray images;

an interface adapted for receiving rotation information from a rotation sensor of an adapter of a turntable system; and

a processor adapted for performing the image processing based on the plurality of X-ray images and the rotation information in order to output the CT model of at least two objects;

wherein the adaptor comprises at least two object turntables for at least two objects, the at least two object turntables are coupled to each other by a coupler such that the at least two object turntables rotate simultaneously; a rotation transmission element configured to be coupled to a turntable of the CT system, coupled to the coupler and configured to transmit a rotation from the turntable of the CT system to the coupler in order to drive the at least two object turntables; and wherein the adaptor further comprises a common housing for the at least two object turntables, wherein the common housing is configured to support the at least two object turntables, and wherein the common housing is fixed by means of a rotation sensor, controller and a drive between the transmission element and the common housing or between the turntable and the common housing and/or wherein the common housing is configured to remain stable if the coupler and the at least two object turntables perform a rotation, and wherein the sensor is configured to detect a rotation of the coupler, wherein the drive is configured to rotate the common housing against the transmission element or against the turntable and wherein the controller is configured to control the drive such that the rotation of the coupler and the rotation caused by the drive balance out each other; or wherein the rotation transmission element comprises a shape enabling coupling to a standard object holder of the turntable of the CT system, and wherein the transmission element comprises an eccentric adaptor arranged between the standard object holder and the transmission element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2020
From: SALAMON, MICHAEL; GABSTEIGER, FLORIAN; KREUTNER, CARINA; LEISNER, JOHANNES
To: FRAUNHOFER-GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V.
Reel/Frame 054038/0923 →
Continuity (2)
Continuation PCTEP2016076206 · Oct 31, 2016
Related Publication 20190250111A1 · Aug 15, 2019
Cited By (1)
US 12,268,939