IP Library Granted Patent US 11,490,865
Granted Patent B2
US 11,490,865 · App. 16/649,603 · Granted Nov 8, 2022

C-arm X-ray apparatus

Inventor: Zahra Mohammadi (Erlangen, DE)
Assignee: ESSPEN GmbH
A61B6/4028A61B6/025A61B6/4007A61B6/4441H01J35/065H01J35/24H01J35/26H05G1/70A61B6/035A61B6/4405A61B2560/0437H01J2201/30469H05G1/58
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Quick Facts
Patent No.
US 11,490,865
App. No.
16/649,603
Granted
Nov 8, 2022
Kind
B2
Abstract

A C-arm X-ray apparatus includes an x-ray emitter ( 5 ) and an X-ray detector ( 4 ) which are maintained on a C-arm ( 2 ) mounted on a reference plane. The x-ray emitter ( 5 ) has nanorods as electron emitters and has an elongated structure which is at least partially aligned along a surface normal of the reference plane.

Claims (28)

1. A C-arm X-ray apparatus comprising an X-ray emitter and an X-ray detector, which are held on a C-shaped arm extending in a reference plane, wherein the X-ray emitter includes nanorods as electron emitters and defines an elongate structure which is at least partially oriented along a surface normal to the reference plane;

wherein the X-ray emitter rotates relative to the reference plane, and the X-ray detector rotates relative to the reference plane, wherein the X-ray emitter and the X-ray detector are coaxially aligned and rotate about a joint axis of rotation passing through the X-ray emitter and the X-ray detector, and wherein the X-ray emitter, the X-ray detector, and the joint axis of rotation are positioned in the reference plane of the C-shaped arm.

2. The X-ray apparatus according to claim 1 , wherein the X-ray emitter has a straight elongate shape.

3. The X-ray apparatus according to claim 1 , wherein the X-ray emitter is annular, wherein two tangents placed onto the X-ray emitter each represent a surface normal to the reference plane.

4. The X-ray apparatus according to claim 1 , wherein the X-ray emitter has a polygonal shape.

5. The X-ray apparatus according to claim 1 , wherein an entire extension of the X-ray emitter, as measured in each section of the elongate structure in a longitudinal direction, is at least four times a diameter of the cross section of the X-ray emitter as measured across the elongate structure.

6. The X-ray apparatus according to claim 1 , wherein carbon nanotubes (CNT) are provided as nanorods for the emission of electrons.

7. The X-ray apparatus according to claim 6 , wherein at least a part of the nanorods is configured as single or multi-wall carbon nanotubes or single or multi-wall heteronitrogen carbon nanotubes.

8. The X-ray apparatus according to claim 6 , wherein at least a part of the nanorods contains borides of rare earth metals, metal oxides, metal sulfides, nitrides, carbides, or silicon.

9. The X-ray apparatus according to claim 6 , wherein the nanorods have a length of less than 20 μm and a diameter of less than 10 nm, wherein a density relative to an area of a cathode configured for emission of electrodes of at least 10 6 nanorods per cm 2 .

10. The X-ray apparatus according to claim 1 , wherein the X-ray emitter is annular or polygonal and has a cathode which contains nanorods, and wherein an additional X-ray emitter has a cathode which contains nanorods.

11. The X-ray apparatus according to claim 1 , wherein the X-ray emitter and the X-ray detector are electronically synchronized with respect to rotations about the axis of rotation.

12. The X-ray apparatus according to claim 1 , wherein the C-shaped arm is adjusted in a tangential direction, about an imaginary pivot axis oriented transversely to the reference plane.

13. A method for operating the X-ray apparatus according to claim 12 , wherein multiple X-ray images are created which differ from each other, both with respect to a setting of the C-shaped arm in the tangential direction and with respect to an angular setting of the X-ray emitter and the X-ray detector relative to the axis of rotation located in the reference plane.

14. The method according to claim 13 , wherein when creating a set of X-ray images, the C-shaped arm is fixed in a first quantity of various positions with respect to adjustment in the tangential direction, and wherein X-ray images with a second quantity of various angular settings of X-ray emitter and X-ray detector are generated in each of the positions.

15. The X-ray apparatus according to claim 1 , wherein the joint axis of rotation of the X-ray emitter and the X-ray detector passes through a center of the X-ray emitter and the X-ray detector.

16. The X-ray apparatus according to claim 1 , wherein the C-shaped arm further rotates about a C-shaped arm tilt axis in the reference plane.

17. The X-ray apparatus according to claim 16 , wherein the C-shaped arm tilt axis extends horizontally in the reference plane.

18. The X-ray apparatus according to claim 16 , wherein the X-ray emitter lies in a plane transverse to the reference plane and normal to the C-shaped arm tilt axis.

19. The X-ray apparatus according to claim 16 , wherein the X-ray emitter has an elongate, curved shape and lies in a plane transverse to the reference plane and normal to the C-shaped arm tilt axis.

20. A C-arm X-ray apparatus comprising an X-ray emitter and an X-ray detector, which are held on a C-shaped arm extending in a reference plane, wherein the X-ray emitter includes nanorods as electron emitters and defines an elongate structure which is at least partially oriented along a surface normal to the reference plane;

wherein the X-ray emitter rotates, and the X-ray detector rotates, wherein the X-ray emitter and the X-ray detector are coaxially aligned and rotate about a joint axis of rotation passing through the X-ray emitter and the X-ray detector, and are positioned in the reference plane of the C-shaped arm;

wherein the X-ray emitter has a curved elongate shape which defines a plane orthogonal relative to the reference plane.

21. A C-arm X-ray apparatus comprising an X-ray emitter and an X-ray detector, which are held on a C-shaped arm extending in a reference plane, wherein the X-ray emitter includes nanorods as electron emitters and defines an elongate structure which is at least partially oriented along a surface normal to the reference plane;

wherein the X-ray emitter rotates, and the X-ray detector rotates, wherein the X-ray emitter and the X-ray detector are coaxially aligned and rotate about a joint axis of rotation passing through the X-ray emitter and the X-ray detector, and are positioned in the reference plane of the C-shaped arm;

wherein an additional X-ray emitter is provided in addition to the X-ray emitter containing nanorods, the additional X-ray emitter comprising carbon nanotubes (CNT).

22. The X-ray apparatus according to claim 21 , wherein the X-ray emitter is annular or polygonal, and wherein two tangents placed onto the X-ray emitter each represent a surface normal to the reference plane, and the additional X-ray emitter is arranged centrally relative to the annular or polygonal X-ray emitter.

23. The X-ray apparatus according to claim 21 , wherein the additional X-ray emitter has a rotating anode.

Assignments (3)
NUNC PRO TUNC ASSIGNMENT Recorded Aug 6, 2026
From: MOHAMMADI, ZAHRA, DR.
To: STRETTA IMAGING GMBH
Reel/Frame 075548/0754 →
NUNC PRO TUNC ASSIGNMENT Recorded Aug 12, 2025
From: ESSPEN GMBH
To: MOHAMMADI, ZAHRA, DR.
Reel/Frame 071992/0444 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2020
From: MOHAMMADI, ZAHRA
To: ESSPEN GMBH
Reel/Frame 053196/0210 →
Priority Claims (1)
DE 102017008921.3 · Sep 21, 2017 · national
Continuity (1)
Related Publication 20200284737A1 · Sep 10, 2020