Fluoroscopic image density correction method, non-destructive inspection method, and image processing device
US-9524546-B2 · Dec 20, 2016 · US
US10224170B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10224170-B2 |
| Application number | US-201715822219-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 27, 2017 |
| Priority date | Dec 30, 2013 |
| Publication date | Mar 5, 2019 |
| Grant date | Mar 5, 2019 |
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The present invention provides an X-ray generating apparatus and an X-ray fluoroscopy imaging system comprising the same. The X-ray generating apparatus comprises: an electron accelerator, an electron emission unit, and a target; and a shielding and collimating device, including a shielding structure and multiple collimators arranged in the shielding structure, wherein the collimators are thin gaps extending from the target to an exterior surface of the shielding structure and having an axis transverse an electron beam shooting the target, and at least two collimators forming different angles with the electron beam are arranged on the same side of a plane contains the electron beam shooting the target, and the planes where the collimators locate form angles from 30 degrees to 150 degrees with the electron beam shooting the target, to draw out planar beams having different draw-out angles, each having uniform intensity distribution in its respective plane.
Opening claim text (preview).
What is claimed is: 1. An X-ray generating apparatus, comprising: an electron accelerator including an electron acceleration unit, an electron emission unit, and a target; and a shielding and collimating device, including a shielding structure and multiple collimators arranged in the shielding structure, wherein the target is surrounded by the shielding structure, the collimators are thin gaps extending from the target to an exterior surface of the shielding structure and having an axis transverse an electron beam shooting the target, and at least two collimators forming different angles with the electron beam are arranged on the same side of a plane contains the electron beam shooting the target, and the planes where the collimators locate form angles from 30 degrees to 150 degrees with the electron beam shooting the target, to draw out planar beams having different draw-out angles, each having uniform intensity distribution in its respective plane, wherein the planar beams have energy difference therebetween. 2. The X-ray generating apparatus according to claim 1 , wherein, the electron accelerator has energy of above 2 MeV. 3. The X-ray generating apparatus according to claim 1 , wherein, each of the collimator is a planar fan-shaped gap arranged in the shielding structure. 4. The X-ray generating apparatus according to claim 1 , wherein, the electron accelerator further comprises an electron drift segment connected between the electron acceleration unit and the target. 5. The X-ray generating apparatus according to claim 4 , wherein, the electron drift segment is a small diameter conduit, wherein the small diameter conduit has an inner diameter larger than the diameter of the electron beam and an outer diameter less than the outer diameter of the electron acceleration unit. 6. The X-ray generating apparatus according to claim 1 , wherein, the shielding structure is made from a material that is able to block and absorb most of undesired X-rays. 7. The X-ray generating apparatus according to claim 1 , wherein, the target is a planer structure, a spherical surface structure, or other curved surface structure. 8. The X-ray generating apparatus according to claim 1 , wherein, the positions of the multiple collimators are symmetrical with respect to a plane passing the target point and perpendicular to the electron beam. 9. The X-ray generating apparatus according to claim 1 , wherein, the shielding and collimating device consists of two collimators in a direction forming an angle less than 90° with said electron beam and in a direction forming an angle larger than 90° with said electron beam, to draw out two planar fan-shaped beams, each having uniform intensity distribution in its respective plane, wherein the two planar fan-shaped beams have energy difference therebetween. 10. An X-ray fluoroscopy imaging system, comprising: an X-ray generating apparatus, having: an electron accelerator including an electron acceleration unit, an electron emission unit, and a target; and a shielding and collimating device, including a shielding structure and multiple collimators arranged in the shielding structure, wherein the target is surrounded by the shielding structure, the collimators are thin gaps extending from the target to an exterior surface of the shielding structure and having an axis transverse an electron beam shooting the target, and at least two collimators forming different angles with the electron beam are arranged on the same side of a plane contains the electron beam shooting the target, and the planes where the collimators locate form angles from 30 degrees to 150 degrees with the electron beam shooting the target, to draw out planar beams having different draw-out angles, each having uniform intensity distribution in its respective plane, wherein the planar beams have energy difference therebetween.
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