A Hybrid Flat Panel Detector For Cone Beam CT Systems
US-2020268330-A1 · Aug 27, 2020 · US
US11152129B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11152129-B2 |
| Application number | US-201816637876-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 14, 2018 |
| Priority date | Aug 14, 2017 |
| Publication date | Oct 19, 2021 |
| Grant date | Oct 19, 2021 |
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An anti-scatter grid (ASG) for X-ray imaging with a surface (S) formed from a plurality of strips (LAM). The plurality of strips including at least two guard strips (L i ,L i+1 ) that are thicker in a direction parallel to said surface than one or more strips (l i ) of said plurality of strips (LAM). The one or more strips (l i ) being situated in between said two guard strips (L i ,L i+1 ).
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The invention claimed is: 1. An anti-scatter grid for a photon counting X-ray detector, comprising: a surface; and a plurality of strips forming the surface, the plurality of strips including at least two guard strips that are thicker in a direction parallel to the surface than one or more other strips of the plurality of strips, the one or more other strips located between the at least two guard strips, wherein, in the direction parallel to the surface, one guard strip of the at least two guard strips is overlapped with an inter-space between two adjacent detector pixels and is overlapped with a critical zone at the inter-space, the one guard strip of the least two guard strips has a thickness in the direction parallel to the surface, the thickness of the one guard strip corresponding to a size of the critical zone at the inter-space, and in the critical zone, a fraction of a cloud is directed by an E-field to one detector pixel of the two adjacent detector pixels and another fraction of the cloud is directed to the other detector pixel of the two adjacent detector pixels. 2. The anti-scatter grid according to claim 1 , wherein the at least two guard strips or the at least one or more other strips are formed from a foil. 3. The anti-scatter grid according to claim 2 , wherein the foil is metallic. 4. The anti-scatter grid according to claim 3 , wherein the foil includes at least one of Molybdenum, Lead, and Tungsten. 5. The anti-scatter grid according to claim 1 , comprising an aspect ratio of 10 to 40. 6. The anti-scatter grid according to claim 1 , wherein the thickness of the guard strip is between 20 μm and 200 μm. 7. The anti-scatter grid according to claim 1 , wherein a thickness of at least one of the one or more other strips is between 5 μm and 50 μm. 8. The anti-scatter grid according to claim 1 , wherein a distance between the at least two guard strips corresponds to a size of an average charge cloud diameter or an average spread of light photons formed in the X-ray detector. 9. An imaging apparatus, comprising: a photon-counting X-ray detector having at least one detector pixel, the at least one detector pixel including two adjacent detector pixels; and an anti-scatter grid comprising: a surface; and a plurality of strips forming the surface, the plurality of strips including at least two guard strips that are thicker in a direction parallel to the surface than one or more other strips of the plurality of strips, the one or more other strips located between the at least two guard strips, wherein, in the direction parallel to the surface, one guard strip of the at least two guard strips is overlapped with an inter-space between two adjacent detector pixels and is overlapped with a critical zone at the inter-space, the one guard strip of the least two guard strips has a thickness in the direction parallel to the surface, the thickness of the one guard strip corresponding to a size of the critical zone at the inter-space, and in the critical zone, a fraction of a cloud is directed by an E-field to one detector pixel of the two adjacent detector pixels and another fraction of the cloud is directed to the other detector pixel of the two adjacent detector pixels. 10. The imaging apparatus according to claim 9 , wherein at least one of the at least two guard strips is positioned between the two adjacent detector pixels to reduce a likelihood for detection of same X-ray radiation event by both of the two detector pixels. 11. The imaging apparatus according to claim 9 , wherein a size of the at least one detector pixel is between 50 μm and 1 mm. 12. The imaging apparatus according to claim 9 , comprising at least one processor configured to perform as an event counter. 13. The imaging apparatus according to claim 12 , wherein the event counter is configured to support spectral imaging. 14. The imaging apparatus according to claim 9 , wherein the imaging apparatus is a computed tomography scanner. 15. A method of manufacturing an anti-scatter grid of a photon-counting X-ray detector, the scatter grid to include strips of two different thicknesses, the method comprising: providing a surface; providing a plurality of strips to form the surface, the plurality of strips including at least two guard strips that are thicker in a direction parallel to the surface than one or more other strips of the plurality of strips, the one or more other strips located between the at least two guard strips, wherein, in the direction parallel to the surface, one guard strip of the at least two guard strips is overlapped with an inter-space between two adjacent detector pixels and is overlapped with a critical zone at the inter-space; determining a size of the critical zone at the inter-space, wherein in the critical zone, a fraction of a cloud is directed by an E-field to one detector pixel of the two adjacent detector pixels and another fraction of the cloud is directed to the other detector pixel of the two adjacent detector pixels; and based on the determined size, specifying a thickness of the one guard strip of the at least two guard strips.
Auxiliary details, e.g. casings, cooling, damping or insulation against damage by, e.g. heat, pressure or the like · CPC title
using multiple collimators, e.g. Bucky screens; other devices for eliminating undesired or dispersed radiation · CPC title
using a combination of a scintillator and photodetector which measures the means radiation intensity · CPC title
using tomography, e.g. computed tomography [CT] · CPC title
Electrode arrangements, e.g. continuous or parallel strips or the like · CPC title
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