Imaging tomosynthesis system, in particular mammography system

US9401019B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9401019-B2
Application numberUS-201514670750-A
CountryUS
Kind codeB2
Filing dateMar 27, 2015
Priority dateMar 27, 2014
Publication dateJul 26, 2016
Grant dateJul 26, 2016

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Abstract

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An imaging tomosynthesis system, in particular a mammography system, includes a computer system which generates x-ray projections of an examination object from a plurality of projection angles. The system further reconstructs a stack of tomosynthetic slice images, generates at least one overview image of density values of an examination object from the tomosynthetic image data, selects characteristic density values in the stack at at least one plane position, and determines the geometric level of the at least one selected characteristic density value. The overview image is then displayed with a color value correlated to the geometric level of the at least one characteristic density value.

First claim

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The invention claimed is: 1. An imaging tomosynthesis system, comprising: an emitter/detector system for scanning an examination object from a plurality of projection angles and configured for generating tomosynthetic image data of the examination object; a computer system including at least one display unit and a storage medium for storing program code configured, during operation, to execute the following method: generating x-ray projections of the examination object by way of the emitter/detector system from a plurality of projection angles, which are suitable for generating tomosynthetic image data from density values of the examination object; reconstructing a stack of tomosynthetic slice image data, which respectively extend in a plane through the examination object and which correspond to slices at different levels perpendicular to the respective plane, from the x-ray projections; generating an overview image of density values of the examination object from the tomosynthetic representations; selecting respectively one characteristic density value in the stack at at least one plane position of the tomosynthetic slice images; determining a level of the at least one selected characteristic density value; wherein the density values and the level are represented in a pixel by coding in values of a color space used for the pixel representation; and displaying the overview image of the density values on the at least one display device and simultaneously displaying the level of the at least one characteristic density value as a color value correlated to the level. 2. The imaging tomosynthesis system according to claim 1 , wherein the overview image is an MIP (maximum intensity projection) display. 3. The imaging tomosynthesis system according to claim 1 , wherein the characteristic density values are maximum density values at the respective plane position. 4. The imaging tomosynthesis system according to claim 1 , which comprises a switching element enabling the color information in respect of the level of the characteristic density values to be selectively switched on or off. 5. The imaging tomosynthesis system according to claim 1 , wherein the density values and the level of the at least one characteristic density value are represented as code in a color space. 6. The imaging tomosynthesis system according to claim 1 , wherein the color space provides hues and brightness values for the representation of a pixel, with brightness values being assigned to the density and hues being assigned to the level. 7. The imaging tomosynthesis system according to claim 6 , wherein the color space is selected from the group of color spaces consisting of an HSV color space, an HSB color space and an HSI color space. 8. The imaging tomosynthesis system according to claim 1 , which comprises a user interface for selecting at least two plane positions in the overview display. 9. The imaging tomosynthesis system according to claim 8 , wherein, by selecting two plane positions with characteristic density values, the three-dimensional distance between the spatial positions of the characteristic density values is determined and displayed. 10. The imaging tomosynthesis system according to claim 8 , wherein: an operator is enabled to select a region of displayed density values on the overview display; said computer system is configured to identify density values that are present in the selected region; and to ascertain boundary surfaces in three dimensions that include the positions of the identified density values. 11. The imaging tomosynthesis system according to claim 10 , wherein the boundary surfaces are used for representing a region containing the identified density values during the display of density values determined by way of selection along a straight line passing through the reconstructed density values and/or of reconstructed density values. 12. The imaging tomosynthesis system according to claim 1 configured as a mammography system. 13. An imaging tomosynthesis system, comprising: an emitter/detector system for scanning an examination object from a plurality of projection angles and configured for generating tomosynthetic image data of the examination object; a computer system including at least one display unit and a storage medium for storing program code configured, during operation, to execute the following method: generating x-ray projections of the examination object by way of the emitter/detector system from a plurality of projection angles, which are suitable for generating tomosynthetic image data from density values of the examination object; reconstructing a stack of tomosynthetic slice image data, which respectively extend in a plane through the examination object and which correspond to slices at different levels perpendicular to the respective plane, from the x-ray projections; generating an overview image of density values of the examination object from the tomosynthetic representations; selecting respectively one characteristic density value in the stack at at least one plane position of the tomosynthetic slice images; determining a level of the at least one selected characteristic density value; and displaying the overview image of the density values on the at least one display device and simultaneously displaying the level of the at least one characteristic density value as a color value correlated to the level, and thereby displaying only the plane positions with maximum density values above a prescribed threshold with the additional level information. 14. The imaging tomosynthesis system according to claim 13 , which comprises a user interface for entering the prescribed threshold. 15. The imaging tomosynthesis system according to claim 13 , which comprises a user interface for selecting at least two plane positions in the overview display. 16. The imaging tomosynthesis system according to claim 13 , wherein the overview image is an MIP (maximum intensity projection) display. 17. The imaging tomosynthesis system according to claim 13 , wherein the characteristic density values are maximum density values at the respective plane position. 18. The imaging tomosynthesis system according to claim 13 , which comprises a switching element enabling the color information in respect of the level of the characteristic density values to be selectively switched on or off. 19. The imaging tomosynthesis system according to claim 13 , wherein the density values and the level of the at least one characteristic density value are represented as code in a color space. 20. An imaging tomosynthesis system, comprising: an emitter/detector system for scanning an examination object from a plurality of projection angles and configured for generating tomosynthetic image data of the examination object; a computer system including at least one display unit and a storage medium for storing program code configured, during operation, to execute the following method: generating x-ray projections of the examination object by way of the emitter/detector system from a plurality of projection angles, which are suitable for generating tomosynthetic image data from density values of the examination object; reconstructing a stack of tomosynthetic slice image data, which respectively extend in a plane through the examination object and which correspond to slices at different levels perpendicular to the respective plane, from the x-ray projections; generating an overview image of density values of the examination object f

Assignees

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Classifications

  • Image post-processing, e.g. metal artefact correction · CPC title

  • Inverse problem, i.e. transformations from projection space into object space · CPC title

  • extracting a diagnostic or physiological parameter from medical diagnostic data · CPC title

  • characterised by the way in which colour is displayed {(details of colour display specific for CRTs G09G1/28; specific for flat matrix panels other than liquid crystal displays G09G3/2003; specific for liquid crystal displays G09G3/3607)} · CPC title

  • G06T7/0012Primary

    Biomedical image inspection · CPC title

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What does patent US9401019B2 cover?
An imaging tomosynthesis system, in particular a mammography system, includes a computer system which generates x-ray projections of an examination object from a plurality of projection angles. The system further reconstructs a stack of tomosynthetic slice images, generates at least one overview image of density values of an examination object from the tomosynthetic image data, selects characte…
Who is the assignee on this patent?
Siemens Ag
What technology area does this patent fall under?
Primary CPC classification G06T7/0012. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jul 26 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).