Image generation apparatus

US10373349B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10373349-B2
Application numberUS-201515125608-A
CountryUS
Kind codeB2
Filing dateMar 18, 2015
Priority dateMar 26, 2014
Publication dateAug 6, 2019
Grant dateAug 6, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

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The invention relates to an image generation apparatus (1) for generating an image of an object. A reconstruction unit (10) reconstructs the image based on provided measured projection values such that costs defined by a cost function are reduced, wherein the cost function depends on differences between calculated projection values, which have been determined by simulating a forward projection through the image, and the provided measured projection values, and wherein a degree of dependence of the cost function on a respective difference depends on the respective difference. This can allow for a consideration of a degree of disturbance of the measured projection values by motion and/or by an incomplete illumination of the object during the reconstruction process, which can lead to a reconstruction of an image having an improved image quality.

First claim

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The invention claimed is: 1. An image generation apparatus for generating an image of an object, the image generation apparatus comprising: a detection device for providing measured projection values of the object, a computer for reconstructing the image based on the provided measured projection values such that costs defined by a cost function are reduced, wherein the cost function depends on differences between calculated projection values, which have been determined by simulating a forward projection through the image, and the provided measured projection values, and wherein the cost function depends a first difference of the differences weighted by a first weight and a second difference of the differences weighted by a second weight, and the second weight is smaller than the first weight. 2. The image generation apparatus as defined in claim 1 , wherein the cost function is adapted to depend stronger on a respective difference relative to the other differences, if the respective difference is smaller than a threshold, and to depend less on a respective difference relative to the other differences, if the respective difference is larger than the threshold. 3. The image generation apparatus as defined in claim 2 , wherein the threshold depends on the standard deviation of the measured projection value to which the respective difference corresponds. 4. The image generation apparatus as defined in claim 1 , wherein the cost function is adapted to depend quadratically on a respective difference, if the respective difference is smaller than a threshold, and to depend linearly on a respective difference, if the respective difference is larger than the threshold. 5. The image generation apparatus as defined in claim 1 , wherein the cost function is adapted such that the degree of dependence of the cost function on the respective difference further depends on the standard deviation of the measured projection value to which the respective difference corresponds. 6. The image generation apparatus as defined in claim 1 , wherein the cost function is adapted to further depend on the standard deviation of the measured projection value to which the respective difference corresponds, wherein the cost function is adapted to depend stronger on the standard deviation of the measured projection value to which the respective difference corresponds, if the respective difference is smaller than a threshold, and to depend less on the standard deviation of the measured projection value to which the respective difference corresponds, if the respective difference is larger than the threshold. 7. The image generation apparatus as defined in claim 1 , wherein each of the measured projection values is generated based on a measurement of radiation, which has been generated by a radiation source, after having traversed an object along a radiation path. 8. The image generation apparatus as defined in claim 7 , wherein for at least one of the radiation paths, plural projection values are generated, each projection value being generated in accordance with one of plural materials. 9. The image generation apparatus as defined in claim 8 , wherein the cost function depends on a transform of a vector specifying the differences between the measured projection values and the calculated projection values for one radiation path and the plural materials or on a set of transforms of vectors specifying the difference between the measured and the calculated projection values for plural radiation paths and the plural materials, each transform being calculated based on eigenvectors of a covariance matrix indicating covariances between the measurements of projection values for the plural materials. 10. The image generation apparatus as defined in claim 1 , wherein each set of differences includes differences calculated for projection values measured at adjacent locations and/or consecutive detection times. 11. An image generation method for generating an image of an object, the image generation method comprising: providing measured projection values of the object by a measured projection values providing unit, reconstructing the image based on the provided measured projection values such that costs defined by a cost function are reduced by a reconstruction unit, wherein the cost function depends on differences between calculated projection values, which have been determined by simulating a forward projection through the image, and the provided measured projection values, and wherein the cost function depends a first difference of the differences weighted by a first weight and a second difference of the differences weighted by a second weight, and the second weight is smaller than the first weight. 12. A non-transitory computer readable medium storing instructions that when executed by a computer cause the computer to perform a method comprising: providing measured projection values of the object by a measured projection values providing unit, reconstructing the image based on the provided measured projection values such that costs defined by a cost function are reduced by a reconstruction unit, wherein the cost function depends on differences between calculated projection values, which have been determined by simulating a forward projection through the image, and the provided measured projection values, and wherein the cost function depends a first difference of the differences weighted by a first weight and a second difference of the differences weighted by a second weight, and the second weight is smaller than the first weight. 13. The method as defined in claim 11 , wherein the cost function is adapted to depend stronger on a respective difference relative to the other differences, if the respective difference is smaller than a threshold, and to depend less on a respective difference relative to the other differences, if the respective difference is larger than the threshold. 14. The method as defined in claim 13 , wherein the threshold depends on the standard deviation of the measured projection value to which the respective difference corresponds. 15. The method as defined in claim 11 , wherein the cost function is adapted to depend quadratically on a respective difference, if the respective difference is smaller than a threshold, and to depend linearly on a respective difference, if the respective difference is larger than the threshold. 16. The method as defined in claim 11 , wherein the cost function is adapted such that the degree of dependence of the cost function on the respective difference further depends on the standard deviation of the measured projection value to which the respective difference corresponds. 17. The method as defined in claim 11 , wherein the cost function is adapted to further depend on the standard deviation of the measured projection value to which the respective difference corresponds, wherein the cost function is adapted to depend to a greater degree on the standard deviation of the measured projection value to which the respective difference corresponds, if the respective difference is smaller than a threshold, and to depend to a lesser degree on the standard deviation of the measured projection value to which the respective difference corresponds, if the respective difference is larger than the threshold. 18. The method as defined in claim 11 , wherein each of the measured projection values is generated based on a measurement of radiation, which has been generated by a radiation source, after having traversed an object along a radiation path. 19. The me

Assignees

Inventors

Classifications

  • G06T12/20Primary

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

  • Dual energy · CPC title

  • G06T11/006Primary

    Physics · mapped topic

  • Iterative · CPC title

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What does patent US10373349B2 cover?
The invention relates to an image generation apparatus (1) for generating an image of an object. A reconstruction unit (10) reconstructs the image based on provided measured projection values such that costs defined by a cost function are reduced, wherein the cost function depends on differences between calculated projection values, which have been determined by simulating a forward projection …
Who is the assignee on this patent?
Koninklijke Philips Nv
What technology area does this patent fall under?
Primary CPC classification G06T12/20. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Aug 06 2019 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 7 related publications on this page (citations in our corpus or others sharing the same primary CPC).