IP Library › Patent Application 18645647
Patent Application
App. No. 18/645,647

PHOTON COUNTING CT APPARATUS AND SUBSTANCE DECOMPOSITION METHOD

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Quick Facts
Patent No.
US None
App. No.
18/645,647
Abstract

A photon counting CT apparatus and a substance decomposition method can be provided. A storage unit is configured to acquire an energy spectrum of an X-ray transmitted through a calibration member in which a first base substance and a second base substance are combined, while changing a thickness of the first base substance and a thickness of the second base substance, with a reference X-ray dose, and store the energy spectrum as calibration data in advance. A correction table creation unit acquires the energy spectrum of the X-ray transmitted through the calibration member while changing the thickness of the first base substance, thickness of the second base substance, and X-ray dose, and creates a correction table indicating a relationship between the number of X-ray photons and the X-ray dose for each energy bin. An image generation unit generates a tomographic image decomposed for each substance based on the calibration data and the correction table.

Claims (14)

1 . A photon counting CT apparatus provided with an X-ray source that irradiates a subject with an X-ray, a photon counting type detector that detects the X-ray and outputs a signal corresponding to photon energy of the X-ray, and an image generation unit that generates a tomographic image of the subject based on the signal output by the photon counting type detector, the photon counting CT apparatus comprising:

a storage unit configured to acquire an energy spectrum of an X-ray transmitted through a calibration member in which a first base substance and a second base substance, which are known substances, are combined, while changing a thickness of the first base substance and a thickness of the second base substance, with a reference X-ray dose, and store the energy spectrum as calibration data in advance;

a correction table creation unit configured to acquire the energy spectrum of the X-ray transmitted through the calibration member while changing the thickness of the first base substance, the thickness of the second base substance, and the X-ray dose, and create a correction table indicating a relationship between the number of X-ray photons and the X-ray dose for each energy bin; and

an image generation unit configured to generate a tomographic image decomposed for each substance based on the calibration data and the correction table.

2 . The photon counting CT apparatus according to claim 1 ,

wherein the image generation unit corrects the calibration data based on the correction table and reference data, and performs substance decomposition on projection data of the subject by using the calibration data after correction.

3 . The photon counting CT apparatus according to claim 1 ,

wherein the image generation unit corrects projection data of the subject based on the correction table and reference data, and performs substance decomposition on the projection data after correction by using the calibration data.

4 . The photon counting CT apparatus according to claim 1 ,

wherein the correction table creation unit acquires the energy spectrum of the X-ray transmitted through the calibration member within a range of a fluctuation over time in the X-ray dose.

5 . A substance decomposition method using a photon counting CT apparatus provided with an X-ray source that irradiates a subject with an X-ray, a photon counting type detector that detects the X-ray and outputs a signal corresponding to photon energy of the X-ray, and an image generation unit that generates a tomographic image of the subject based on the signal output by the photon counting type detector, the substance decomposition method comprising:

acquiring an energy spectrum of an X-ray transmitted through a calibration member in which a first base substance and a second base substance, which are known substances, are combined, while changing a thickness of the first base substance and a thickness of the second base substance, with a reference X-ray dose, and storing the energy spectrum as calibration data in advance;

acquiring the energy spectrum of the X-ray transmitted through the calibration member while changing the thickness of the first base substance, the thickness of the second base substance, and the X-ray dose, and creating a correction table indicating a relationship between the number of X-ray photons and the X-ray dose for each energy bin; and

generating a tomographic image decomposed for each substance based on the calibration data and the correction table.

Assignments (2)
MERGER Recorded Aug 9, 2024
From: FUJIFILM HEALTHCARE CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 068242/0301 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2024
From: YOKOI, KAZUMA
To: FUJIFILM HEALTHCARE CORPORATION
Reel/Frame 067226/0806 →