X-ray diagnostic apparatus
US-2015374326-A1 · Dec 31, 2015 · US
US9226720B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9226720-B2 |
| Application number | US-201213679949-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 16, 2012 |
| Priority date | Nov 16, 2012 |
| Publication date | Jan 5, 2016 |
| Grant date | Jan 5, 2016 |
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Official abstract text for this publication.
A radiographic apparatus comprising, a radiation source for emitting radiation, a radiation detecting device having a detecting surface for detecting radiation, an image generating device for generating images in accordance with detection data outputted from the radiation detecting device, a collimator for restricting spread of a radiation beam emitted from the radiation source, an opening-degree obtaining device for obtaining a degree of opening of the collimator and a display device for displaying a radiation-irradiation area on the image, the opening-degree obtaining device determining the radiation-irradiation area to be displayed on the image in accordance with a relationship between a width of the radiation beam contained in the image obtained in advance by two or more degrees of opening of the collimator through radiation irradiation and the degrees of opening of the collimator as well as the current degree of opening of the collimator.
Opening claim text (preview).
The invention claimed is: 1. A radiographic apparatus comprising: a radiation source for emitting radiation; a radiation detecting device having a detecting surface for detecting radiation; a top board for supporting a subject placed thereon between the radiation source and the radiation detecting device; a radiation-source inclining device for inclining the radiation source relative to the radiation detecting device; a radiation-source inclination controlling device for controlling the radiation-source inclining device; an image generating device for generating images in accordance with detection data outputted from the radiation detecting device; a collimator for restricting spread of a radiation beam emitted from the radiation source; a console for inputting an operation's instruction; an opening-degree obtaining device for obtaining a degree of opening of the collimator in accordance with the operator's instruction inputted by the console; a correcting device for determining a value of a width of the radiation beam corresponding to a current degree of opening using a relationship between widths of the radiation beam contained in the image and degrees of opening, the relationship being obtained in advance through radiation irradiation; and a display device for displaying a radiation-irradiation area in the radiation detecting device in accordance with the determined value of the width, a relationship between the value of the width and the degree of opening being obtained by inclining while moving the radiation source close to or away from one end of the top board in the longitudinal direction relative to the radiation detecting device to perform radiography for a plurality of times. 2. The radiographic apparatus according to claim 1 , wherein the relationship between the widths of the radiation beam and the degrees of opening of the collimator is a correlated table representing a relationship between the widths of the radiation beam contained in the image obtained through radiation irradiation and the degrees of opening of the collimator. 3. The radiographic apparatus according to claim 2 , further comprising: a correlated-table interpolating device for interpolating the correlated table to generate a new correlated table having an increased number of components than that in the correlated table. 4. The radiographic apparatus according to claim 1 , wherein the relationship between the widths of the radiation beam and the degrees of opening of the collimator is a relational expression having a relationship between the widths of the radiation beam contained in the image obtained through radiation irradiation and the degrees of opening of the collimator. 5. The radiographic apparatus according to claim 1 , further comprising: a top-board inclining device for inclining the top board with a positional relationship between the radiation source and the radiation detecting device being maintained; and a top-board inclination controller for controlling the top-board inclining device, wherein the relationship between the widths of the radiation beam and the degrees of opening of the collimator is obtained through conducting radiography two or more times while the top board is inclined. 6. A radiographic apparatus comprising: a radiation source for emitting radiation; a radiation detecting device having a detecting surface for detecting radiation; a top board for supporting a subject placed thereon between the radiation source and the radiation detecting device; a radiation-source inclining device for inclining the radiation source relative to the radiation detecting device; a radiation-source inclination controlling device for controlling the radiation-source inclining device; an image generating device for generating images in accordance with detection data outputted from the radiation detecting device; a collimator for restricting spread of a radiation beam emitted from the radiation source; a console for inputting an operation's instruction; a controller configured to: obtain a degree of opening of the collimator in accordance with the operator's instruction inputted by the console; and determine a value of a width of the radiation beam corresponding to a current degree of opening using a relationship between widths of the radiation beam contained in the image and degrees of opening, the relationship being obtained in advance through radiation irradiation; and a display for displaying a radiation-irradiation area in the radiation detecting device in accordance with the determined value of the width, the relationship between the value of the width and the degree of opening being obtained by inclining while moving the radiation source close to or away from one end of the top board in the longitudinal direction relative to the radiation detecting device to perform radiography for a plurality of times.
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