Radiographic imaging apparatus
    2.
    发明授权

    公开(公告)号:US10856825B2

    公开(公告)日:2020-12-08

    申请号:US15922977

    申请日:2018-03-16

    Abstract: [Purpose] To provide a radiographic imaging apparatus capable of quickly acquiring three-dimensional image data of a target-of-interest when performing an operative procedure such as interventional treatment[Solving Means] A region-of-interest extraction unit 39 extracts a predetermined region as a region-of-interest from each of a series of two-dimensional images. The reconstruction unit 41 reconstructs a three-dimensional image of a region including a stent based on each of the images of the portion corresponding to the region-of-interest. That is, since the reconstruction unit 41 reconstructs each of a series of two-dimensional images P using an image of the region-of-interest corresponding to a part of the whole, the time required to reconstruct the three-dimensional image of the region including the stent can be shortened. As a result, since three-dimensional image data can be quickly obtained for the region requiring the reconstruction, the time required for diagnosis can be greatly shortened, which can reduce the burden on a surgeon and a subject.

    Radiography apparatus
    3.
    发明授权

    公开(公告)号:US10980498B2

    公开(公告)日:2021-04-20

    申请号:US16066568

    申请日:2015-12-28

    Abstract: A radiography apparatus sequentially determines, on the basis of the positions of markers as time-sequential feature points (of a plurality of frames), positions at which the markers in the frames are displayed. This makes it possible to display a moving object while the position, direction and size thereof are properly set. Another advantage is that when a plurality of markers are extracted, information relating to the direction and size of the object is retained and the proximal and distal directions of the object and the length of a device (e.g., stent) can be intuitively determined from an image. Since positioning is performed using the plurality of positions of markers and the plurality of display positions, the position and direction of a corrected image to be finally displayed can also be set properly.

    Radiographic Imaging Apparatus
    4.
    发明申请

    公开(公告)号:US20190282190A1

    公开(公告)日:2019-09-19

    申请号:US15922977

    申请日:2018-03-16

    Abstract: [Purpose] To provide a radiographic imaging apparatus capable of quickly acquiring three-dimensional image data of a target-of-interest when performing an operative procedure such as interventional treatment[Solving Means] A region-of-interest extraction unit 39 extracts a predetermined region as a region-of-interest from each of a series of two-dimensional images. The reconstruction unit 41 reconstructs a three-dimensional image of a region including a stent based on each of the images of the portion corresponding to the region-of-interest. That is, since the reconstruction unit 41 reconstructs each of a series of two-dimensional images P using an image of the region-of-interest corresponding to a part of the whole, the time required to reconstruct the three-dimensional image of the region including the stent can be shortened. As a result, since three-dimensional image data can be quickly obtained for the region requiring the reconstruction, the time required for diagnosis can be greatly shortened, which can reduce the burden on a surgeon and a subject.

    Radiation fluoroscopy apparatus
    6.
    发明授权

    公开(公告)号:US10512793B2

    公开(公告)日:2019-12-24

    申请号:US15887617

    申请日:2018-02-02

    Abstract: A radiation fluoroscopy apparatus detects a marker and includes a control element, an image generation element 61 that generates an image including an embedded marker inside the body of the subject based on a transmitted X-ray. A device candidate detection element 62 detects the candidate of the marker, the local structure detection element 63 detects the local structure in the target region in a proximity of the candidate point of the marker, the device determination element 64 determines whether the local structure is the device such as the marker or not, the device location acquisition element 66 acquires the gravity center coordinate of the local structure, and the device tracking element 67 tracks the marker based on the location of the marker in each frame.

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