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    • 6. 发明授权
    • Radiation tomography device
    • US10398401B2
    • 2019-09-03
    • US15307950
    • 2014-05-01
    • SHIMADZU CORPORATION
    • Tomoharu OkunoKen Shirota
    • A61B6/00A61B6/02
    • In a radiation tomography imaging device, the imaging range calculation element 35 calculates a possible imaging range of the FPD 5 based on the imaging distance G, the irradiation swing angle θ and the movable range SP of the X-ray tube 3. The operator can preliminarily calculate the possible imaging range of the radiation detection means prior to the X-ray tomography imaging because the imaging distance, the irradiation swing angle, and the movable range SP are all predetermined parameters. The possible imaging range FP of the FPD 5 is the positional range of the FPD 5 in which the X-ray tube 3 can acquire the X-ray tomography image without moving the X-ray tube 3 to the outside of movable range. Therefore, the radiation tomography imaging can start the X-ray tomography by assuredly moving the FPD 5 within the possible imaging range by referring to the preliminarily calculated possible imaging range of the FPD 5. As results, an incident in which the X-ray tube 3 moves out of the movable range SP and interferes the floor surface W and so forth can be avoided, so that the X-ray tomography imaging can be performed adequately.
    • 7. 发明授权
    • Radiographic apparatus
    • 射线照相设备
    • US09592015B2
    • 2017-03-14
    • US14366639
    • 2012-12-05
    • SHIMADZU CORPORATION
    • Masahiro KawanoTomoharu Okuno
    • A61B6/08A61B6/06A61B6/10A61B6/00
    • A61B6/08A61B6/06A61B6/10A61B6/4283A61B6/542
    • The disclosure provides a radiographic apparatus that allows suppression of needles radiation exposure to a subject. Specifically, the disclosure includes an X-ray tube, a collimator, and a visible light source. The spread of visible light beams through the collimator opening too largely may not possibly conform to the spread of radiation. Such a situation may occur when the apparatus is provided with the X-ray tube that emits narrow radiation. In order to avoid such a situation, the disclosure sets an upper limit of a degree of opening as an upper limit of a degree of opening of the collimator. With a construction of the disclosure, there is no need to perform further radiography. This achieves the radiographic apparatus that allows suppression of needless radiation exposure to a subject.
    • 本公开提供了一种放射线照相设备,其允许抑制针对受试者的辐射照射。 具体地,本公开包括X射线管,准直仪和可见光源。 可见光束通过准直器开口的扩散太大可能不符合辐射的扩散。 当设备设置有发射窄辐射的X射线管时,可能发生这种情况。 为了避免这种情况,本发明将开度的上限设定为准直仪的开度的上限。 通过本公开的构造,不需要进行进一步的射线照相。 这实现了能够抑制对受试者的不必要的辐射照射的射线照相设备。
    • 8. 发明申请
    • RADIATION TOMOGRAPHY DEVICE
    • 辐射测量装置
    • US20170055936A1
    • 2017-03-02
    • US15307950
    • 2014-05-01
    • SHIMADZU CORPORATION
    • Tomoharu OkunoKen Shirota
    • A61B6/00
    • A61B6/547A61B6/02A61B6/40A61B6/4452A61B6/4464A61B6/46A61B6/5205
    • In a radiation tomography imaging device, the imaging range calculation element 35 calculates a possible imaging range of the FPD 5 based on the imaging distance G, the irradiation swing angle θ and the movable range SP of the X-ray tube 3. The operator can preliminarily calculate the possible imaging range of the radiation detection means prior to the X-ray tomography imaging because the imaging distance, the irradiation swing angle, and the movable range SP are all predetermined parameters. The possible imaging range FP of the FPD 5 is the positional range of the FPD 5 in which the X-ray tube 3 can acquire the X-ray tomography image without moving the X-ray tube 3 to the outside of movable range. Therefore, the radiation tomography imaging can start the X-ray tomography by assuredly moving the FPD 5 within the possible imaging range by referring to the preliminarily calculated possible imaging range of the FPD 5. As results, an incident in which the X-ray tube 3 moves out of the movable range SP and interferes the floor surface W and so forth can be avoided, so that the X-ray tomography imaging can be performed adequately.
    • 在放射线断层成像装置中,成像范围计算元件35基于X射线管3的成像距离G,照射摆动角θ和可动范围SP计算FPD 5的可能成像范围。操作者可以 由于成像距离,照射摆动角度和可动范围SP都是预定的参数,所以在X射线层析成像之前预先计算出放射线检测装置的可能成像范围。 FPD 5的可能的成像范围FP是X射线管3可以获取X射线断层摄影图像的FPD 5的位置范围,而不将X射线管3移动到可移动范围的外部。 因此,通过参考FPD5的预先计算的可能的成像范围,通过在可能的成像范围内可靠地移动FPD 5,可以开始X射线断层摄影。结果,X射线管 可以避免3从移动范围SP移动并干扰地板表面W等,从而能够充分地进行X射线层析成像。