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    • 4. 发明授权
    • Radiation detection device, radiation image acquiring system, and method for detecting radiation
    • 辐射检测装置,辐射图像采集系统和辐射检测方法
    • US08280005B2
    • 2012-10-02
    • US12615675
    • 2009-11-10
    • Toshiyasu SuyamaTadashi MarunoToshihide SasakiJunichi SonodaShinji Takihi
    • Toshiyasu SuyamaTadashi MarunoToshihide SasakiJunichi SonodaShinji Takihi
    • H05G1/64G01N23/087
    • G01N23/04G01T1/00
    • An X-ray image acquiring system capable of improving the detection accuracy of a foreign substance contained in a subject is provided. An X-ray image acquiring system 1 irradiates X-rays to a subject S having a predetermined thickness W from an X-ray source, and detects X-rays transmitted through the subject S in a plurality of energy ranges. The X-ray image acquiring system 1 includes a low-energy detector 32 for detecting, in a low-energy range, X-rays having been transmitted through a region R1 extending in a thickness direction within the subject S, a high-energy detector 42 for detecting, in a high-energy range, X-rays having been transmitted through a region R2 extending in a thickness direction within the subject S, and a timing control section 50 for controlling detection timing of X-rays in the low-energy detector 32 and the high-energy detector 42 so that an inspecting region E located at a predetermined site within the subject S is included in the region R1 and the region R2.
    • 提供能够提高被检体中所含有的异物的检测精度的X射线图像获取系统。 X射线图像获取系统1从X射线源向具有预定厚度W的被检体S照射X射线,并且以多个能量范围来检测通过被检体S透射的X射线。 X射线图像获取系统1包括低能量检测器32,用于在低能量范围内检测通过在被检体S内沿厚度方向延伸的区域R1的X射线,高能量检测器 42,用于在高能量范围内检测通过在被检体S内沿厚度方向延伸的区域R2的X射线;以及定时控制部50,用于控制低能量中的X射线的检测定时 检测器32和高能检测器42,使得位于被检体S内的预定位置的检查区域E被包括在区域R1和区域R2中。
    • 5. 发明授权
    • Radiation detection device, radiation image acquiring system, radiation inspection system, and radiation detection method
    • 辐射检测装置,放射线图像采集系统,辐射检测系统和放射线检测方法
    • US08223922B2
    • 2012-07-17
    • US12615305
    • 2009-11-10
    • Toshiyasu SuyamaTadashi MarunoToshihide SasakiJunichi SonodaShinji Takihi
    • Toshiyasu SuyamaTadashi MarunoToshihide SasakiJunichi SonodaShinji Takihi
    • H05G1/64G01N23/087
    • G01N23/046G01N23/04G01N2223/1016G01N2223/306G01N2223/3307G01V5/0008G01V5/0016G01V5/0041
    • A radiation image acquiring system that improves the detection accuracy of a foreign substance etc., in a subject is provided. An X-ray image acquiring system 1 irradiates X-rays to a subject S from an X-ray source, and detects X-rays in a plurality of energy ranges transmitted through the subject S. The X-ray image acquiring system 1 includes a low-energy detector 32 for detecting X-rays in a low-energy range that is transmitted through the subject S to generate low-energy image data, a high-energy detector 42 arranged in parallel to the low-energy detector 32 with a dead zone region 82 sandwiched therebetween, for detecting X-rays in a high-energy range that is transmitted through the subject S to generate high-energy image data, and a timing control section 50 for controlling detection timing of the high-energy detector 42 based on a dead zone width NW of the dead zone region 82 so that low-energy image data to be generated by the low-energy detector 32 and high-energy image data to be generated by the high-energy detector 42 mutually correspond.
    • 提供了提高被检体中异物等的检测精度的放射线图像获取系统。 X射线图像获取系统1从X射线源向对象S照射X射线,并且检测通过被检体S透射的多个能量范围中的X射线.X射线图像获取系统1包括: 低能量检测器32,用于检测通过被摄体S传输的低能量范围内的X射线以产生低能量图像数据;高能量检测器42,其与死能器件的低能量检测器32并联布置 夹持在其间的区域区域82,用于检测通过被检体S传输的高能量范围内的X射线以产生高能量图像数据;以及定时控制部分50,用于基于高能量检测器42的检测定时来控制 在死区区域82的死区宽度NW上,使得由低能量检测器32产生的低能量图像数据和由高能量检测器42产生的高能量图像数据相互对应。
    • 8. 发明授权
    • Surface-emitting laser device, optical scanner device, and image forming apparatus
    • 表面发射激光装置,光学扫描装置和图像形成装置
    • US08649409B2
    • 2014-02-11
    • US13562896
    • 2012-07-31
    • Toshihide SasakiKazuhiro Harasaka
    • Toshihide SasakiKazuhiro Harasaka
    • H01S5/00
    • H01S5/18391B41J2/455B41J2/473G02B26/123H01S5/18311H01S5/18333H01S5/1835H01S5/18355H01S5/3202H01S5/423H01S2301/166
    • A surface-emitting laser device includes a lower reflector, a resonator structure having an active layer and an upper reflector on an inclined substrate, and an emission region emitting laser light enclosed by an electrode. The upper reflector includes a confinement structure having a current passing region enclosed by an oxide containing at least an oxide generated as a result of partial oxidation of a layer containing aluminum subject to selective oxidation, and a dielectric film formed within the emission region, the dielectric film at least enclosing a partial region including a center of the emission region. In viewing from a direction orthogonal to the emission region, a center of a region enclosed by the dielectric film is located at a position distant from the center of the emission region based on a size of the confinement structure relative to a direction orthogonal to an inclined axis of the inclined substrate.
    • 表面发射激光器件包括下反射器,在倾斜衬底上具有有源层的谐振器结构和上反射器,以及发射由电极包围的激光的发射区域。 上部反射器包括具有电流通过区域的限制结构,该电流通过区域由至少包含氧化物的氧化物所包围,所述氧化物由于经受选择性氧化而含有铝的层的部分氧化而产生,以及形成在发射区域内的电介质膜, 膜至少包围包括发射区域的中心的部分区域。 在从与发射区域正交的方向观察时,由电介质膜包围的区域的中心位于远离发射区域的中心的位置,其基于约束结构的尺寸相对于与倾斜 倾斜基板的轴线。
    • 10. 发明授权
    • Radiation detection device, radiation image acquiring system, and method for detecting radiation
    • 辐射检测装置,辐射图像采集系统和辐射检测方法
    • US08600005B2
    • 2013-12-03
    • US13600516
    • 2012-08-31
    • Toshiyasu SuyamaTadashi MarunoToshihide SasakiJunichi SonodaShinji Takihi
    • Toshiyasu SuyamaTadashi MarunoToshihide SasakiJunichi SonodaShinji Takihi
    • H05G1/64G01N23/087
    • G01N23/04G01T1/00
    • An X-ray image acquiring system capable of improving the detection accuracy of a foreign substance contained in a subject is provided. An X-ray image acquiring system irradiates X-rays to a subject having a predetermined thickness from an X-ray source, and detects X-rays transmitted through the subject in a plurality of energy ranges. The X-ray image acquiring system includes a low-energy detector for detecting, in a low-energy range, X-rays having been transmitted through a region R1 extending in a thickness direction within the subject, a high-energy detector for detecting, in a high-energy range, X-rays having been transmitted through a region R2 extending in a thickness direction within the subject, and a timing control section for controlling detection timing of X-rays in the low-energy detector and the high-energy detector so that an inspecting region located at a predetermined site within the subject is included in the region R1 and the region R2.
    • 提供能够提高被检体中所含有的异物的检测精度的X射线图像获取系统。 X射线图像获取系统从X射线源向具有预定厚度的被摄体照射X射线,并且以多个能量范围来检测通过被摄体发射的X射线。 X射线图像获取系统包括:低能量检测器,用于在低能量范围内检测通过在被检体内沿厚度方向延伸的区域R1透射的X射线;高能量检测器, 在高能量范围内,通过在被检体内沿厚度方向延伸的区域R2的X射线,以及用于控制低能量检测器中的X射线的检测定时和高能量的定时控制部 检测器,使得位于对象内的预定位置的检查区域包括在区域R1和区域R2中。