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    • 1. 发明授权
    • Depth of interaction detector with uniform pulse-height
    • 具有均匀脉冲高度的相互作用检测器的深度
    • US07091490B2
    • 2006-08-15
    • US10684413
    • 2003-10-15
    • Keiji SumiyaHiroyuki IshibashiHideo MurayamaNaoko InadamaTakaji YamashitaTomohide Omura
    • Keiji SumiyaHiroyuki IshibashiHideo MurayamaNaoko InadamaTakaji YamashitaTomohide Omura
    • G01T1/20
    • G01T1/2928G01T1/2018
    • A depth of interaction detector with uniform pulse-height comprises a multi-layer scintillator obtained by coupling at least two scintillator cells on a plane and then stacking the planar coupled scintillator cells, in layers, up to at least two stages and a light-receiving element connected to the bottom face of each scintillator cell of this multi-layer scintillator, wherein the detector is provided with a means for discriminating the position of a scintillator cell, which receives radiant rays and emits light rays and a means for making, uniform, the quantity of the light emitted from each scintillator cell and received by the light-receiving element. The detector can provide precise detection information even when radiation is absorbed by and emitted from a scintillator layer positioned above the scintillator layer optically coupled to the light-receiving element, permits the production of a depth of interaction detector having a three-dimensional depth of interaction-detecting function and can provide the same total output signal, which is independent of the position or a specific scintillator cell practically emitting light if the radiation energy is identical.
    • 具有均匀脉冲高度的相互作用检测器的深度包括通过在平面上耦合至少两个闪烁体单元然后层叠平面耦合的闪烁体单元达到至少两个阶段而获得的多层闪烁体,以及光接收 连接到该多层闪烁体的每个闪烁体单元的底面的元件,其中检测器设置有用于识别接收辐射线并发射光线的闪烁体单元的位置的装置,以及用于使均匀的, 从每个闪烁体单元发射并由光接收元件接收的光的量。 即使当辐射被位于与光接收元件光耦合的闪烁体层上方的闪烁器层吸收和发射时,检测器也可以提供精确的检测信息,允许产生具有三维相互作用深度的相互作用检测器的深度 - 检测功能并且可以提供与位置无关的相同的总输出信号,或者如果辐射能量相同则实际发射光的特定闪烁体单元。
    • 2. 发明申请
    • Depth of interaction detector with uniform pulse-height
    • 具有均匀脉冲高度的相互作用检测器的深度
    • US20050087693A1
    • 2005-04-28
    • US10684413
    • 2003-10-15
    • Keiji SumiyaHiroyuki IshibashiHideo MurayamaNaoko InadamaTakaji YamashitaTomohide Omura
    • Keiji SumiyaHiroyuki IshibashiHideo MurayamaNaoko InadamaTakaji YamashitaTomohide Omura
    • G01T1/20C09K11/00C09K11/79G01T1/29H01L31/09
    • G01T1/2928G01T1/2018
    • A depth of interaction detector with uniform pulse-height comprises a multi-layer scintillator obtained by coupling at least two scintillator cells on a plane and then stacking the planar coupled scintillator cells, in layers, up to at least two stages and a light-receiving element connected to the bottom face of each scintillator cell of this multi-layer scintillator, wherein the detector is provided with a means for discriminating the position of a scintillator cell, which receives radiant rays and emits light rays and a means for making, uniform, the quantity of the light emitted from each scintillator cell and received by the light-receiving element. The detector can provide precise detection information even when radiation is absorbed by and emitted from a scintillator layer positioned above the scintillator layer optically coupled to the light-receiving element, permits the production of a depth of interaction detector having a three-dimensional depth of interaction-detecting function and can provide the same total output signal, which is independent of the position or a specific scintillator cell practically emitting light if the radiation energy is identical.
    • 具有均匀脉冲高度的相互作用检测器的深度包括通过在平面上耦合至少两个闪烁体单元然后层叠平面耦合的闪烁体单元至多至少两个阶段而得到的多层闪烁器,以及光接收 连接到该多层闪烁器的每个闪烁体单元的底面的元件,其中检测器设置有用于识别接收辐射线并发射光线的闪烁体单元的位置的装置,以及用于使均匀的, 从每个闪烁体单元发射并由光接收元件接收的光的量。 即使当辐射被位于与光接收元件光耦合的闪烁体层上方的闪烁器层吸收和发射时,检测器也可以提供精确的检测信息,允许产生具有三维相互作用深度的相互作用检测器的深度 - 检测功能并且可以提供与位置无关的相同的总输出信号,或者如果辐射能量相同则实际发射光的特定闪烁体单元。
    • 3. 发明授权
    • Radiation three-dimensional position detector
    • 辐射三维位置检测器
    • US07087905B2
    • 2006-08-08
    • US10786366
    • 2004-02-26
    • Hideo MurayamaNaoko InadamaKeishi KitamuraTakaji Yamashita
    • Hideo MurayamaNaoko InadamaKeishi KitamuraTakaji Yamashita
    • G01T1/20
    • G01T1/2008G01T1/1644
    • The radiation three-dimensional position detector of the present invention comprises a scintillator unit (10), a light receiving element (20) and an operation section (30). The scintillator unit is disposed on the light incident plane of the light receiving element, wherein the scintillator unit is comprised of four layers of scintillator arrays, each layer being composed of scintillator cells arrayed in 8 row −8 column matrix. The scintillator cell produces scintillation light corresponding to the radiation absorbed thereby. The optical characteristic of a partition material for separating neighboring scintillator cells, which faces at least one same side face is different between a scintillator cell Ck1,m,n included in one scintillator array layer (k1-th layer) and a scintillator cell Ck2,m,n included in the other scintillator array layer (k2-th layer).
    • 本发明的辐射三维位置检测器包括闪烁体单元(10),光接收元件(20)和操作部分(30)。 闪烁体单元设置在光接收元件的光入射平面上,其中闪烁体单元由四层闪烁体阵列组成,每层由排列在8行-8列矩阵中的闪烁体单元组成。 闪烁体细胞产生对应于由此吸收的辐射的闪烁光。 用于分离面向至少一个相同侧面的相邻闪烁体单元的分隔材料的光学特性在一个闪烁体阵列层(k1-th)中包括的闪烁体单元C k1,m,n 层)和包含在另一个闪烁体阵列层(k2层)中的闪烁体单元C k2,m,n N。
    • 5. 发明授权
    • Scintillation camera using a photomultiplier having a plurality of anodes
    • 使用具有多个阳极的光电倍增管的闪烁照相机
    • US5862061A
    • 1999-01-19
    • US427594
    • 1995-04-24
    • Takaji YamashitaTomohide Omura
    • Takaji YamashitaTomohide Omura
    • G01T1/164G01T1/20G01T1/208G01B11/00
    • G01T1/208
    • A high resolution scintillation camera includes a scintillator which generates scintillation light having a light amount proportional to the energy value of incident radiation at the radiation incident position. The generated scintillation light is supplied to several of a plurality of photodetectors forming a detector array. These photodetectors output electrical signals proportional to the supplied light amounts, respectively. The output electrical signals are supplied to a selector to select a photodetector arranged at the radiation incident position and a plurality of photodetectors adjacent to this photodetector. A detection unit detects the radiation incident position on the scintillator on the basis of output signals from a plurality of segments of each photodetector selected by the selector.
    • 高分辨率闪烁照相机包括闪烁体,该闪烁体产生具有与辐射入射位置处的入射辐射的能量值成比例的光量的闪烁光。 产生的闪烁光被提供到形成检测器阵列的多个光电检测器中的几个。 这些光电检测器分别输出与所提供的光量成比例的电信号。 输出电信号被提供给选择器以选择布置在辐射入射位置处的光电检测器和与该光电检测器相邻的多个光电检测器。 检测单元基于由选择器选择的每个光电检测器的多个段的输出信号来检测闪烁体上的辐射入射位置。
    • 7. 发明授权
    • PET apparatus
    • PET装置
    • US06858849B2
    • 2005-02-22
    • US10276975
    • 2001-05-22
    • Takaji YamashitaHiroyuki Okada
    • Takaji YamashitaHiroyuki Okada
    • G01T1/29G01T1/164
    • G01T1/2985A61B6/037
    • A PET apparatus (1) includes a detecting section (10). Each cylindrical detector (13n) of the detecting section (10) has a plurality of block detectors (141 to 14M) arranged on the same circumference on a place perpendicular to a central axis (CAX) in the form of a ring. Each block detector (14m) is a two-dimensional position detector which detects the two-dimensional incident position of a photon incident on a light-receiving surface 15b. Each slice collimator (21n) extends to a rear portion of a corresponding one of cylindrical detectors (13n) through the space between adjacent cylindrical detectors (13n) and (13n+1) and is integrally fixed by a holding plate (22) at the rear portion.
    • PET装置(1)包括检测部(10)。 检测部分(10)的每个圆柱形检测器(13n)具有多个块状检测器(141至14M),其布置在垂直于环形中心轴线(CAX)的位置的相同圆周上。 每个块检测器(14m)是检测入射在受光面15b上的光子的二维入射位置的二维位置检测器。 每个切片准直器(21n)通过相邻圆柱形检测器(13n)和(13n + 1)之间的空间延伸到相应的一个圆柱形检测器(13n)的后部,并通过保持板(22)在 后部。
    • 9. 发明授权
    • Position-sensitive radiation detector
    • 位置敏感型辐射探测器
    • US4929835A
    • 1990-05-29
    • US850775
    • 1986-04-11
    • Takaji YamashitaHiroshi Uchida
    • Takaji YamashitaHiroshi Uchida
    • G01T1/164
    • G01T1/1644
    • A position-sensitive radiation detector includes an array of scintillator elements having roughly-polished radiation incident ends, mirror-polished sides, and mirror-polished light output ends. The elements are separated by a media having a lower index of refraction and at least the incident ends are coated with a reflection material. A photocathode opposite to the light output ends outputs photoelectrons at locations corresponding to the scintillator elements receiving incident radiation. An incident electron detecting unit and an arithmetic unit generate data representing the position and intensity of radiation incident upon the scintillator elements.
    • 位置敏感辐射检测器包括具有大致抛光的辐射入射端,镜面抛光侧和镜面抛光光输出端的闪烁体元件阵列。 元件由具有较低折射率的介质分开,并且至少入射端涂覆有反射材料。 与光输出端相反的光电阴极在与接收入射辐射的闪烁体元件相对应的位置处输出光电子。 入射电子检测单元和运算单元产生表示入射到闪烁体元件上的辐射的位置和强度的数据。
    • 10. 发明授权
    • Positron emission tomography apparatus
    • 正电子发射断层摄影装置
    • US06674083B2
    • 2004-01-06
    • US09873352
    • 2001-06-05
    • Eiichi TanakaTakaji YamashitaHiroyuki Okada
    • Eiichi TanakaTakaji YamashitaHiroyuki Okada
    • G01T1164
    • G21K1/04
    • A PET apparatus includes a detecting unit; slice septa for transmitting therethrough flying photons nearly perpendicular to the center axis; a slice septa position determining section for determining whether or not the slice septa exist in the measurement space side of at least one of the pair of photon detectors; a two-dimensional projection image storage section for storing coincidence-counting information of the photon pair obtained by the pair of photon detectors; a three-dimensional projection data storage section for storing coincidence counting information obtained by the pair of photon detectors; and an image reconstructing section for reconstruction an image indicative of a spatial distribution of a frequency at which photon pairs are emitted in the measurement space.
    • PET装置包括检测单元; 切片隔片,用于透射几乎垂直于中心轴线的飞行光子; 切片隔片位置确定部,用于确定在所述一对光子检测器中的至少一个的所述测量空间侧是否存在所述切片隔片; 二维投影图像存储部,用于存储由该对光子检测器获得的光子对的重合计数信息; 三维投影数据存储部,用于存储由该对光子检测器获得的符合计数信息; 以及图像重建部分,用于重建指示在测量空间中发射光子对的频率的空间分布的图像。