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    • 3. 发明授权
    • Semiconductor radiation detection apparatus
    • 半导体辐射检测仪
    • US08227759B2
    • 2012-07-24
    • US12607348
    • 2009-10-28
    • Tomonori FukuchiShinji MotomuraShuichi EnomotoYousuke Kanayama
    • Tomonori FukuchiShinji MotomuraShuichi EnomotoYousuke Kanayama
    • G01T1/24
    • G01T1/2928
    • The apparatus has an energy calculation section 32 that calculates energy deposit values of interactions based on signals obtained from segmented electrodes 11, 12 provided on two opposite surfaces of a semiconductor crystal, a reference waveform storing section 33 that stores beforehand waveforms that will be obtained from the segmented electrodes when a single interaction occurs for multiple positions in the crystal, a waveform synthesis section 34 that synthesizes reference waveforms corresponding to arbitrary two points in the crystal as candidate points of interaction at a ratio equal to a ratio of their energy deposit values, and a comparison section 35 that compares a measured waveform and the synthesized waveforms. The candidate points from which the synthesized waveform most similar to the measured waveform is obtained is determined to be the positions of interactions. Thus, even in cases where multiple interactions occur, the positions of the interactions can be detected.
    • 该装置具有能量计算部32,该能量计算部32基于从设置在半导体晶体的两个相对面的分割电极11,12获得的信号来计算相互作用的能量存储值,基准波形存储部33预先存储将从 当晶体中的多个位置发生单个相互作用时的分段电极;波形合成部分34,其以与等于其能量沉积值的比率的比率合成与晶体中的任意两个点相对应的参考波形作为候选交互点, 比较测量波形和合成波形的比较部分35。 获得与测量波形最相似的合成波形的候选点被确定为相互作用的位置。 因此,即使在发生多次相互作用的情况下,也可以检测相互作用的位置。
    • 4. 发明授权
    • Pet device and imaging method therefor
    • 宠物装置及其成像方法
    • US09024262B2
    • 2015-05-05
    • US14236847
    • 2012-08-01
    • Tomonori FukuchiShuichi Enomoto
    • Tomonori FukuchiShuichi Enomoto
    • G01T1/20G01T1/29A61B6/03
    • G01T1/2985A61B6/037
    • In the present invention, to conduct multiple molecular imaging in a PET device, both a first probe and a second probe, each of which has a nuclide that emits unique gamma rays as a result of gamma decay after beta decay, are administered to a subject to be imaged, and then the image capturing is performed by a multiple probe PET device (100). The multiple probe PET device (100) is provided with a group of PET gamma ray detectors (10) and an energy-resolving gamma ray detector (20), and, when an imaging processor (30) executes image reconstruction based on a pair-annihilation detection signal from the group of PET gamma ray detectors (10), images are reconstructed differently according to the energy values of the unique gamma rays. Imaging can also be carried out using a nuclide that does not emit any unique gamma ray and a nuclide that emits a unique gamma ray.
    • 在本发明中,为了在PET装置中进行多分子成像,第一探针和第二探针两者均具有作为β衰变后伽马衰变的结果发射独特的γ射线的核素, 进行成像,然后通过多探针PET装置(100)进行图像拍摄。 多探针PET装置(100)设置有一组PET伽马射线检测器(10)和能量分辨伽马射线检测器(20),并且当成像处理器(30)基于成对处理器执行图像重建时, 来自PET伽马射线探测器组(10)的湮灭检测信号根据独特伽马射线的能量值不同地重建图像。 成像还可以使用不发射任何独特的伽马射线的核素和发射独特伽玛射线的核素进行。
    • 5. 发明申请
    • PET DEVICE AND IMAGING METHOD THEREFOR
    • PET装置及其成像方法
    • US20140175293A1
    • 2014-06-26
    • US14236847
    • 2012-08-01
    • Tomonori FukuchiShuichi Enomoto
    • Tomonori FukuchiShuichi Enomoto
    • G01T1/29A61B6/03
    • G01T1/2985A61B6/037
    • In the present invention, to conduct multiple molecular imaging in a PET device, both a first probe and a second probe, each of which has a nuclide that emits unique gamma rays as a result of gamma decay after beta decay, are administered to a subject to be imaged, and then the image capturing is performed by a multiple probe PET device (100). The multiple probe PET device (100) is provided with a group of PET gamma ray detectors (10) and an energy-resolving gamma ray detector (20), and, when an imaging processor (30) executes image reconstruction based on a pair-annihilation detection signal from the group of PET gamma ray detectors (10), images are reconstructed differently according to the energy values of the unique gamma rays. Imaging can also be carried out using a nuclide that does not emit any unique gamma ray and a nuclide that emits a unique gamma ray.
    • 在本发明中,为了在PET装置中进行多分子成像,第一探针和第二探针两者均具有作为β衰变后伽马衰变的结果发射独特的γ射线的核素, 进行成像,然后通过多探针PET装置(100)进行图像拍摄。 多探针PET装置(100)设置有一组PET伽马射线检测器(10)和能量分辨伽马射线检测器(20),并且当成像处理器(30)基于成对处理器执行图像重建时, 来自PET伽马射线探测器组(10)的湮灭检测信号根据独特伽马射线的能量值不同地重建图像。 成像还可以使用不发射任何独特的伽马射线的核素和发射独特伽玛射线的核素进行。
    • 6. 发明申请
    • SKIN CLEANSING AGENT COMPOSITION
    • 皮肤清洁剂组合物
    • US20140142016A1
    • 2014-05-22
    • US14130792
    • 2012-07-03
    • Atsushi TomokuniTomonori Fukuchi
    • Atsushi TomokuniTomonori Fukuchi
    • A61K8/37A61K8/34A61K8/81A61Q19/10
    • A61K8/37A61K8/34A61K8/345A61K8/8147A61K8/8158A61K8/8182A61K8/86A61Q1/14A61Q19/10
    • A skin cleansing agent composition of the present invention contains an isotropic liquid phase, which is a bicontinuous structure, and containing: 15 to 30 mass % of a nonionic surfactant having HLB of higher than 9 and equal to or lower than 20; 1 to 15 mass % of a nonionic surfactant having HLB of equal to or higher than 5 and equal to or lower than 9; 10 to 40 mass % of an oil agent exhibiting a viscosity at 30 degrees C. of equal to or lower than 30 mPa·s; 10 to 40 mass % of a water-soluble solvent having 3 or more of hydroxyl groups in single molecule; 10 to 30 mass % of a water-soluble solvent having 1 or 2 hydroxyl group(s) in single molecule; 0.05 to 1.0 mass % of a water-soluble polymer containing (meta)acrylic acid as a configuration unit and/or an acryloyl methyl taurate-vinylpyrrolidone copolymer; 0.001 to 2.0 mass % of a water-soluble inorganic salt and/or an organic salt having 1 to 8 carbon atoms; and water.
    • 本发明的皮肤清洁剂组合物含有双相结构的各向同性液相,含有15〜30质量%的HLB在9以上且20以下的非离子表面活性剂; 1〜15质量%的HLB为5以上且9以下的非离子表面活性剂; 10〜40质量%的在30℃下的粘度为30mPa·s以下的油剂; 10〜40质量%的单分子中具有3个以上羟基的水溶性溶剂; 10〜30质量%的单分子中具有1个或2个羟基的水溶性溶剂; 0.05质量%含有(甲基)丙烯酸作为结构单元的水溶性聚合物和/或丙烯酰甲基牛磺酸乙烯基吡咯烷酮共聚物; 0.001〜2.0质量%的水溶性无机盐和/或碳原子数1〜8的有机盐; 和水。
    • 7. 发明授权
    • Skin cleansing agent composition
    • 皮肤清洁剂组成
    • US09072674B2
    • 2015-07-07
    • US14130792
    • 2012-07-03
    • Atsushi TomokuniTomonori Fukuchi
    • Atsushi TomokuniTomonori Fukuchi
    • C11D1/66C11D1/825C11D3/18A61K8/34A61Q1/14A61K8/37A61K8/86A61Q19/10A61K8/81
    • A61K8/37A61K8/34A61K8/345A61K8/8147A61K8/8158A61K8/8182A61K8/86A61Q1/14A61Q19/10
    • A skin cleansing agent composition of the present invention contains an isotropic liquid phase, which is a bicontinuous structure, and containing: 15 to 30 mass % of a nonionic surfactant having HLB of higher than 9 and equal to or lower than 20; 1 to 15 mass % of a nonionic surfactant having HLB of equal to or higher than 5 and equal to or lower than 9; 10 to 40 mass % of an oil agent exhibiting a viscosity at 30 degrees C. of equal to or lower than 30 mPa·s; 10 to 40 mass % of a water-soluble solvent having 3 or more of hydroxyl groups in single molecule; 10 to 30 mass % of a water-soluble solvent having 1 or 2 hydroxyl group(s) in single molecule; 0.05 to 1.0 mass % of a water-soluble polymer containing (meta)acrylic acid as a configuration unit and/or an acryloyl methyl taurate-vinylpyrrolidone copolymer; 0.001 to 2.0 mass % of a water-soluble inorganic salt and/or an organic salt having 1 to 8 carbon atoms; and water.
    • 本发明的皮肤清洁剂组合物含有双相结构的各向同性液相,含有15〜30质量%的HLB在9以上且20以下的非离子表面活性剂; 1〜15质量%的HLB为5以上且9以下的非离子表面活性剂; 10〜40质量%的在30℃下的粘度为30mPa·s以下的油剂; 10〜40质量%的单分子中具有3个以上羟基的水溶性溶剂; 10〜30质量%的单分子中具有1个或2个羟基的水溶性溶剂; 0.05质量%含有(甲基)丙烯酸作为结构单元的水溶性聚合物和/或丙烯酰甲基牛磺酸乙烯基吡咯烷酮共聚物; 0.001〜2.0质量%的水溶性无机盐和/或碳原子数为1〜8的有机盐; 和水。