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    • 5. 发明授权
    • Catalyst for asymmetric hydrogenation
    • 非对称氢化催化剂
    • US08217204B2
    • 2012-07-10
    • US12792016
    • 2010-06-02
    • Hironori MaedaYoji Hori
    • Hironori MaedaYoji Hori
    • C07C45/62C07C29/17B01J31/02
    • C07D207/06B01J31/181B01J2231/645B01J2531/821B01J2531/822B01J2531/824B01J2531/827B01J2531/828B01J2531/847C07B53/00C07B2200/07C07C45/62C07D207/08C07D207/16C07D233/32C07D241/44C07D405/04C07C47/21
    • This invention aims at providing a catalyst for producing an optically active aldehyde or an optically active ketone, which is an optically active carbonyl compound, by carrying out selective asymmetric hydrogenation of an α,β-unsaturated carbonyl compound, particularly a catalyst which is insoluble in a reaction mixture for obtaining optically active citronellal which is useful as a flavor or fragrance, by carrying out selective asymmetric hydrogenation of citral, geranial or neral; and a method for producing a corresponding optically active carbonyl compound. The invention relates to a catalyst for asymmetric hydrogenation of an α,β-unsaturated carbonyl compound, which comprises a powder of at least one metal selected from metals belonging to Group 8 to Group 10 of the Periodic Table, or a metal-supported substance in which at least one metal selected from metals belonging to Group 8 to Group 10 of the Periodic Table is supported on a support, an optically active cyclic nitrogen-containing compound and an acid.
    • 本发明的目的在于提供一种用于制备光学活性醛或光学活性酮的催化剂,它是光学活性的羰基化合物,通过进行α,β-不饱和羰基化合物的选择性不对称氢化,特别是不溶于 在用于获得可用作香料或香料的光学活性香茅醛的反应混合物中,通过进行柠檬醛,香叶醛或香精的选择性不对称氢化; 以及制备相应的光学活性羰基化合物的方法。 本发明涉及一种α,β-不饱和羰基化合物的不对称氢化催化剂,它包括选自属于元素周期表第8至第10族金属的至少一种金属的粉末或金属负载物质 其中选自属于元素周期表第8族至第10族的金属中的至少一种金属负载在载体,光学活性环状含氮化合物和酸上。
    • 6. 发明授权
    • Treatment table system
    • 治疗台系统
    • US08550711B2
    • 2013-10-08
    • US12997727
    • 2008-06-18
    • Hironori MaedaHiroshi Otani
    • Hironori MaedaHiroshi Otani
    • A61B6/04
    • A61N5/1049A61B6/0457A61N2005/1061A61N2005/1087
    • Lesion positioner systems and, which perform positioning of a lesion A by moving a top board for allowing a subject to be placed thereon, set an isocenter of a diagnostic 3D imaging unit as a virtual isocenter at the time when a treatment table is in a 3D imaging diagnosis position, and positions the lesion A to the virtual isocenter, based on a three-dimensional diagnostic image in consideration of particle beam therapy. A treatment table moving mechanism moves the treatment table to the treatment position relative to the particle beam therapy system while maintaining states of the top board and the lesion positioner systems and at the time of positioning, thereby positioning the lesion A to the isocenter of the particle beam therapy system.
    • 病变定位器系统,并且通过移动顶板以允许被摄体放置在其上来执行病变A的定位,将诊断3D成像单元的等角点设置为处理台处于3D时的虚拟等角点 成像诊断位置,并且基于考虑到粒子束治疗的三维诊断图像将病变A定位到虚拟等角点。 治疗台移动机构将治疗台相对于粒子束治疗系统移动到治疗位置,同时保持顶板和病变定位器系统的状态,并且在定位时,将病变A定位到颗粒的等角点 射束治疗系统。
    • 7. 发明申请
    • CONDENSATION REACTION BY METAL CATALYST
    • 金属催化剂冷凝反应
    • US20110098479A1
    • 2011-04-28
    • US12980502
    • 2010-12-29
    • KAZUSHI MASHIMATakashi OhshimaTakanori IwasakiHironori MaedaKenya Ishida
    • KAZUSHI MASHIMATakashi OhshimaTakanori IwasakiHironori MaedaKenya Ishida
    • C07F7/10C07D263/12C07D263/10C07D263/14C07D263/52
    • C07D263/12B01J31/2226B01J2531/26C07C53/18C07C231/02C07C253/30C07D263/10C07D263/14C07D263/52C07D413/06C07F3/003C07F7/1892C07F9/5022C07K1/088C07K1/10
    • The invention relates to a method for producing an azoline compound represented by the general formula (3): wherein R1 represents an optionally substituted hydrocarbon group, an optionally substituted alkoxy group, an optionally substituted alkoxycarbonyl group, a halogen atom, a substituted amino group, a substituted carbamoyl group or an optionally substituted heterocyclic group; R3, R4, R5 and R6 may be the same or different and each represents a hydrogen atom, an optionally substituted hydrocarbon group, an optionally substituted alkoxy group, an optionally substituted alkoxycarbonyl group, a halogen atom, a substituted amino group, a substituted carbamoyl group or an optionally substituted heterocyclic group; two arbitrary groups selected from R3, R4, R5 and R6 may bond to each other to form a ring; and Z1 represents an oxygen atom, a sulfur atom or a selenium atom;comprising reacting a carboxylic acid or a carboxylic acid derivative represented by the general formula (1): R1CO2R2   (1) wherein R1 is as defined above; R2 represents a hydrogen atom, an optionally substituted alkyl group or an optionally substituted aryl group; and R1 and R2 may bond to each other to form a ring;with an aminochalcogenide represented by the general formula (2): wherein R3, R4, R5, R6 and Z1 are as defined above; in the presence of a compound containing a group 12 metal element in the periodic table.
    • 本发明涉及一种制备由通式(3)表示的唑啉化合物的方法:其中R1表示任选取代的烃基,任选取代的烷氧基,任选取代的烷氧基羰基,卤素原子,取代的氨基, 取代的氨基甲酰基或任选取代的杂环基; R3,R4,R5和R6可以相同或不同,各自表示氢原子,任选取代的烃基,任选取代的烷氧基,任选取代的烷氧基羰基,卤素原子,取代的氨基,取代的氨基甲酰基 基团或任选取代的杂环基团; 选自R3,R4,R5和R6中的两个任意基团可以彼此键合形成环; Z1表示氧原子,硫原子或硒原子; 包括使由通式(1)表示的羧酸或羧酸衍生物:R1CO2R2(1)其中R1如上定义; R2表示氢原子,任选取代的烷基或任选取代的芳基; 并且R 1和R 2可以彼此键合形成环; 与通式(2)表示的氨基硫族化物:其中R3,R4,R5,R6和Z1如上定义; 在含有元素周期表中第12族金属元素的化合物存在下进行。
    • 8. 发明申请
    • TEST METHOD AND PROGRAM PRODUCT USED THEREFOR
    • 使用的测试方法和程序产品
    • US20100131224A1
    • 2010-05-27
    • US12324096
    • 2008-11-26
    • Hironori Maeda
    • Hironori Maeda
    • G06F19/00
    • G01R31/31907G01R31/3172
    • The testing method of the present invention for testing a plurality of devices under test connected to a test module includes (a) determining combinations of devices under test that can theoretically be measured simultaneously from among the combinations of the plurality of devices under test based on at least the connection relationship between the test module and the plurality of devices under test. The resting method further includes (b) testing the plurality of devices under test by sequentially selecting the combinations of devices under test to be actually measured simultaneously from the combinations determined in (a).
    • 用于测试连接到测试模块的多个待测器件的本发明的测试方法包括:(a)确定在理论上可以从被测试的多个器件的组合中基于at 至少测试模块与被测试的多个设备之间的连接关系。 休息方法还包括(b)通过从(a)中确定的组合中顺序地选择要被实际测量的实际测量的被测器件的组合来测试被测试的多个器件。