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    • 1. 发明申请
    • ISOXAZOLINE-SUBSTITUTED BENZAMIDE COMPOUND AND PESTICIDE
    • ISOXAZOLINE-替代苄基化合物和杀虫剂
    • US20110144334A1
    • 2011-06-16
    • US13010479
    • 2011-01-20
    • Takeshi MITAYuki FurukawaKen-ichi ToyamaManabu YaosakaEitatsu IkedaYoshihide MasuzawaMitsuaki Komoda
    • Takeshi MITAYuki FurukawaKen-ichi ToyamaManabu YaosakaEitatsu IkedaYoshihide MasuzawaMitsuaki Komoda
    • C07D403/04C07D261/04C07D413/04
    • C07C237/32A01N43/80C07C237/36C07D213/75C07D213/81C07D237/20C07D239/42C07D241/20C07D401/12C07D413/04
    • An isoxazoline-substituted benzamide compound of formula (1) or a salt thereof: wherein A1, A2 and A3 independently of one another are carbon atom or nitrogen atom, G is benzene ring, etc., W is oxygen atom or sulfur atom, etc., X is halogen atom, C1-C6haloalkyl, etc., Y is halogen atom, C1-C6alkyl, etc., R1 is —CH═NOR1a, —C(O)OR1c, —C(O)NHR1d, phenyl substituted with (Z)p1, D-14, D-52, D-53, D-55 to D-59, etc., R1a is C1-C6alkyl, etc., R1c is C1-C6alkyl, etc., R1d is hydrogen atom, —C(O)R15, —C(O)OR15, etc., R2 is C1-C6alkyl, —CH2R14a, C1-C6alkynyl, —C(O)R15, —C(O)OR15, etc., further when R1 is —CH═NOR1a, —C(O)OR1c or —C(O)N(R1e)R1d, R2 may be hydrogen atom, R3 is C1-C6haloalkyl, etc., R14a is cyano, —OR25, etc., R15 is C1-C6alkyl, C1-C6haloalkyl, C1-C4alkoxy C1-C4alkyl, C1-C4alkylthio C1-C4alkyl, C3-C6cycloalkyl, C2-C6alkenyl, etc., R25 is C1-C4alkyl, C1-C4haloalkyl, —C(O)R32 or —C(O)OR32, etc., R32 is C1-C6alkyl or C3-C6cycloalkyl, etc., Z is halogen atom, cyano, nitro, C1-C6alkyl, C1-C6alkoxy, etc., m is an integer of 0 to 5, n is an integer of 0 to 4, p1 is an integer of 1 to 5. The pesticide containing these compounds.
    • 式(1)的异恶唑啉取代的苯甲酰胺化合物或其盐:其中A1,A2和A3彼此独立地为碳原子或氮原子,G为苯环等,W为氧原子或硫原子等 ,X是卤素原子,C 1 -C 6卤代烷基等,Y是卤素原子,C 1 -C 6烷基等,R 1是-CH = NOOR 1,-C(O)OR 1 c,-C(O)NHR 1d, (Z)p1,D-14,D-52,D-53,D-55〜D-59等,R1a为C1-C6烷基等,R1c为C1-C6烷基等,R1d为氢原子 ,-C(O)R 15,-C(O)OR 15等,R 2是C 1 -C 6烷基,-CH 2 R 14a,C 1 -C 6炔基,-C(O)R 15,-C(O)OR 15等 R1为-CH = NO1a,-C(O)OR1c或-C(O)N(R1e)R1d,R2为氢原子,R3为C1-C6卤代烷基等,R14a为氰基,-OR25等, R 15是C 1 -C 4烷基,C 1 -C 4烷基,C 1 -C 4烷基,C 1 -C 4烷氧基,C 1 -C 4烷基,C 1 -C 4烷硫基C 1 -C 4烷基,C 3 -C 6环烷基,C 2 -C 6链烯基等。 R32或-C(O)OR32等,R32是C1-C6烷基或C3-C6环烷基等,Z是卤素 原子,氰基,硝基,C1-C6烷基,C1-C6烷氧基等,m为0〜5的整数,n为0〜4的整数,p1为1〜5的整数,含有这些化合物的农药。
    • 7. 发明申请
    • STEREOSCOPIC IMAGE GENERATION APPARATUS AND METHOD
    • 立体图像生成装置和方法
    • US20120008855A1
    • 2012-01-12
    • US13052937
    • 2011-03-21
    • Ryusuke HIRAITakeshi MITANao MISHIMAKenichi SHIMOYAMAMasahiro BABA
    • Ryusuke HIRAITakeshi MITANao MISHIMAKenichi SHIMOYAMAMasahiro BABA
    • G06K9/00
    • H04N13/117
    • According to embodiments, a stereoscopic image generation apparatus for generating a disparity image based on at least one image and depth information corresponding to the at least one image is provided. The apparatus includes a calculator, selector and generator. The calculator calculates, based on the depth information, evaluation values that assume larger values with increasing hidden surface regions generated upon generation of disparity images for respective viewpoint sets each including two or more viewpoints. The selector selects one of the viewpoint sets based on the evaluation values calculated for the viewpoint sets. The generator generates, from the at least one image and the depth information, the disparity image at a viewpoint corresponding to the one of the viewpoint sets selected by the selector.
    • 根据实施例,提供了一种立体图像生成装置,用于基于至少一个图像生成视差图像,并且提供与至少一个图像相对应的深度信息。 该装置包括计算器,选择器和发生器。 计算器基于深度信息,根据产生每个包括两个或更多个视点的各个视点集的视差图像产生的增加的隐藏表面区域而计算出较大值的评估值。 选择器基于针对视点集计算的评估值来选择视点集合中的一个。 发生器从与该选择器所选择的一个视点集相对应的视点从该至少一个图像和深度信息生成视差图像。
    • 8. 发明申请
    • IMAGE PROCESSING DEVICE, METHOD OF PROCESSING IMAGE, AND IMAGE DISPLAY APPARATUS
    • 图像处理装置,图像处理方法和图像显示装置
    • US20130121560A1
    • 2013-05-16
    • US13360062
    • 2012-01-27
    • Ryusuke HIRAITakeshi MITAKenichi SHIMOYAMA
    • Ryusuke HIRAITakeshi MITAKenichi SHIMOYAMA
    • G06K9/00
    • G06K9/00G06K9/00261G06T7/285G06T7/70G06T2207/10012G06T2207/10016G06T2207/30201
    • According to an embodiment, an image processing device includes: a first acquiring unit, a second acquiring unit, a first setting unit, a second setting unit, a first calculating unit, and a second calculating unit. The first acquiring unit acquires a plurality of captured images by imaging a target object from a plurality of positions. The second acquiring unit acquires a provisional three-dimensional position and a provisional size. The first setting unit sets at least one search candidate point near the provisional three-dimensional position. The second setting unit sets a search window for each projection position where the search candidate point is projected, the search window having a size. The first calculating unit calculates an evaluation value that represents whether or not the target object is included inside the search window. The second calculating unit calculates a three-dimensional position of the target object based on the evaluation value.
    • 根据实施例,图像处理装置包括:第一获取单元,第二获取单元,第一设置单元,第二设置单元,第一计算单元和第二计算单元。 第一获取单元通过从多个位置对目标对象进行成像而获取多个拍摄图像。 第二获取单元获取临时三维位置和临时尺寸。 第一设置单元在临时三维位置附近设置至少一个搜索候选点。 第二设定单元设置搜索候选点投影的每个投影位置的搜索窗口,搜索窗口具有尺寸。 第一计算单元计算表示目标对象是否包括在搜索窗口内的评估值。 第二计算单元基于评估值计算目标对象的三维位置。
    • 10. 发明申请
    • IMAGE PROCESSING DEVICE, METHOD AND COMPUTER PROGRAM PRODUCT, AND IMAGE DISPLAY APPARATUS
    • 图像处理装置,方法和计算机程序产品以及图像显示装置
    • US20130162783A1
    • 2013-06-27
    • US13593594
    • 2012-08-24
    • Nao MISHIMATakeshi MITA
    • Nao MISHIMATakeshi MITA
    • H04N13/02
    • H04N13/111H04N13/156
    • In an embodiment, an image processing device includes: a first acquiring unit that acquires a plurality of parallax images having parallax between one another; a second acquiring unit that acquires identification information of a parallax image to be observed from a predetermined observing point position in each of a plurality of regions into which a display area on which three-dimensional image is configured to be displayed is divided, each of the regions including at least one element image, and the element image including each pixel in the plurality of parallax images; a corrector that corrects pixels at positions corresponding to the regions in the parallax images into pixels of parallax images identified by the identification information; and a first generator that generates the three-dimensional image from the parallax images resulting from the correction.
    • 在一个实施例中,图像处理装置包括:第一获取单元,其获取具有彼此之间的视差的多个视差图像; 第二获取单元,其被划分为将三维图像配置为显示的多个区域中的每个区域中的预定观察点位置中的待观察的视差图像的识别信息分割, 包括至少一个元素图像的区域和包括多个视差图像中的每个像素的元素图像; 校正器,将对应于视差图像中的区域的位置处的像素校正为由识别信息识别的视差图像的像素; 以及从校正得到的视差图像生成三维图像的第一生成器。