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    • 83. 发明申请
    • Conformation analysis device, analysis method, conformational notation device and notation method
    • 构象分析装置,分析方法,构图符号装置和符号法
    • US20090248321A1
    • 2009-10-01
    • US12385856
    • 2009-04-22
    • Hiroshi IzumiAtsushi OgataKazuyuki TakeoHideki Kobayashi
    • Hiroshi IzumiAtsushi OgataKazuyuki TakeoHideki Kobayashi
    • G06F19/00G01N31/00G06G7/58
    • G01N21/19G01N2201/129G16C10/00
    • A conformation analysis device and analysis method with which discrimination can be achieved even if there is a subtle difference in a conformational structure, a given molecule can be processed in a unified manner, and large-scale computer processing can be performed, and a conformational notation device and notation method with which even in the case where a conformation cannot be uniquely determined if a rule in accordance with the IUPAC Nomenclature is followed, the conformation can be uniquely notated, a given molecule can be processed in a unified manner, and large-scale computer processing can be performed, are provided. In one embodiment of the invention, a processing section receives an input of a chemical structural formula of a compound to be analyzed, puts a predetermined code indicating a dihedral angle to each chemical binding site based on the received chemical structural formula, extracts an encoded conformational notation of interest with respect to a structure capable of uniquely determining a conformation with one conformational notation, and stores the extracted encoded conformational notation in a storage section. Then, the processing section creates a molecular model based on the extracted encoded conformational notation, performs geometry optimization and frequency calculation for the created molecular model, determines a geometry optimized structure and a physical property value of the geometry optimized structure, extracts the encoded conformational notation from the storage section, and performs a homology analysis based on the notation.
    • 一种构象分析装置和分析方法,即使在构象结构中存在微妙的差异也可以实现辨别,可以统一地处理给定的分子,并且可以进行大规模的计算机处理,并且构造符号 装置和符号方法,即使在遵循符合IUPAC命名的规则的情况下,如果不能唯一确定构象的情况下,可以唯一地注明构象,可以以统一的方式处理给定的分子, 可以进行规模化的计算机处理。 在本发明的一个实施方案中,处理部分接收待分析化合物的化学结构式的输入,根据所接收的化学结构式,给每个化学结合位点放置一个表示二面角的预定代码,提取编码的构象 关于能够以一种构象符号唯一地确定构象的结构的关注符号,并将所提取的编码构象符号存储在存储部分中。 然后,处理部分基于提取的编码构象符号创建分子模型,对所创建的分子模型执行几何优化和频率计算,确定几何优化结构的几何优化结构和物理属性值,提取编码的构象符号 并从存储部分进行基于符号的同源性分析。
    • 85. 发明授权
    • Film-forming silicone resin composition
    • 成膜硅树脂组合物
    • US07368500B2
    • 2008-05-06
    • US10484128
    • 2002-07-26
    • Hideki KobayashiMotoshi SasakiToru Masatomi
    • Hideki KobayashiMotoshi SasakiToru Masatomi
    • C08L83/06
    • C09D183/10C08G77/44
    • A film-forming silicone resin composition, comprising a reaction product obtained by a method comprising the step of heating (A) an alkoxysilyl-functional organopolysiloxane obtained by running an equilibration reaction with components comprising (A1) a polydiorganosiloxane and (A2) an alkylpolysilicate in the presence of (A3) an equilibration polymerization catalyst; (B) colloidal silica, aluminum oxide, antimony oxide, titanium oxide, or zirconium oxide; and (C) water, and a curable film-forming silicone resin composition, comprising above film-forming silicone resin composition and (E) a condensation reaction catalyst.
    • 一种成膜有机硅树脂组合物,其包含通过包括以下步骤的方法获得的反应产物:(A)通过与包含(A1)聚二有机硅氧烷和(A2)聚烷基硅酸盐的组分进行平衡反应获得的烷氧基甲硅烷基官能的有机聚硅氧烷 (A3)平衡聚合催化剂的存在; (B)胶体二氧化硅,氧化铝,氧化锑,氧化钛或氧化锆; 和(C)水,以及包含上述成膜硅树脂组合物和(E)缩合反应催化剂的可固化成膜硅树脂组合物。
    • 89. 发明申请
    • Image encoder, image encoding method, recording medium and computer data signal embodied in a carrier wave
    • 图像编码器,图像编码方法,记录介质和体现在载波中的计算机数据信号
    • US20070025629A1
    • 2007-02-01
    • US11543952
    • 2006-10-06
    • Hideki KobayashiKouichirou Hirao
    • Hideki KobayashiKouichirou Hirao
    • G06K9/36G06K9/34
    • G06T9/005
    • A processor performs layout analysis, and classifies pieces of bitmap data into a character area and a picture area. The processor divides each of the character area and the picture area into a plurality of tiles having a predetermined shape, thereby creating a table including information representing either character attribute or picture attribute in association with each tile number. The processor performs scalar quantization for data of each tile using a quantization coefficient for characters or pictures, based on the created table. The processor encodes the data of each tile using an SNR progressive technique or a resolution progressive technique, and performs post quantization for the data using a quantization parameter for characters or pictures. Then, the processor stores the encoded data into a storage device.
    • 处理器执行布局分析,并将位图数据分成字符区域和图片区域。 处理器将每个字符区域和图像区域划分成具有预定形状的多个图块,从而创建一个表格,该表格包括表示与每个瓦片号码相关联的字符属性或图片属性的信息。 处理器使用基于所创建的表的字符或图片的量化系数对每个图块的数据执行标量量化。 处理器使用SNR逐行技术或分辨率逐行技术对每个瓦片的数据进行编码,并且使用用于字符或图片的量化参数对数据进行后量化。 然后,处理器将编码的数据存储到存储设备中。