会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 83. 发明申请
    • Method and apparatus for design and display of primers
    • 引物设计和显示的方法和装置
    • US20060177846A1
    • 2006-08-10
    • US11289378
    • 2005-11-30
    • Takamune YamamotoNoriyuki YamamotoDaisuke Sakurai
    • Takamune YamamotoNoriyuki YamamotoDaisuke Sakurai
    • C12Q1/68G06F19/00
    • G16B45/00G16B25/00G16B30/00
    • A technology that allows a consensus sequence targeted for primer design to be easily displayed is provided. In sequence data of analysis targets, a consensus nucleotide sequence is generated by performing multiple sequence alignment based on nucleotide sequence, and a consensus amino acid sequence is generated by performing multiple sequence alignment based on amino acid sequence, followed by generating additional consensus nucleotide sequence by reverse translation of the consensus amino acid sequence. In other words, two consensus sequences consisting of the consensus sequence based on nucleotide sequence and the consensus sequence based on amino acid sequence are generated. One of these two consensus sequences can be chosen as a target for primers on a screen to input parameters for primer design.
    • 提供了一种能够容易地显示针对引物设计的共识序列的技术。 在分析目标的序列数据中,通过基于核苷酸序列进行多个序列比对来产生共有核苷酸序列,并且通过基于氨基酸序列进行多个序列比对来产生共有氨基酸序列,随后通过 共同氨基酸序列的反向翻译。 换句话说,产生由基于核苷酸序列的共有序列和基于氨基酸序列的共有序列组成的两个共有序列。 可以选择这两个共有序列之一作为屏幕上的引物的目标,以输入引物设计的参数。
    • 85. 发明申请
    • Figure moving method
    • 图移动方式
    • US20050068341A1
    • 2005-03-31
    • US10890106
    • 2004-07-14
    • Daisuke SakuraiNoriyuki YamamotoKotoe Nishio
    • Daisuke SakuraiNoriyuki YamamotoKotoe Nishio
    • G01N33/53G01N37/00G06F3/033G06F3/048G06T11/80G06K9/00
    • G06F3/04845
    • A method of moving figures whereby a number of aligned figures can be efficiently moved while maintaining the alignment. The method includes a figure group generating step of generating a plurality of figure groups arranged in a matrix by grouping a plurality of figures arranged in a matrix; an overall reference figure setting step of setting an overall reference figure selected from said plurality of figures; an entire figure moving step of moving all of the figures in the same manner as said overall reference figure when said overall reference figure is selected and moved; a reference figure setting step of setting a single reference figure selected from said plurality of figures in each of said figure groups; and a figure group moving step of moving all of the figure groups except for the figure group containing said overall reference figure while maintaining the relative relationships between the rows and columns and between the figure groups, when one of said reference figures is selected and moved.
    • 一种移动图形的方法,由此可以在保持对准的同时有效地移动多个对准的图形。 该方法包括:图形组生成步骤,通过分组以矩阵排列的多个图形来生成以矩阵形式排列的多个图形组; 整体参考图设定步骤,设定从所述多个图中选择的总体参考图形; 整个图形移动步骤,当选择和移动所述总体参考图形时,以与所述总体参考图相同的方式移动所有图形; 参考图形设置步骤,设置从每个所述图形组中的所述多个图形中选择的单个参考图形; 以及图形组移动步骤,当选择和移动所述参考图中的一个时,移动除了包含所述总体参考图的图组之外的所有图组,同时维持行和列之间以及图组之间的相对关系。
    • 88. 发明授权
    • Automatic bread producing machine
    • US5887512A
    • 1999-03-30
    • US918803
    • 1997-08-26
    • Yasuhiro KakimotoTakahiro OhshitaNoriyuki Yamamoto
    • Yasuhiro KakimotoTakahiro OhshitaNoriyuki Yamamoto
    • A21B7/00A47J27/00
    • A21B7/005
    • An automatic bread producing machine includes, in a baking chamber, a vessel unit having a bread vessel where a mixing vane for mixing bread ingredients is rotatably provided and a cylindrical bread vessel support fixed to an underside of the bread vessel. The bread vessel support has stoppers formed on the lower circumference thereof. The machine further includes a vessel mounting support mounted at the bottom of the baking chamber for receiving therein the bread vessel support. The vessel mounting support has cutouts formed at its circumferential wall for receiving and firmly holding the stoppers, respectively. Recessed portions are further formed at the circumferential wall of the vessel mounting support for guiding the stoppers to positions adjacent to the corresponding cutouts, respectively. Each cutout is provided adjacent to a lower end of the recessed portion and at one side of the recessed portion located in a rotation direction of the mixing vane. Each stopper is automatically received and locked in position in the corresponding cutout due to a rotation force of the mixing vane so that the vessel unit is automatically fixed relative to the vessel mounting support. While the stoppers are locked in position, an upper surface of each stopper engages with an upper wall surface of the corresponding cutout. The upper surfaces of each stopper and cutout are so shaped as to urge the vessel unit downward during rotation of the mixing vane.