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    • 31. 发明申请
    • Method for the electrophoretic coating of dental substrates
    • 牙科基底电泳涂层方法
    • US20070029199A1
    • 2007-02-08
    • US10569589
    • 2004-08-10
    • Stefan Wolz
    • Stefan Wolz
    • C25B7/00
    • A61C13/001
    • The coating of dental substrates, such as the stumps of a working model or implants including ceramics, e.g. alumina, by means of electrophoresis results, especially because of the production of gas, in products unfit for use. It is therefore the aim of the invention to provide a coating method that allows for a high-quality coating of dental substrates in the shortest time possible, irrespective of the material constitution of the substrate. According to the inventive method, the substrate (stump 2) is fixated in an insulating mass (3) in a vertical holder (1). The substrate is coated with a separating agent and a hygroscopic layer and a further layer is applied thereon by shortly dipping the stump into the slip (6). The current used for electrophoresis is supplied via the layer (7) so formed. The inventive method, when used for non-conducting substrates, requires no silver enamel or the like. The method can also be used for conducting substrates, e.g. titanium implants, as the current flows only via the layer (7).
    • 牙科基材的涂层,例如工作模型的树桩或包括陶瓷的植入物,例如, 氧化铝,通过电泳结果,特别是因为生产的气体,不适合使用的产品。 因此,本发明的目的是提供一种涂覆方法,其可以在最短的时间内允许牙科基材的高质量涂覆,而与基材的材料结构无关。 根据本发明的方法,将衬底(残端2)固定在垂直保持器(1)中的绝缘块(3)中。 衬底被涂覆有分离剂和吸湿层,并且通过将树桩短时间浸入滑块(6)中而在其上施加另外的层。 用于电泳的电流经由如此形成的层(7)供给。 本发明的方法当用于非导电基材时,不需要银搪瓷等。 该方法也可以用于导电基底,例如 钛植入物,因为电流仅通过层(7)流动。
    • 32. 发明申请
    • Method for batch fabricating electron emission source of electrophoresis deposited carbon nanotubes
    • 批量制作电泳沉积碳纳米管的电子发射源的方法
    • US20070000782A1
    • 2007-01-04
    • US11168487
    • 2005-06-29
    • Kuei-Wen ChengJin-Lung TsaiShie-Heng LeeYu-An LiChun-Yen Hsiao
    • Kuei-Wen ChengJin-Lung TsaiShie-Heng LeeYu-An LiChun-Yen Hsiao
    • C25B7/00
    • C25D13/02C25D13/12
    • A method for batch fabricating electron emission source of electrophoresis deposited carbon nanotubes includes preparing a semi-manufactured cathode structure and a metallic plate connected with electrophoresis electrodes. The cathode structure and the metallic plate that are parallel to each other are separated with a fixed distance and are rinsed in an electrophoresis solution. A processe is performed to remove the bubbles formed in the cathode structure, and to electrophoresis deposit the carbon nanotubes onto the cathode structure. After each deposition process is completed, the cathode structure is baked under a low temperature so as to remove the residual solution remained on the cathode structure. After a homogeneous carbon nanotubes layer is deposited to form the electron emission source, a sintering process is performed so as to transfer the chargers into conductive metallic oxide salts. Thereby, the electron conduction of the carbon nanotubes and the cathode electrode layer is enhanced.
    • 批量制造电泳沉积碳纳米管的电子发射源的方法包括制备半制成的阴极结构和与电泳电极连接的金属板。 将彼此平行的阴极结构体和金属板以一定距离分离,并在电泳液中进行冲洗。 执行处理以去除阴极结构中形成的气泡,并将碳纳米管电泳电沉积到阴极结构上。 在每个沉积工艺完成后,在低温下烘烤阴极结构,以除去留在阴极结构上的残余溶液。 在沉积均匀的碳纳米管层以形成电子发射源之后,进行烧结工艺以将充电器转移到导电金属氧化物盐中。 由此,能够提高碳纳米管和阴极电极层的电子传导。
    • 39. 发明授权
    • DNA sequencing
    • DNA测序
    • US6143153A
    • 2000-11-07
    • US891156
    • 1997-07-10
    • Lyle R. MiddendorfJohn Brumbaugh
    • Lyle R. MiddendorfJohn Brumbaugh
    • C07D209/60C12N15/00C12N15/09C12Q1/68G01N21/64G01N27/26G01N27/447G01N33/50G01N33/58C25B7/00C07K1/26C25B15/00
    • G01N27/44726C07D209/60C12Q1/6816C12Q1/6869G01N21/6428G01N27/447G01N27/44721Y10S435/803
    • To sequence long strands of DNA, clone strands having lengths longer than 100 bases are, in one embodiment, marked on one end with biotin. These strands are divided into 4 aliquots and each aliquot: (1) is uniquely chemically treated to randomly terminate the strands at the nonbiotinylated end at a selected type of base; and (2) is moved continuously by electrophoresis through a different one of four identical channels. In the one embodiment, the strands are randomly terminated at a selected base type and they are moved into avidin, which due to high affinity, combines with the biotin marked ends of shorter strands before the longer strands are fully resolved in the gel. The avidin is marked with fluorescein, the strands are scanned and the signals are decoded. In another embodiment, the strands are synthesized, with termination at a selected base type and marked either by the above method of by ethidium bromide.
    • 为了序列长链DNA,长度超过100个碱基的克隆链在一个实施方案中在一端用生物素标记。 将这些链分成4等份,并且每个等分试样:(1)被唯一化学处理以在选定类型的碱基处的非生物素化末端随机终止链; 和(2)通过电泳通过四个相同通道中的不同的一个连续移动。 在一个实施方案中,链以选定的碱基类型随机终止,并且它们被移动到抗生物素蛋白中,其由于高亲和力而与长链在凝胶中完全分解之前与短链的生物素标记的末端结合。 抗生物蛋白标记有荧光素,扫描股线并对信号进行解码。 在另一个实施方案中,所述链被合成,终止于所选择的碱基类型,并通过上述方法用溴化乙锭标记。
    • 40. 再颁专利
    • Electrophoresis pattern reading system of fluorescence type
    • 荧光型电泳图案读取系统
    • USRE36826E
    • 2000-08-22
    • US160747
    • 1993-12-03
    • Hitoshi FujimiyaShigeo NakajimaHisanori NasuKeigi Koga
    • Hitoshi FujimiyaShigeo NakajimaHisanori NasuKeigi Koga
    • G01N21/64G01N21/17G01N27/447C25B7/00C25B9/00
    • G01N27/44704G01N27/44721
    • An electrophoresis pattern reading system of fluorescent type is comprised of a detachable migration unit comprising a gel functioning as a base for electrophoresis and a gel-supporting body for supporting the gel; an electrophoresis unit, to which the migration unit is mounted, for performing electrophoresis by applying migrating voltage to the gel to which a sample labeled with a fluorescent substance is added; and a reading unit including an instrumentation subunit for reading an electrophoresis pattern, to which the migration unit is mounted after electrophoresis and which receives fluorescence emitted from the fluorescent substance of the sample on the gel upon application of light to the gel. For example, a plurality of the migration units and the electrophoresis units are provided, and each of the plural migration units are mounted to one reading unit in order after electrophoresis has been performed with the respective electrophoresis units for a long period of time, thereby reading the electrophoresis pattern in a short period of time.
    • 荧光型电泳图案读取系统由包含用作电泳基底的凝胶和用于支撑凝胶的凝胶支撑体构成的可拆卸迁移单元构成; 电泳单元,安装有迁移单元的电泳单元,用于通过向添加有荧光物质标记的样品的凝胶施加迁移电压来进行电泳; 以及读取单元,其包括用于读取电泳图案的仪器子单元,电泳后安装迁移单元,并且在向凝胶施加光时接收从凝胶上的样品的荧光物质发出的荧光。 例如,设置多个迁移单元和电泳单元,并且在各电泳单元长时间进行电泳以后,将多个迁移单元中的每一个依次安装到一个读取单元,从而读取 电泳模式在短时间内。