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    • 22. 依法登记的发明
    • Polygenic trait determinants: maize dwarf mosaic virus
    • 多基因性状决定因素:玉米矮花叶病毒
    • USH1498H
    • 1995-11-07
    • US50965
    • 1993-04-21
    • Michael G. MurrayJane H. CramerJeanne Romero-SeversonDavid WestYu Ma
    • Michael G. MurrayJane H. CramerJeanne Romero-SeversonDavid WestYu Ma
    • A01H5/10A01H1/00
    • A01H5/10
    • A set of nucleic acid probes useful for tracking Maize Dwarf Mosaic Virus Resistance (MDMV), a polygenic trait, is provided. Chromosome segments are identified enabling isolation of the genes governing this trait.A general method for identifying probes useful for tracking and introgressing polygenic traits into elite genomes and identifying chromosome segments governing the traits is also provided. This method involves the analysis of RFLP polymorphisms between parent donor and recipient genotypes and observed phenotypic data using multiple regression by leaps and bounds ("leaps"), followed by standard multiple regression applied to the "leaps" data. The "leaps" data may be used to identify flanking markers, and epistasis may be determined by analysis of the multiple regression data.Kits comprising a subset of the most useful probes (those most closely linked to the trait of interest) are provided. The kits may also comprise flanking probes. Flanking probes used in combination with the most closely linked probes are useful in identifying situations in which donor DNA tends to move in clumps and recovering rare individuals in which traits of interest have separated from surrounding donor DNA, so that elite recipient DNA may be maximized.
    • 提供了一套用于跟踪玉米矮花叶病毒抗性(MDMV)的多核基因特征的核酸探针。 鉴定染色体片段能够分离控制该性状的基因。 还提供了用于鉴定用于跟踪和将多基因性状渗入精英基因组并鉴定控制性状的染色体片段的探针的一般方法。 该方法涉及使用多跳回归(“跨越”)分析父母供体和受体基因型之间的RFLP多态性,并使用多重回归(“跨越”)观察表型数据,然后应用于“跨越”数据的标准多元回归。 “跳跃”数据可以用于鉴定侧翼标记,并且可以通过分析多个回归数据来确定上位稳定性。 提供了包含最有用的探针子集(最感兴趣的特征)的试剂盒。 试剂盒还可以包含侧翼探针。 与最紧密连接的探针结合使用的侧翼探针可用于鉴定供体DNA倾向于移动并且回收其中感兴趣的性状与周围供体DNA分离的稀有个体的情况,从而可以使精英受体DNA最大化。
    • 25. 发明申请
    • Method and Apparatus for Efficient Implementation of Design Changes
    • 有效实施设计变更的方法和装置
    • US20120084212A1
    • 2012-04-05
    • US13252172
    • 2011-10-03
    • Lawrence Allen SinorEric PaulsenDavid West
    • Lawrence Allen SinorEric PaulsenDavid West
    • G06Q10/00
    • G06F17/50E21B10/00G06F2217/04G06Q10/101
    • The disclosed embodiments allow a user to request new product designs and design changes remotely. The requested design or change is then submitted to a network-based automated process. The process may be remotely accessed by the user through a network connection. In one embodiment, the user may meet directly with a customer, pull up the specifications for the product in question, select a design or change desired by the customer, and submit the design or change. The process works in the background to validate the requested design according to one or more validation rules and/or best practices, and completes many of the necessary tasks to allow the requested design to proceed to manufacturing. Once the process has successfully completed the requested change, a notification is sent to the user containing information about the new or changed product, such as the new part number, order number, and the like.
    • 所公开的实施例允许用户远程请求新产品设计和设计变更。 然后将所请求的设计或更改提交到基于网络的自动化过程。 该过程可以由用户通过网络连接远程访问。 在一个实施例中,用户可以直接与客户会面,提取相关产品的规格,选择顾客所需的设计或变更,并提交设计或更改。 该过程在后台根据一个或多个验证规则和/或最佳实践来验证所请求的设计,并完成许多必要的任务以允许所请求的设计进行制造。 一旦该过程已成功完成所请求的改变,则向用户发送包含关于新的或已更改的产品的信息的通知,诸如新的部件号,订单号等。
    • 26. 发明申请
    • METHOD FOR FORMING AN ETCHED SOFT EDGE METAL FOIL AND THE PRODUCT THEREOF
    • 用于形成蚀刻软边金属箔及其制品的方法
    • US20070157762A1
    • 2007-07-12
    • US11457369
    • 2006-07-13
    • Raymond FrechetteDavid WestChristopher MachadoChristopher Sullivan
    • Raymond FrechetteDavid WestChristopher MachadoChristopher Sullivan
    • B21K11/00
    • B26B19/384C23F1/02C25F3/14
    • A metal processing method includes etching to remove material from a thin metal part. A pattern of etch resistant material is used to prevent etching of the metal in desired locations. The etch resistant material is intentionally applied to unclean surfaces so that an adhesion between the etch resistant material and the metal will fail during the etching process. An edge is formed during etching at the boundaries of the pattern of the etch resistant material. These edges are rounded where the adhesion fails. A shaver foil is produced using the described metal processing method including a face side, a cutter side and a plurality of whisker holes. A face edge is formed where an etched profile of the whisker hole meets the face side and a cutter edge is formed where the etched profile of the whisker hole meets the cutter side. The face edge is rounded using the aforementioned process and the cutter edge is sharp using a conventional etch resistant material application method.
    • 金属加工方法包括蚀刻以从薄金属部件去除材料。 使用耐腐蚀材料的图案来防止金属在所需位置的蚀刻。 耐蚀刻材料被有意地施加到不洁表面,使得在蚀刻工艺期间,耐蚀刻材料和金属之间的粘合将失效。 在蚀刻期间在耐蚀刻材料的图案的边界处形成边缘。 这些边缘在附着失败的地方是圆形的。 使用包括正面,切割面和多个晶须孔的所述金属加工方法制造剃须刀箔。 形成面边缘,其中晶须孔的蚀刻轮廓与表面侧相交,并且形成切割刃,其中晶须孔的蚀刻轮廓与切割器侧相交。 使用上述工艺使面边缘变圆,并且使用常规的耐蚀刻材料施加方法使切割刃锋利。