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    • 71. 发明授权
    • Lithographic printing plate comprising a porous non-anodic layer
    • 平版印刷版包括多孔非阳极层
    • US08877426B2
    • 2014-11-04
    • US11242292
    • 2005-10-03
    • Dina KatsirZvi FinkelsteinYuri Zarnitsky
    • Dina KatsirZvi FinkelsteinYuri Zarnitsky
    • B41N1/00B41N3/00G03C1/00G03F7/00G03F7/11B41N1/08
    • B41N1/08G03F7/11
    • A printing plate comprises a substantially planar substrate, a porous non-anodic ungrained coating, having a thickness within the range of about 0.1 to about 30 microns and comprising at least one of metals, metal oxides and admixtures thereof, and an image recording layer, provided that where the porous coating consists essentially of oxide(s) only, it comprises at least one oxide of copper, magnesium, cadmium, aluminum, zirconium, hafnium, thorium, chromium, tungsten, molybdenum and (or) cobalt, and further provided that where the porous coating consists essentially of alumina only, it comprises specified pores. The invention also relates to an article of manufacture having a nanometric porous surface layer comprising at least one of metals, metal oxides and mixtures thereof, which comprises pores in the surface layer having a width in a range 0-100 nm, and wherein a major number of pores in this range have a width in a band of about 1 to about 30 nm.
    • 印版包括基本平坦的基底,多孔非阳极未研磨的涂层,其厚度在约0.1至约30微米的范围内,并且包括金属,金属氧化物及其混合物中的至少一种,以及图像记录层, 只要多孔涂层仅基本上由氧化物组成,则其包含至少一种铜,镁,镉,铝,锆,铪,钍,铬,钨,钼和(或)钴的氧化物,并进一步提供 其中多孔涂层基本上仅由氧化铝组成,其包含指定的孔。 本发明还涉及具有包含金属,金属氧化物及其混合物中的至少一种的纳米多孔表面层的制品,该纳米多孔表面层包括具有在0-100nm范围内的宽度的表面层中的孔,并且其中主要 在该范围内的孔的数量具有约1至约30nm的带宽。
    • 72. 发明授权
    • Methods of identifying a pair of binding partners
    • 识别一对约束伴侣的方法
    • US08871686B2
    • 2014-10-28
    • US13382910
    • 2010-07-07
    • John Farid GhadessySaurabh Nirantar
    • John Farid GhadessySaurabh Nirantar
    • C12Q1/68G01N33/53C12N15/66G03C1/015
    • C12Q1/6858C12Q1/6816G01N33/6845G01N2458/10C12Q2563/179
    • The invention relates to methods of identifying a binding partner of a target molecule within a plurality of analyte molecules, including a plurality of peptides and/or proteins. The target molecule is physically combined with a target labeling nucleic acid molecule. Each member of the plurality of analyte molecules is physically linked to an analyte labeling nucleic acid molecule, each analyte labeling nucleic acid molecule comprising a selected nucleotide sequence. This specific nucleotide sequence may include a sequence encoding a peptide/protein combined therewith. The target molecule is contacted with the analyte molecules and a complex between the target molecule and an analyte molecule forms. The mixture is subdivided into compartments. The target labeling nucleic acid molecule and the analyte labeling nucleic acid molecule are linked and the plurality of compartments allowed to disintegrate. The linked nucleic acid molecule is retrieved and the sequence determined.
    • 本发明涉及鉴定多个分析物分子(包括多个肽和/或蛋白质)内的靶分子的结合配偶体的方法。 靶分子与靶标记核酸分子物理组合。 多个分析物分子的每个成员与分析物标记核酸分子物理连接,每个分析物标记核酸分子包含所选择的核苷酸序列。 该特定核苷酸序列可以包括编码与其结合的肽/蛋白质的序列。 靶分子与分析物分子接触,并且靶分子与分析物分子之间形成复合物。 混合物被细分成隔间。 靶标记核酸分子和分析物标记核酸分子连接,并使多个隔室分解。 检索连接的核酸分子并确定序列。