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    • 2. 发明授权
    • Rice and products thereof having starch with an increased proportion of amylose
    • US07790955B2
    • 2010-09-07
    • US10577564
    • 2004-10-27
    • Zhongyi LiMatthew Kennedy MorellSadequr Rahman
    • Zhongyi LiMatthew Kennedy MorellSadequr Rahman
    • A01H5/10C12N15/00C12N15/11C12N15/29C07H21/02
    • C12N9/107A23L7/196A23L7/198A23L29/212A23V2002/00C12N15/8245A23V2300/21
    • Rice having reduced levels of starch branching enzymes produce grain having a high relative amylose content in the endosperm. The rice grain of this invention can be of a non-shrunken phenotype despite a lesion in the amylopectin synthesis pathway and may be transgenic or nontransgenic.    1 GCCACCGACA TCCGCCGCAA TGCTGTGTCT CACCTCCTCT TCCTCCTCCG CGCCCGCTCC   61 GCTCCTTCCC TCTCTCGCTG ATCGACCGAG CCCGGGAATC GCGGGCGGGG GTGGCAATGT  121 TCGCCTGAGC GTGGTTTCTT CGCCGCGCCG GTCGTGGCCT GGAAAGGTCA AGACCAATTT  181 CTCAGTTCCT GCGACTGCGC GAAAAAACAA AACCATGGTG ACTGTTGTGG AGGAGGTCGA  241 CCACCTTCCT ATATATGATC TGGACCCTAA GTTGGAGGAA TTCAAGGATC ACTTCAACTA  301 TAGGATAAAA AGATACCTCG ACCAGAAATG CCTGATTGAA AAACATGAGG GGGGCCTTGA  361 AGAATTTTCT AAAGGCTATT TGAAGTTTGG GATTAATACA GTTGATGGTG CCACAATATA  421 TCGTGAATGG GCGCCTGCTG CACAAGAAGC ACAGCTCATT GGTGAGTTCA ATAACTGGAA  481 TGGTGCAAAA CACAAGATGG AGAAGGATAA ATTTGGCATT TGGTCAATCA AGATTTCACA  541 TGTCAATGGG AAGCCTGCCA TCCCTCACAA TTCCAAGGTT AAATTTCGCT TTAGGCATGG  601 GGGTGGAGCA TGGGTTGATC GTATTCCCGC ATGGATTCGT TATGCAACTT TTGATGCCTC  661 TAAATTTGGA GCTCCATATG ATGGTGTACA CTGGGATCCT CCAGCCTGTG AAAGGTACGT  721 GTTTAAGCAT CCTCGACCTC CAAAACCTGA TGCTCCACGC ATCTATGAGG CTCATGTGGG  781 GATGAGTGGT GAAGAGCCAG AAGTAAGCAC ATACAGAGAA TTTGCAGACA ATGTGTTACC  841 ACGCATACGG GCAAATAACT ACAACACAGT TCAGTTAATG GCAATCATGG AACATTCCTA  901 CTATGCTTCT TTTGGGTATC ACGTGACAAA TTTTTTCGCA GTCAGCAGCA GATCAGGAAC  961 ACCAGAGGAT CTGAAATATC TTGTTGACAA GGCACATAGT TTAGGATTAC GAGTTCTGAT 1021 GGATGTTGTC CATAGCCATG CGAGTAATAA TGTGACCGAT GGTCTAAATG GCTATGACGT 1081 TGGACAAAAC ACTCATGAGT CTTATTTTCA TACAGGAGAT AGGGGCTACC ATAAACTCTG 1141 GGATAGTCGT CTGTTCAACT ATGCCAATTG GGAGGTCTTA AGATTTCTTC TTTCTAATTT 1201 GAGATATTGG ATGGACGAAT TCATGTTTGA TGGCTTCCGA TTTGATGGGG TTACATCAAT 1261 GCTATACCAT CACCATGGTA TCAATAAGGG ATTTACTGGA AACTACAAGG AGTATTTCAG 1321 TTTGGATACC GATGTGGATG CAATTGTTTA CATGATGCTC GCAAACCATT TAATGCATAA 1381 ACTCTTGCCG GAAGCAACTA TTGTTGCTGA AGATGTTTCG GGCATGCCAG TGCTTTGTCG 1441 GCCAGTTGAT GAAGGTGGAG TAGGGTTTGA CTTCCGCCTG GCAATGGCCA TTCCTGATAG 1501 ATGGATTGAC TACCTGAAGA ACAAAGAGGA CCGCAAATGG TCAATGAGTG AAATAGTGCA 1561 AACTTTGACT AACAGGAGAT ATACAGAAAA ATGCATTGCC TATGCCGAGA GCCATGATCA 1621 GTCCATTGTT GGTGACAAGA CTATAGCATT TCTCTTGATG GACAAGGAAA TGTACACTGG 1681 CATGTCAGAC TTGCAGCCTG CTTCACCTAC CATCAACCGT GGCATTGCAC TCCAAAAGAT 1741 GATTCACTTC ATTACGATGG CCCTTGGAGG TGATGGCTAC TTAAATTTTA TGGGCAATGA 1801 GTTTGGCCAT CCAGAATGGA TTGACTTTCC AAGAGAAGGC AACAACTGGA GCTATGATAA 1861 ATGCAGACGT CAGTGGAGCC TTGTCGACAC TGATCACCTT CGATACAAGT ATATGAATGC 1921 ATTTGATCAA GCAATGAATG CACTCGAGGA GGAATTTTCC TTCCTGTCAT CATCAAAGCA 1981 GATTGTTAGC GACATGAACG AGAAAGATAA GGTTATTGTC TTTGAACGTG GAGATTTGGT 2041 TTTTGTTTTC AATTTTCATC CCAACAAAAC TTATAAGGGT TACAAAGTCG GATGTGACTT 2101 GCCCGGGAAG TACAGAGTAG CTCTGGACTG TGATGCTTTG GTCTTTGGTG GCCATGGAAG 2161 AGTTGGCCAT GATGTGGATC ACTTCACGTC TCCCGAGGGA ATGCCAGGAG TACCAGAAAC 2221 AAATTTCAAC AACCGCCCTA ACTCATTCAA AGTCCTTTCC CCGCCCCGTA CCTGTGTGGC 2281 TTACTATCGC GTTGATGAAG ATCGTGAAGA GCTCAGGAGG GGTGGAGCAG TTGCTTCTGG 2341 AAAGATTGTT ACAGAGTATA TCGATGTTGA AGCAACAAGT GGGGAGACTA TCTCTGGTGG 2401 CTGGAAGGGC TCCGAGAAGG ACGATTGTGG CAAGAAAGGG ATGAAGTTTG TGTTTCGGTC 2461 TTCTGACGAA GACTGCAAAT GAAGCATCAG ATTTCTTGAT CAGGAGCAAC TGTTGGTGCC 2521 CTTGTAATCT GGAGATCCTG GCTTGCCTTG GACTTGGTTG TGGTTCTTTA GCAGTTGCTA 2581 TGTACCTATC TATGATATGA ACTTTATGTA TAGTTCGCCT TAAAGAAAGA ATAAGCAGTG 2641 ATGATGTGGC CTTAAACCTG AGCTGCACAA GCCTAATGTA AAAATAAAGT TTCAGGCTTT 2701 CATCCAGAAT AAAACAGCTG TTCATTTACC ATCTCAAAA
    • 3. 发明授权
    • Optical device and methods of manufacture
    • US07182476B2
    • 2007-02-27
    • US10701975
    • 2003-11-05
    • Robert Arthur Lee
    • Robert Arthur Lee
    • G02B7/182
    • An optical device which generates an optically variable image, the image being optically variable in that it varies according to the position of observation, is manufactured by dividing an optically invariable image into multiple pixels. Color component values are determined for each pixel. For each of the pixels of the optically invariable image, there is determined an associated pixel surface structure which has a three-dimensional surface shape and curvature which is related via a mathematical of computer algorithm to the color component values of the associated pixel in the optically invariable image, each pixel surface structure being an individual reflective or diffractive surface structure which produces an observable optical effect. An assembly of the reflective or diffractive pixel surface structures is produced which when illuminated generates a plurality of observable optical effects which combine to form an optically variable reproduction of the optically invariable image.
    • 4. 发明授权
    • Optical device and methods of manufacture
    • 光学装置及制造方法
    • US07281810B2
    • 2007-10-16
    • US10701975
    • 2003-11-05
    • Robert Arthur Lee
    • Robert Arthur Lee
    • G02B7/182
    • B42D25/328B41M3/06B41M3/148B42D25/00B42D25/29B44F1/10G02B5/1861G03C8/56G03H2224/02
    • An optical device which generates an optically variable image, the image being optically variable in that it varies according to the position of observation, is manufactured by dividing an optically invariable image into multiple pixels. Color component values are determined for each pixel. For each of the pixels of the optically invariable image, there is determined an associated pixel surface structure which has a three-dimensional surface shape and curvature which is related via a mathematical of computer algorithm to the color component values of the associated pixel in the optically invariable image, each pixel surface structure being an individual reflective or diffractive surface structure which produces an observable optical effect. An assembly of the reflective or diffractive pixel surface structures is produced which when illuminated generates a plurality of observable optical effects which combine to form an optically variable reproduction of the optically invariable image.
    • 通过将光学不变图像分割成多个像素来制造光学可变图像的光学装置,该光学可变图像是根据观察位置而变化的光学变化的图像。 为每个像素确定颜色分量值。 对于光学不变图像的每个像素,确定具有三维表面形状和曲率的相关联的像素表面结构,其通过计算机算法的数学与光学上的相关联像素的颜色分量值相关联 不变图像,每个像素表面结构是产生可观察的光学效应的单独的反射或衍射表面结构。 产生反射或衍射像素表面结构的组件,其在被照射时产生多个可观察到的光学效应,其组合以形成光学不变图像的光学可变再现。
    • 5. 发明授权
    • Trace element X-ray flourescence analyser using dual focusing X-ray monochromators
    • 微量元素X射线荧光分析仪采用双重聚焦X射线单色仪
    • US09291583B2
    • 2016-03-22
    • US13957803
    • 2013-08-02
    • THE COMMONWEALTH OF AUSTRALIA COMMONWEALTH SCIENTIFIC AND INDUSTRIAL RESEARCH ORGANISATION
    • Yves Leon Van HaarlemJames Tickner
    • G01N23/223
    • G01N23/223G01N2223/076
    • An X-ray fluorescence analyzer is provided which comprises: (1) an X-ray source selected to produce an intense X-ray beam, (2) a first optical element that focuses the X-ray beam produced by the X-ray source onto a sample and selects X-rays of a desired energy, (3) an energy resolving detector, and (4) a second optical element that receives fluorescent X-rays emitted from elements in the sample and focuses a selected energy range of said fluorescent X-rays onto said energy resolving detector. Each of the first and second optical elements includes a crystal component. The X-ray fluorescence analyzer is configured such that: (i) the X-ray source has a spot size dimensioned so that it is substantially in a field of view of the first optical element, and (ii) the first optical element focuses the X-ray beam emitted by the X-ray source onto an area of the sample that corresponds to a field-of-view of the second optical element. Furthermore, the field of view for an optical element is defined as the area in the source plane of the respective crystal component over which X-rays are able to be emitted and still efficiently be reflected by said optical element.
    • 提供了一种X射线荧光分析仪,其包括:(1)选择产生强烈X射线束的X射线源,(2)将由X射线源产生的X射线束聚焦的第一光学元件 并选择所需能量的X射线,(3)能量分辨检测器,和(4)第二光学元件,其接收从样品中的元素发射的荧光X射线,并聚焦所述荧光物质的选定能量范围 X射线到所述能量分辨检测器上。 第一和第二光学元件中的每一个包括晶体分量。 所述X射线荧光分析装置的特征在于:(i)所述X射线源的光斑尺寸被设计为使得其大体上位于所述第一光学元件的视野内,以及(ii)所述第一光学元件将所述 由X射线源发射的X射线束对应于与第二光学元件的视野相对应的样品区域。 此外,光学元件的视野被定义为能够发射X射线并且仍然有效地被所述光学元件反射的各个晶体分量的源平面中的面积。