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    • 1. 发明申请
    • METHODS FOR ENHANCING THE PRODUCTION AND CONSUMER TRAITS OF PLANTS
    • 增加植物生产和消费者行为的方法
    • US20140331348A1
    • 2014-11-06
    • US14297807
    • 2014-06-06
    • Bryant Jerome Long
    • Bryant Jerome Long
    • C12N15/82A01H1/04A01H5/10A01H1/02
    • A01H5/10A01H1/02A01H1/04
    • The invention provides methods for producing plants, plant materials and seeds that have multiple desirable attributes for consumers of these products, as well as for commercial plant growers, and to improved plants, plant materials and seeds that are produced by these methods. These inventive methods provide hybrid plants, plant materials and seeds having the mutant shrunken-2i (sh2-i) allele incorporated into their genomes, preferably sequentially along with one or more other mutant alleles, such as the sugary-1 (su1), sugary enhancer-1 (se1) and/or shrunken-2 (sh2) alleles, and that have multiple beneficial traits, including an extended sugar retention ability at the post prime eating stage and a significantly enhanced vigor and fitness to the plant, plant material and/or seed during seed germination, seedling emergence from soil, and plant development.
    • 本发明提供了用于生产对这些产品的消费者以及商业植物种植者具有多个期望属性的植物,植物材料和种子的方法,以及通过这些方法生产的改良植物,植物材料和种子的方法。 这些发明方法提供杂种植物,植物材料和具有掺入其基因组中的突变缩小-2i(sh2-i)等位基因的杂交植物,植物材料和种子,优选与一种或多种其它突变体等位基因,如含糖-1(su1),含糖 增强子-1(se1)和/或缩小-2(sh2)等位基因,并且具有多个有益性状,包括在主要进食阶段延长的糖保留能力,并显着提高植物,植物材料的活力和适应性 种子在种子萌发期间种子,种子从土壤中出苗和植物发育。
    • 3. 发明申请
    • Methods for enhancing the production and consumer traits of plants
    • 提高植物生产和消费者特征的方法
    • US20120054896A1
    • 2012-03-01
    • US12806472
    • 2010-08-12
    • Bryant Jerome Long
    • Bryant Jerome Long
    • A01H1/02A01H5/00A01H5/10A01H1/00
    • A01H5/10A01H1/04
    • The invention provides methods for producing plants, plant materials and seeds that have multiple desirable attributes for consumers of these products, as well as for commercial plant growers, and to improved plants, plant materials and seeds that are produced by these methods. These inventive methods provide hybrid plants, plant materials and seeds having the mutant shrunken-2i (sh2-i) allele incorporated into their genomes, preferably sequentially along with one or more other mutant alleles, such as the sugary-1 (su1), sugary enhancer-1 (se1) and/or shrunken-2 (sh2) alleles, and that have multiple beneficial traits, including an extended sugar retention ability at the post prime eating stage and a significantly enhanced vigor and fitness to the plant, plant material and/or seed during seed germination, seedling emergence from soil, and plant development.
    • 本发明提供了用于生产对这些产品的消费者以及商业植物种植者具有多个期望属性的植物,植物材料和种子的方法,以及通过这些方法生产的改良植物,植物材料和种子的方法。 这些发明方法提供杂种植物,植物材料和具有掺入其基因组中的突变缩小-2i(sh2-i)等位基因的杂交植物,植物材料和种子,优选与一种或多种其它突变体等位基因,如含糖-1(su1),含糖 增强子-1(se1)和/或缩小-2(sh2)等位基因,并且具有多个有益性状,包括在主要进食阶段延长的糖保留能力,并显着提高植物,植物材料的活力和适应性 种子在种子萌发期间种子,种子从土壤中出苗和植物发育。
    • 4. 发明申请
    • Method For Assembling The Finite Element Discretization Of Arbitrary Weak Equations Involving Local Or Non-Local Multiphysics Couplings
    • 用于组装有局限或非局部多物理耦合的任意弱方程有限元离散的方法
    • US20090259447A1
    • 2009-10-15
    • US12487762
    • 2009-06-19
    • Lars LangemyrDaniel BertilssonAme NordmarkPer-Olof PerssonJerome Long
    • Lars LangemyrDaniel BertilssonAme NordmarkPer-Olof PerssonJerome Long
    • G06F17/10
    • G06F17/5009G06F17/12G06F17/13G06F17/5018
    • Disclosed are techniques for representing and modeling one or more systems in which each system corresponds to an application mode. This may be done for one or more geometries using local and/or non-local couplings. For each application mode, physical quantities are modeled and may be defined using a graphical user interface. Physical properties may be used to model the physical quantities of each system. The physical properties may be defined in terms of numerical values or constants, and mathematical expressions that may include numerical values, space coordinates, time coordinates, and actual physical quantities. Physical quantities and any associated variables may apply to some or all of a geometric domain, and may also be disabled in other parts of a geometrical domain. Partial differential equations describe the physical quantities. One or more application modes may be combined using an automated technique into a combined system of partial differential equations as a multiphysics model. A portion of the physical quantities and variables associated with the combined system may be selectively solved for. Also described are methods for computing the stiffness matrix, residual vector, constraint matrix, and constraint residual vector for the finite element discretization of a system of partial differential equations in weak form that includes local and non-local variables coupling multiple geometries.
    • 公开了用于表示和建模其中每个系统对应于应用模式的一个或多个系统的技术。 这可以对于使用本地和/或非本地耦合的一个或多个几何形状来完成。 对于每个应用程序模式,物理量都被建模,并且可以使用图形用户界面进行定义。 物理性质可用于建模每个系统的物理量。 物理性质可以用数值或常数来定义,而数学表达式可以包括数值,空间坐标,时间坐标和实际物理量。 物理量和任何相关的变量可以应用于几何域中的一些或全部,并且也可能在几何域的其他部分被禁用。 部分微分方程描述物理量。 一个或多个应用模式可以使用自动化技术组合成作为多物理场模型的偏微分方程的组合系统。 可以选择性地解决与组合系统相关联的物理量和变量的一部分。 还描述了用于计算弱形​​式的偏微分方程系统的有限元离散的刚度矩阵,残差矢量,约束矩阵和约束残差矢量的方法,其包括耦合多个几何的局部和非局部变量。
    • 5. 发明授权
    • Method for assembling the finite element discretization of arbitrary weak equations involving local or non-local multiphysics couplings
    • 用于组合涉及局部或非局部多物理耦合的任意弱方程的有限元离散化的方法
    • US07596474B2
    • 2009-09-29
    • US10042936
    • 2002-01-09
    • Lars LangemyrDaniel BertilssonArne NordmarkPer-Olof PerssonJerome Long
    • Lars LangemyrDaniel BertilssonArne NordmarkPer-Olof PerssonJerome Long
    • G06F7/60G06F17/13G06G7/48G06G7/50
    • G06F17/5009G06F17/12G06F17/13G06F17/5018
    • Disclosed are techniques for representing and modeling one or more systems in which each system corresponds to an application mode. This may be done for one or more geometries using local and/or non-local couplings. For each application mode, physical quantities are modeled and may be defined using a graphical user interface. Physical properties may be used to model the physical quantities of each system. The physical properties may be defined in terms of numerical values or constants, and mathematical expressions that may include numerical values, space coordinates, time coordinates, and actual physical quantities. Physical quantities and any associated variables may apply to some or all of a geometric domain, and may also be disabled in other parts of a geometrical domain. Partial differential equations describe the physical quantities. One or more application modes may be combined using an automated technique into a combined system of partial differential equations as a multiphysics model. A portion of the physical quantities and variables associated with the combined system may be selectively solved for. Also described are methods for computing the stiffness matrix, residual vector, constraint matrix, and constraint residual vector for the finite element discretization of a system of partial differential equations in weak form that includes local and non-local variables coupling multiple geometries.
    • 公开了用于表示和建模其中每个系统对应于应用模式的一个或多个系统的技术。 这可以对于使用本地和/或非本地耦合的一个或多个几何形状来完成。 对于每个应用程序模式,物理量都被建模,并且可以使用图形用户界面进行定义。 物理性质可用于建模每个系统的物理量。 物理性质可以用数值或常数来定义,而数学表达式可以包括数值,空间坐标,时间坐标和实际物理量。 物理量和任何相关的变量可以应用于几何域中的一些或全部,并且也可能在几何域的其他部分被禁用。 部分微分方程描述物理量。 一个或多个应用模式可以使用自动化技术组合成作为多物理场模型的偏微分方程的组合系统。 可以选择性地解决与组合系统相关联的物理量和变量的一部分。 还描述了用于计算弱形​​式的偏微分方程系统的有限元离散的刚度矩阵,残差矢量,约束矩阵和约束残差矢量的方法,其包括耦合多个几何的局部和非局部变量。
    • 6. 发明授权
    • Method for assembling the finite element discretization of arbitrary weak equations, involving local or non-local multiphysics couplings
    • 用于组合有限元离散任意弱方程的方法,涉及局部或非局部多物理耦合
    • US07519518B2
    • 2009-04-14
    • US09995222
    • 2001-11-27
    • Lars LangemyrDaniel BertilssonArne NordmarkPer-Olof PerssonJerome Long
    • Lars LangemyrDaniel BertilssonArne NordmarkPer-Olof PerssonJerome Long
    • G06F7/60G06F17/13G06G7/48G06G7/50
    • G06F17/12
    • Disclosed are techniques for representing and modeling one or more systems in which each system corresponds to an application mode. This may be done for one or more geometries using local and/or non-local couplings. For each application mode, physical quantities are modeled and may be defined using a graphical user interface. Physical properties may be used to model the physical quantities of each system. The physical properties may be defined in terms of numerical values or constants, and mathematical expressions that may include numerical values, space coordinates, time coordinates, and actual physical quantities. Physical quantities and any associated variables may apply to some or all of a geometric domain, and may also be disabled in other parts of a geometrical domain. Partial differential equations describe the physical quantities. One or more application modes may be combined using an automated technique into a combined system of partial differential equations as a multiphysics model. A portion of the physical quantities and variables associated with the combined system may be selectively solved for. The partial differential equations may be displayed and may in turn solve for the system of partial differential equations in accordance with a general form or a coefficient form. An automated technique provides for automatic derivation of the combined partial differential equations and boundary conditions. This technique automatically merges the equations from a plurality of application modes, and in some instances, performs symbolic differentiation of the equations, producing a single system of partial differential equations. A subset of physical quantities and associated variables not solved for may be used as initial values to the system of partial differential equations.
    • 公开了用于表示和建模其中每个系统对应于应用模式的一个或多个系统的技术。 这可以对于使用本地和/或非本地耦合的一个或多个几何形状来完成。 对于每个应用程序模式,物理量都被建模,并且可以使用图形用户界面进行定义。 物理性质可用于建模每个系统的物理量。 物理性质可以用数值或常数来定义,而数学表达式可以包括数值,空间坐标,时间坐标和实际物理量。 物理量和任何相关的变量可以应用于几何域中的一些或全部,并且也可能在几何域的其他部分被禁用。 部分微分方程描述物理量。 一个或多个应用模式可以使用自动化技术组合成作为多物理场模型的偏微分方程的组合系统。 可以选择性地解决与组合系统相关联的物理量和变量的一部分。 可以显示偏微分方程,并且可以依照一般形式或系数形式解决偏微分方程的系统。 一种自动化技术提供组合偏微分方程和边界条件的自动推导。 该技术自动地合并来自多种应用模式的等式,并且在某些情况下,执行方程的符号区分,产生单一的偏微分方程系统。 未解决的物理量和相关变量的子集可以用作偏微分方程系统的初始值。
    • 7. 发明授权
    • Methods for enhancing the production and consumer traits of plants
    • 提高植物生产和消费者特征的方法
    • US08796504B2
    • 2014-08-05
    • US12806472
    • 2010-08-12
    • Bryant Jerome Long
    • Bryant Jerome Long
    • A01H1/04A01H1/06A01H5/00A01H5/10C12P19/02C12P19/12
    • A01H5/10A01H1/04
    • The invention provides methods for producing plants, plant materials and seeds that have multiple desirable attributes for consumers of these products, as well as for commercial plant growers, and to improved plants, plant materials and seeds that are produced by these methods. These inventive methods provide hybrid plants, plant materials and seeds having the mutant shrunken-2i (sh2-i) allele incorporated into their genomes, preferably sequentially along with one or more other mutant alleles, such as the sugary-1 (su1), sugary enhancer-1 (se1) and/or shrunken-2 (sh2) alleles, and that have multiple beneficial traits, including an extended sugar retention ability at the post prime eating stage and a significantly enhanced vigor and fitness to the plant, plant material and/or seed during seed germination, seedling emergence from soil, and plant development.
    • 本发明提供了用于生产对这些产品的消费者以及商业植物种植者具有多个期望属性的植物,植物材料和种子的方法,以及通过这些方法生产的改良植物,植物材料和种子的方法。 这些发明方法提供杂种植物,植物材料和具有掺入其基因组中的突变缩小-2i(sh2-i)等位基因的杂交植物,植物材料和种子,优选与一种或多种其它突变体等位基因,如含糖-1(su1),含糖 增强子-1(se1)和/或缩小-2(sh2)等位基因,并且具有多个有益性状,包括在主要进食阶段延长的糖保留能力,并显着提高植物,植物材料的活力和适应性 种子在种子萌发期间种子,种子从土壤中出苗和植物发育。
    • 8. 发明申请
    • METHODS FOR ENHANCING THE PRODUCTION AND CONSUMER TRAITS OF PLANTS
    • 增加植物生产和消费者行为的方法
    • US20150272074A1
    • 2015-10-01
    • US14292584
    • 2014-05-30
    • Bryant Jerome Long
    • Bryant Jerome Long
    • A01H5/10
    • A01H5/10A01H1/04
    • The invention provides methods for producing plants, plant materials and seeds that have multiple desirable attributes for consumers of these products, as well as for commercial plant growers, and to improved plants, plant materials and seeds that are produced by these methods. These inventive methods provide hybrid plants, plant materials and seeds having the mutant shrunken-2i (sh2-i) allele incorporated into their genomes, preferably sequentially along with one or more other mutant alleles, such as the sugary-1 (su1), sugary enhancer-1 (se1) and/or shrunken-2 (sh2) alleles, and that have multiple beneficial traits, including an extended sugar retention ability at the post prime eating stage and a significantly enhanced vigor and fitness to the plant, plant material and/or seed during seed germination, seedling emergence from soil, and plant development.
    • 本发明提供了用于生产对这些产品的消费者以及商业植物种植者具有多个期望属性的植物,植物材料和种子的方法,以及通过这些方法生产的改良植物,植物材料和种子的方法。 这些发明方法提供杂种植物,植物材料和具有掺入其基因组中的突变缩小-2i(sh2-i)等位基因的杂交植物,植物材料和种子,优选与一种或多种其它突变体等位基因,如含糖-1(su1),含糖 增强子-1(se1)和/或缩小-2(sh2)等位基因,并且具有多个有益性状,包括在主要进食阶段延长的糖保留能力,并显着提高植物,植物材料的活力和适应性 种子在种子萌发期间种子,种子从土壤中出苗和植物发育。
    • 9. 发明授权
    • Methods for enhancing the production and consumer traits of plants
    • 提高植物生产和消费者特征的方法
    • US08822756B2
    • 2014-09-02
    • US12462959
    • 2009-08-12
    • Bryant Jerome Long
    • Bryant Jerome Long
    • A01H1/04A01H5/00A01H5/10C12Q1/68
    • A01H1/04A01H5/10
    • The invention provides methods for producing plants, plant materials and seeds that receive multiple desirable attributes for consumers of these products, as well as for commercial plant growers, and to improved plants, plant materials and seeds that are produced by these methods. These inventive methods provide hybrid plants, plant materials and seeds having the mutant shrunken-2i (sh2-i) allele incorporated into their genomes sequentially along with one or more other mutant alleles, such as the sugary-1 (su1), sugary enhancer-1 (se1) and/or shrunken-2 (sh2) alleles, and that have multiple beneficial traits, including an extended sugar retention ability at the post prime eating stage and a significantly enhanced vigor and fitness to the plant, plant material and/or seed during seed germination, seedling emergence from soil, and plant development.
    • 本发明提供了用于生产对这些产品的消费者以及商业植物种植者以及通过这些方法生产的改良植物,植物材料和种子的多种所需属性的植物,植物材料和种子的方法。 这些发明方法提供具有突变的缩小-2i(sh2-i)等位基因的杂种植物,植物材料和种子,其与一个或多个其它突变等位基因,如含糖-1(su1),含糖增强子 - 1(se1)和/或收缩-2(sh2)等位基因,并且具有多种有益性状,包括在主要进食阶段延长的糖保留能力,并显着提高植物,植物材料和/或 种子发芽期种子,幼苗从土壤中出苗和植物发育。
    • 10. 发明申请
    • Methods for enhancing the production and consumer traits of plants
    • 提高植物生产和消费者特征的方法
    • US20110041204A1
    • 2011-02-17
    • US12462959
    • 2009-08-12
    • Bryant Jerome Long
    • Bryant Jerome Long
    • A01H5/00A01H1/06C12N15/82
    • A01H1/04A01H5/10
    • The invention provides methods for producing plants, plant materials and seeds that receive multiple desirable attributes for consumers of these products, as well as for commercial plant growers, and to improved plants, plant materials and seeds that are produced by these methods. These inventive methods provide hybrid plants, plant materials and seeds having the mutant shrunken-2i (sh2-i) allele incorporated into their genomes sequentially along with one or more other mutant alleles, such as the sugary-1 (su1), sugary enhancer-1 (se1) and/or shrunken-2 (sh2) alleles, and that have multiple beneficial traits, including an extended sugar retention ability at the post prime eating stage and a significantly enhanced vigor and fitness to the plant, plant material and/or seed during seed germination, seedling emergence from soil, and plant development.
    • 本发明提供了用于生产对这些产品的消费者以及商业植物种植者以及通过这些方法生产的改良植物,植物材料和种子的多种所需属性的植物,植物材料和种子的方法。 这些发明方法提供具有突变的缩小-2i(sh2-i)等位基因的杂种植物,植物材料和种子,其与一个或多个其它突变等位基因,如含糖-1(su1),含糖增强子 - 1(se1)和/或收缩-2(sh2)等位基因,并且具有多种有益性状,包括在主要进食阶段延长的糖保留能力,并显着提高植物,植物材料和/或 种子发芽期种子,幼苗从土壤中出苗和植物发育。