Inventor · Wilmington, DE, US

Stanley Luck

27Patents
2h-index
51Co-inventors
52Inventor score

Filing activity: Nov 5, 2008 → Sep 11, 2015

Most-cited inventions

PatentTitleAreaCited byStatus
US8993847B2 Drought tolerant plants and related constructs and methods involving genes encoding ferrochelatases Chemistry; Metallurgy 2 Active
US8921646B2 Genetic loci associated with northern leaf blight resistance in maize Chemistry; Metallurgy 2 Active
US7812223B2 Drought tolerant plants and related constructs and methods involving genes encoding ferrochelatases Chemistry; Metallurgy 1 Active
US8916746B2 Drought tolerant plants and related constructs and methods involving genes encoding DTP21 polypeptides Chemistry; Metallurgy 1 Active
US8697942B2 Genetic loci associated with Fusarium ear mold resistance in maize Chemistry; Metallurgy 1 Active
US8158859B2 Drought tolerant plants and related constructs and methods involving gene encoding ferrochelatases Chemistry; Metallurgy 1 Active
US8900808B2 Genetic loci associated with mechanical stalk strength in maize Human Necessities 1 Active
US8394634B2 Plants having altered agronomic characteristics under nitrogen limiting conditions and related constructs and methods involving genes encoding LNT2 polypeptides and homologs thereof Chemistry; Metallurgy 0 Active
US9175304B2 Drought tolerant plants and related constructs and methods involving genes encoding self-incompatibility protein related polypeptides Chemistry; Metallurgy 0 Active
US9090901B2 Plants with altered root architecture, related constructs and methods involving genes encoding leucine rich repeat kinase (LLRK) polypeptides and homologs thereof Chemistry; Metallurgy 0 Active
US9179613B2 Genetic loci on maize chromosomes 3 and 4 that are associated with fusarium ear mold resistance Chemistry; Metallurgy 0 Active
US8633351B2 Genetic loci associated with cell wall digestibility in maize Chemistry; Metallurgy 0 Active
US9115203B2 Plants with altered root architecture, related constructs and methods involving genes encoding exostosin family polypeptides and homologs thereof Emerging Cross-Sectional Technologies 0 Active
US9273363B2 Genetic loci associated with resistance of corn to fijivirus Chemistry; Metallurgy 0 Active
US8541650B2 Plants having altered agronomic characteristics under nitrogen limiting conditions and related constructs and methods involving genes encoding LNT1 polypeptides and homologs thereof Emerging Cross-Sectional Technologies 0 Active
US10316370B2 Compositions and methods for selecting maize plants with increased ear weight and increased yield Emerging Cross-Sectional Technologies 0 Active
US9624553B2 Molecular markers for various traits in wheat and methods of use Chemistry; Metallurgy 0 Active
US9040773B2 Plants having altered agronomic characteristics under nitrogen limiting conditions and related constructs and methods involving genes encoding LNT1 polypeptides and homologs thereof Emerging Cross-Sectional Technologies 0 Active
US9556450B2 Drought tolerant plants and related constructs and methods involving genes encoding DTP21 polypeptides Chemistry; Metallurgy 0 Active
US8841510B2 Major QTLs conferring resistance of corn to fijivirus Chemistry; Metallurgy 0 Active
US9624504B2 Drought tolerant plants and related constructs and methods involving genes encoding DTP6 polypeptides Physics 0 Active
US8338181B2 Plants having altered agronomic characteristics under nitrogen limiting conditions and related constructs and methods involving genes encoding LNT2 polypeptides and homologs thereof Chemistry; Metallurgy 0 Active
US9551041B2 Genetic loci associated with fusarium ear mold resistance in maize Chemistry; Metallurgy 0 Active
US9228241B2 Genetic loci associated with mechanical stalk strength in maize Human Necessities 0 Active
US9315872B2 Major QTLS conferring resistance of corn to fijivirus Chemistry; Metallurgy 0 Active

Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.