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E Noll

Showing results (91-100 of 125) with videos related to

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Emerging Infectious Diseases|January 24, 2023
Molecular Detection of Candidatus Orientia chuto in Wildlife, Saudi ArabiaHadil A Alkathiry, Samia Q Alghamdi, Holly E J Morgan, et al.
JAMA|June 24, 1988
Escherichia coli O157:H7, an emerging gastrointestinal pathogen. Results of a one-year, prospective, population-based studyK L MacDonald, M J O'Leary, M L Cohen, et al.
Nature Communications|May 4, 2023
Chemical imaging reveals diverse functions of tricarboxylic acid metabolites in root growth and developmentTao Zhang, Sarah E Noll, Jesus T Peng, et al.
Journal of Hematology & Oncology|October 8, 2015
PTTG1 expression is associated with hyperproliferative disease and poor prognosis in multiple myelomaJacqueline E Noll, Kate Vandyke, Duncan R Hewett, et al.
Biorxiv : the Preprint Server for Biology|October 3, 2025
Computational method for mapping mass signatures along developmental gradients reveals a novel role for a monosaccharide tetrose in maize salt-stress responseAndrea M Sama, Sinead B Cahill, Shihong Luo, et al.
Plos One|January 30, 2020
GLIPR1 expression is reduced in multiple myeloma but is not a tumour suppressor in miceNatasha Friend, Jacqueline E Noll, Khatora S Opperman, et al.
Oncotarget|December 29, 2011
Mutant p53 uses p63 as a molecular chaperone to alter gene expression and induce a pro-invasive secretomePaul M Neilsen, Jacqueline E Noll, Rachel J Suetani, et al.
Neoplasia (New York, N.Y.)|November 2, 2017
DNA Barcoding Reveals Habitual Clonal Dominance of Myeloma Plasma Cells in the Bone Marrow MicroenvironmentDuncan R Hewett, Kate Vandyke, David M Lawrence, et al.
Development (Cambridge, England)|May 1, 2026
Computational method to analyze linear developmental gradients reveals specific metabolite enrichment patterns in stress-tolerant maizeAndrea M Sama, Sinead B Cahill, Shihong Luo, et al.
Experimental Hematology|June 16, 2025
Mer receptor expression promotes multiple myeloma disease development via a cell-extrinsic mechanismJustine R Clark, Vasilios Panagopoulos, Jacqueline E Noll, et al.
Pageof 13

Showing results (91-100 of 125) with videos related to

Sort By:
Pageof 13
Emerging Infectious Diseases|January 24, 2023
Molecular Detection of Candidatus Orientia chuto in Wildlife, Saudi ArabiaHadil A Alkathiry, Samia Q Alghamdi, Holly E J Morgan, et al.
JAMA|June 24, 1988
Escherichia coli O157:H7, an emerging gastrointestinal pathogen. Results of a one-year, prospective, population-based studyK L MacDonald, M J O'Leary, M L Cohen, et al.
Nature Communications|May 4, 2023
Chemical imaging reveals diverse functions of tricarboxylic acid metabolites in root growth and developmentTao Zhang, Sarah E Noll, Jesus T Peng, et al.
Journal of Hematology & Oncology|October 8, 2015
PTTG1 expression is associated with hyperproliferative disease and poor prognosis in multiple myelomaJacqueline E Noll, Kate Vandyke, Duncan R Hewett, et al.
Biorxiv : the Preprint Server for Biology|October 3, 2025
Computational method for mapping mass signatures along developmental gradients reveals a novel role for a monosaccharide tetrose in maize salt-stress responseAndrea M Sama, Sinead B Cahill, Shihong Luo, et al.
Plos One|January 30, 2020
GLIPR1 expression is reduced in multiple myeloma but is not a tumour suppressor in miceNatasha Friend, Jacqueline E Noll, Khatora S Opperman, et al.
Oncotarget|December 29, 2011
Mutant p53 uses p63 as a molecular chaperone to alter gene expression and induce a pro-invasive secretomePaul M Neilsen, Jacqueline E Noll, Rachel J Suetani, et al.
Neoplasia (New York, N.Y.)|November 2, 2017
DNA Barcoding Reveals Habitual Clonal Dominance of Myeloma Plasma Cells in the Bone Marrow MicroenvironmentDuncan R Hewett, Kate Vandyke, David M Lawrence, et al.
Development (Cambridge, England)|May 1, 2026
Computational method to analyze linear developmental gradients reveals specific metabolite enrichment patterns in stress-tolerant maizeAndrea M Sama, Sinead B Cahill, Shihong Luo, et al.
Experimental Hematology|June 16, 2025
Mer receptor expression promotes multiple myeloma disease development via a cell-extrinsic mechanismJustine R Clark, Vasilios Panagopoulos, Jacqueline E Noll, et al.
Pageof 13