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M Grady

Showing results (291-300 of 377) with videos related to

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Global Ecology and Biogeography : a Journal of Macroecology|June 21, 2019
Towards connecting biodiversity and geodiversity across scales with satellite remote sensingPhoebe L Zarnetske, Quentin D Read, Sydne Record, et al.
British Journal of Cancer|August 16, 2017
Dynamic plasma microRNAs are biomarkers for prognosis and early detection of recurrence in colorectal cancerZixu Yuan, Kelsey Baker, Mary W Redman, et al.
Gastroenterology|May 6, 2014
Differences in DNA methylation signatures reveal multiple pathways of progression from adenoma to colorectal cancerYanxin Luo, Chao-Jen Wong, Andrew M Kaz, et al.
Cancer Research Communications|September 7, 2023
Single-cell Profiling Uncovers a <i>Muc4</i>-Expressing Metaplastic Gastric Cell Type Sustained by <i>Helicobacter pylori</i>-driven InflammationValerie P O'Brien, Yuqi Kang, Meera K Shenoy, et al.
Biorxiv : the Preprint Server for Biology|February 23, 2026
Assessing the effects of a 3D pathology tissue-processing workflow on downstream molecular analysesElena Baraznenok, Huai-Ching Hsieh, Lydia Lan, et al.
Clinical Epigenetics|January 5, 2020
Dysfunctional epigenetic aging of the normal colon and colorectal cancer riskTing Wang, Sean K Maden, Georg E Luebeck, et al.
Cancer Research|October 7, 2018
Implications of Epigenetic Drift in Colorectal NeoplasiaGeorg E Luebeck, William D Hazelton, Kit Curtius, et al.
Oncogene|February 12, 2008
Epigenetic silencing of the intronic microRNA hsa-miR-342 and its host gene EVL in colorectal cancerW M Grady, R K Parkin, P S Mitchell, et al.
Laboratory Investigation; a Journal of Technical Methods and Pathology|June 16, 2026
Assessing the Effects of a 3D Pathology Tissue-Processing Workflow on Downstream Molecular AnalysesElena Baraznenok, Huai-Ching Hsieh, Lydia Lan, et al.
Human Genetics|September 30, 2018
Rare loss of function variants in candidate genes and risk of colorectal cancerElisabeth A Rosenthal, Brian H Shirts, Laura M Amendola, et al.
Pageof 38

Showing results (291-300 of 377) with videos related to

Sort By:
Pageof 38
Global Ecology and Biogeography : a Journal of Macroecology|June 21, 2019
Towards connecting biodiversity and geodiversity across scales with satellite remote sensingPhoebe L Zarnetske, Quentin D Read, Sydne Record, et al.
British Journal of Cancer|August 16, 2017
Dynamic plasma microRNAs are biomarkers for prognosis and early detection of recurrence in colorectal cancerZixu Yuan, Kelsey Baker, Mary W Redman, et al.
Gastroenterology|May 6, 2014
Differences in DNA methylation signatures reveal multiple pathways of progression from adenoma to colorectal cancerYanxin Luo, Chao-Jen Wong, Andrew M Kaz, et al.
Cancer Research Communications|September 7, 2023
Single-cell Profiling Uncovers a <i>Muc4</i>-Expressing Metaplastic Gastric Cell Type Sustained by <i>Helicobacter pylori</i>-driven InflammationValerie P O'Brien, Yuqi Kang, Meera K Shenoy, et al.
Biorxiv : the Preprint Server for Biology|February 23, 2026
Assessing the effects of a 3D pathology tissue-processing workflow on downstream molecular analysesElena Baraznenok, Huai-Ching Hsieh, Lydia Lan, et al.
Clinical Epigenetics|January 5, 2020
Dysfunctional epigenetic aging of the normal colon and colorectal cancer riskTing Wang, Sean K Maden, Georg E Luebeck, et al.
Cancer Research|October 7, 2018
Implications of Epigenetic Drift in Colorectal NeoplasiaGeorg E Luebeck, William D Hazelton, Kit Curtius, et al.
Oncogene|February 12, 2008
Epigenetic silencing of the intronic microRNA hsa-miR-342 and its host gene EVL in colorectal cancerW M Grady, R K Parkin, P S Mitchell, et al.
Laboratory Investigation; a Journal of Technical Methods and Pathology|June 16, 2026
Assessing the Effects of a 3D Pathology Tissue-Processing Workflow on Downstream Molecular AnalysesElena Baraznenok, Huai-Ching Hsieh, Lydia Lan, et al.
Human Genetics|September 30, 2018
Rare loss of function variants in candidate genes and risk of colorectal cancerElisabeth A Rosenthal, Brian H Shirts, Laura M Amendola, et al.
Pageof 38