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J Sulston

Showing results (21-30 of 30) with videos related to

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Nature|March 5, 1992
The C. elegans genome sequencing project: a beginningJ Sulston, Z Du, K Thomas, et al.
Human Molecular Genetics|August 15, 2000
Genomic sequence and transcriptional profile of the boundary between pericentromeric satellites and genes on human chromosome arm 10qJ Guy, C Spalluto, A McMurray, et al.
Frontiers in Endocrinology|October 7, 2016
Increased Circulating Adiponectin in Response to Thiazolidinediones: Investigating the Role of Bone Marrow Adipose TissueRichard J Sulston, Brian S Learman, Bofeng Zhang, et al.
The Journal of Endocrinology|April 23, 2026
Caloric restriction exerts site-, sex-, and duration-dependent effects on skeletal structure and bone marrow adiposityKuan-Chan Chen, Richard J Sulston, Karla J Suchacki, et al.
The Journal of Endocrinology|May 28, 2024
Deletion of Hsd11b1 suppresses caloric restriction-induced bone marrow adiposity in male but not female miceAndrea Lovdel, Karla J Suchacki, Fiona Roberts, et al.
Endocrinology|December 24, 2015
Expansion of Bone Marrow Adipose Tissue During Caloric Restriction Is Associated With Increased Circulating Glucocorticoids and Not With HypoleptinemiaWilliam P Cawthorn, Erica L Scheller, Sebastian D Parlee, et al.
Plos Biology|June 18, 2026
Adiponectin exerts sex-dependent effects on lipid, amino acid, and glucose metabolism during caloric restrictionYoshiko M Ikushima, Kuan-Chan Chen, Richard J Sulston, et al.
Elife|April 25, 2023
The effects of caloric restriction on adipose tissue and metabolic health are sex- and age-dependentKarla J Suchacki, Benjamin J Thomas, Yoshiko M Ikushima, et al.
Nature Communications|June 20, 2020
Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasisKarla J Suchacki, Adriana A S Tavares, Domenico Mattiucci, et al.
Nature|March 10, 2001
Initial sequencing and analysis of the human genomeE S Lander, L M Linton, B Birren, et al.
Pageof 3

Showing results (21-30 of 30) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 30 results.
Nature|March 5, 1992
The C. elegans genome sequencing project: a beginningJ Sulston, Z Du, K Thomas, et al.
Human Molecular Genetics|August 15, 2000
Genomic sequence and transcriptional profile of the boundary between pericentromeric satellites and genes on human chromosome arm 10qJ Guy, C Spalluto, A McMurray, et al.
Frontiers in Endocrinology|October 7, 2016
Increased Circulating Adiponectin in Response to Thiazolidinediones: Investigating the Role of Bone Marrow Adipose TissueRichard J Sulston, Brian S Learman, Bofeng Zhang, et al.
The Journal of Endocrinology|April 23, 2026
Caloric restriction exerts site-, sex-, and duration-dependent effects on skeletal structure and bone marrow adiposityKuan-Chan Chen, Richard J Sulston, Karla J Suchacki, et al.
The Journal of Endocrinology|May 28, 2024
Deletion of Hsd11b1 suppresses caloric restriction-induced bone marrow adiposity in male but not female miceAndrea Lovdel, Karla J Suchacki, Fiona Roberts, et al.
Endocrinology|December 24, 2015
Expansion of Bone Marrow Adipose Tissue During Caloric Restriction Is Associated With Increased Circulating Glucocorticoids and Not With HypoleptinemiaWilliam P Cawthorn, Erica L Scheller, Sebastian D Parlee, et al.
Plos Biology|June 18, 2026
Adiponectin exerts sex-dependent effects on lipid, amino acid, and glucose metabolism during caloric restrictionYoshiko M Ikushima, Kuan-Chan Chen, Richard J Sulston, et al.
Elife|April 25, 2023
The effects of caloric restriction on adipose tissue and metabolic health are sex- and age-dependentKarla J Suchacki, Benjamin J Thomas, Yoshiko M Ikushima, et al.
Nature Communications|June 20, 2020
Bone marrow adipose tissue is a unique adipose subtype with distinct roles in glucose homeostasisKarla J Suchacki, Adriana A S Tavares, Domenico Mattiucci, et al.
Nature|March 10, 2001
Initial sequencing and analysis of the human genomeE S Lander, L M Linton, B Birren, et al.
Pageof 3