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Briefings in Functional Genomics
|
October 22, 2024
A review of artificial intelligence-based brain age estimation and its applications for related diseases
Mohamed Azzam, Ziyang Xu, Ruobing Liu, et al.
Nature Communications
|
January 12, 2022
Identification of a modular super-enhancer in murine retinal development
Victoria Honnell, Jackie L Norrie, Anand G Patel, et al.
Medrxiv : the Preprint Server for Health Sciences
|
March 23, 2026
Early treatment outcome prediction in metastatic castration-resistant prostate cancer utilizing 3-month tumor growth rate ( <i>g</i> -rate) based machine learning model
Esther C Ugwueke, Mohamed Azzam, Mengxi Zhou, et al.
JCI Insight
|
July 10, 2019
MondoA drives muscle lipid accumulation and insulin resistance
Byungyong Ahn, Shibiao Wan, Natasha Jaiswal, et al.
Advanced Healthcare Materials
|
July 8, 2023
Embedded Bioprinting of Breast Tumor Cells and Organoids Using Low-Concentration Collagen-Based Bioinks
Wen Shi, Sameer Mirza, Mitchell Kuss, et al.
Circulation Research
|
March 28, 2020
A Critical Role for Estrogen-Related Receptor Signaling in Cardiac Maturation
Tomoya Sakamoto, Timothy R Matsuura, Shibiao Wan, et al.
Research Square
|
June 10, 2024
The context-dependent epigenetic and organogenesis programs determine 3D vs. 2D cellular fitness of MYC-driven murine liver cancer cells
Jun Yang, Jie Fang, Shivendra Singh, et al.
Cancer Letters
|
July 30, 2025
ECD co-operates with ERBB2 to promote tumorigenesis through upregulation of unfolded protein response and glycolysis
Benjamin B Kennedy, Mohsin Raza, Sameer Mirza, et al.
Biorxiv : the Preprint Server for Biology
|
February 20, 2025
ECD co-operates with ERBB2 to promote tumorigenesis through upregulation of unfolded protein response and glycolysis
Benjamin B Kennedy, Mohsin Raza, Sameer Mirza, et al.
Elife
|
May 6, 2025
The context-dependent epigenetic and organogenesis programs determine 3D vs. 2D cellular fitness of MYC-driven murine liver cancer cells
Jie Fang, Shivendra Singh, Brennan Wells, et al.
Page
of 7
Search research articles
Search
Showing results (51-60 of 64) with videos related to
Sort By:
Page
of 7
Briefings in Functional Genomics
|
October 22, 2024
A review of artificial intelligence-based brain age estimation and its applications for related diseases
Mohamed Azzam, Ziyang Xu, Ruobing Liu, et al.
Nature Communications
|
January 12, 2022
Identification of a modular super-enhancer in murine retinal development
Victoria Honnell, Jackie L Norrie, Anand G Patel, et al.
Medrxiv : the Preprint Server for Health Sciences
|
March 23, 2026
Early treatment outcome prediction in metastatic castration-resistant prostate cancer utilizing 3-month tumor growth rate ( <i>g</i> -rate) based machine learning model
Esther C Ugwueke, Mohamed Azzam, Mengxi Zhou, et al.
JCI Insight
|
July 10, 2019
MondoA drives muscle lipid accumulation and insulin resistance
Byungyong Ahn, Shibiao Wan, Natasha Jaiswal, et al.
Advanced Healthcare Materials
|
July 8, 2023
Embedded Bioprinting of Breast Tumor Cells and Organoids Using Low-Concentration Collagen-Based Bioinks
Wen Shi, Sameer Mirza, Mitchell Kuss, et al.
Circulation Research
|
March 28, 2020
A Critical Role for Estrogen-Related Receptor Signaling in Cardiac Maturation
Tomoya Sakamoto, Timothy R Matsuura, Shibiao Wan, et al.
Research Square
|
June 10, 2024
The context-dependent epigenetic and organogenesis programs determine 3D vs. 2D cellular fitness of MYC-driven murine liver cancer cells
Jun Yang, Jie Fang, Shivendra Singh, et al.
Cancer Letters
|
July 30, 2025
ECD co-operates with ERBB2 to promote tumorigenesis through upregulation of unfolded protein response and glycolysis
Benjamin B Kennedy, Mohsin Raza, Sameer Mirza, et al.
Biorxiv : the Preprint Server for Biology
|
February 20, 2025
ECD co-operates with ERBB2 to promote tumorigenesis through upregulation of unfolded protein response and glycolysis
Benjamin B Kennedy, Mohsin Raza, Sameer Mirza, et al.
Elife
|
May 6, 2025
The context-dependent epigenetic and organogenesis programs determine 3D vs. 2D cellular fitness of MYC-driven murine liver cancer cells
Jie Fang, Shivendra Singh, Brennan Wells, et al.
Page
of 7