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Author Details
Full Name
Yuji Nakada
Affiliation
University of Alabama at Birmingham
ORCID
Career Start Year
1998
Papers
47
H Index
23
Expertise
CM4AI Collaborator
Jake Y. Chen (CM4AI)
PMID
Paper Title
Journal Title
Published Year
37100826
Analysis of cardiac single-cell RNA-sequencing data can be improved by the use of artificial-intelligence-based tools.
Sci Rep
2023
37100826
Analysis of cardiac single-cell RNA-sequencing data can be improved by the use of artificial-intelligence-based tools.
Sci Rep
2023
35860330
Cardiomyocyte Cell-Cycle Regulation in Neonatal Large Mammals: Single Nucleus RNA-Sequencing Data Analysis <i>via</i> an Artificial-Intelligence-Based Pipeline.
Front Bioeng Biotechnol
2022
35630737
Retronasal Aroma of Beef Pate Analyzed by a Chewing Simulator.
Molecules
2022
35860330
Cardiomyocyte Cell-Cycle Regulation in Neonatal Large Mammals: Single Nucleus RNA-Sequencing Data Analysis <i>via</i> an Artificial-Intelligence-Based Pipeline.
Front Bioeng Biotechnol
2022
35666813
Single Nucleus Transcriptomics: Apical Resection in Newborn Pigs Extends the Time Window of Cardiomyocyte Proliferation and Myocardial Regeneration.
Circulation
2022
35666813
Single Nucleus Transcriptomics: Apical Resection in Newborn Pigs Extends the Time Window of Cardiomyocyte Proliferation and Myocardial Regeneration.
Circulation
2022
35630737
Retronasal Aroma of Beef Pate Analyzed by a Chewing Simulator.
Molecules
2022
32857385
Experimental Hypoxia as a Model for Cardiac Regeneration in Mice.
Methods Mol Biol
2021
33627480
Identification of tetracycline combinations as EphB1 tyrosine kinase inhibitors for treatment of neuropathic pain.
Proc Natl Acad Sci U S A
2021
33951921
Cyclin D2 Overexpression Enhances the Efficacy of Human Induced Pluripotent Stem Cell-Derived Cardiomyocytes for Myocardial Repair in a Swine Model of Myocardial Infarction.
Circulation
2021
32857385
Experimental Hypoxia as a Model for Cardiac Regeneration in Mice.
Methods Mol Biol
2021
33399005
Changes in Cardiomyocyte Cell Cycle and Hypertrophic Growth During Fetal to Adult in Mammals.
J Am Heart Assoc
2021
34676829
TT-10-loaded nanoparticles promote cardiomyocyte proliferation and cardiac repair in a mouse model of myocardial infarction.
JCI Insight
2021
33627480
Identification of tetracycline combinations as EphB1 tyrosine kinase inhibitors for treatment of neuropathic pain.
Proc Natl Acad Sci U S A
2021
34676829
TT-10-loaded nanoparticles promote cardiomyocyte proliferation and cardiac repair in a mouse model of myocardial infarction.
JCI Insight
2021
33951921
Cyclin D2 Overexpression Enhances the Efficacy of Human Induced Pluripotent Stem Cell-Derived Cardiomyocytes for Myocardial Repair in a Swine Model of Myocardial Infarction.
Circulation
2021
33399005
Changes in Cardiomyocyte Cell Cycle and Hypertrophic Growth During Fetal to Adult in Mammals.
J Am Heart Assoc
2021
32272846
Mechanism of Eccentric Cardiomyocyte Hypertrophy Secondary to Severe Mitral Regurgitation.
Circulation
2020
32272846
Mechanism of Eccentric Cardiomyocyte Hypertrophy Secondary to Severe Mitral Regurgitation.
Circulation
2020
32617517
Mitochondrial Substrate Utilization Regulates Cardiomyocyte Cell Cycle Progression.
Nat Metab
2020
32499640
A calcineurin-Hoxb13 axis regulates growth mode of mammalian cardiomyocytes.
Nature
2020
32617517
Mitochondrial Substrate Utilization Regulates Cardiomyocyte Cell Cycle Progression.
Nat Metab
2020
32499640
A calcineurin-Hoxb13 axis regulates growth mode of mammalian cardiomyocytes.
Nature
2020
30664377
C-Kit Cells Do Not Significantly Contribute to Cardiomyogenesis During Neonatal Heart Regeneration.
Circulation
2019
30802166
DNA Damage Response Mediates Pressure Overload-Induced Cardiomyocyte Hypertrophy.
Circulation
2019
30664377
C-Kit Cells Do Not Significantly Contribute to Cardiomyogenesis During Neonatal Heart Regeneration.
Circulation
2019
30802166
DNA Damage Response Mediates Pressure Overload-Induced Cardiomyocyte Hypertrophy.
Circulation
2019
27798600
Hypoxia induces heart regeneration in adult mice.
Nature
2017
28819000
Hypoxia-induced myocardial regeneration.
J Appl Physiol (1985)
2017
28842437
Hypoxia promotes primitive glycosaminoglycan-rich extracellular matrix composition in developing heart valves.
Am J Physiol Heart Circ Physiol
2017
27798600
Hypoxia induces heart regeneration in adult mice.
Nature
2017
27734354
Visualization and Lineage Tracing of Pax7<sup>+</sup> Spermatogonial Stem Cells in the Mouse.
Methods Mol Biol
2017
28819000
Hypoxia-induced myocardial regeneration.
J Appl Physiol (1985)
2017
28842437
Hypoxia promotes primitive glycosaminoglycan-rich extracellular matrix composition in developing heart valves.
Am J Physiol Heart Circ Physiol
2017
27734354
Visualization and Lineage Tracing of Pax7<sup>+</sup> Spermatogonial Stem Cells in the Mouse.
Methods Mol Biol
2017
26169647
Defining the Limit of Embryonic Heart Regeneration.
Circulation
2015
26507072
Regulation of FOXO3 subcellular localization by Kit ligand in the neonatal mouse ovary.
J Assist Reprod Genet
2015
26169647
Defining the Limit of Embryonic Heart Regeneration.
Circulation
2015
26413869
LKB1 loss promotes endometrial cancer progression via CCL2-dependent macrophage recruitment.
J Clin Invest
2015
26413869
LKB1 loss promotes endometrial cancer progression via CCL2-dependent macrophage recruitment.
J Clin Invest
2015
26507072
Regulation of FOXO3 subcellular localization by Kit ligand in the neonatal mouse ovary.
J Assist Reprod Genet
2015
24713393
The small GTPase Rheb is required for spermatogenesis but not oogenesis.
Reproduction
2014
24713393
The small GTPase Rheb is required for spermatogenesis but not oogenesis.
Reproduction
2014
25133429
PAX7 expression defines germline stem cells in the adult testis.
J Clin Invest
2014
25133429
PAX7 expression defines germline stem cells in the adult testis.
J Clin Invest
2014
22689059
Cooperation between p53 and the telomere-protecting shelterin component Pot1a in endometrial carcinogenesis.
Oncogene
2013
22689059
Cooperation between p53 and the telomere-protecting shelterin component Pot1a in endometrial carcinogenesis.
Oncogene
2013
24086281
The LKB1 tumor suppressor as a biomarker in mouse and human tissues.
PLoS One
2013
24086281
The LKB1 tumor suppressor as a biomarker in mouse and human tissues.
PLoS One
2013
1 - 50 of 94
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row(s) 1 - 30 of 30
Collaborators
Jianyi Zhang
University of Alabama at Birmingham, 1670 University Boulevard
Co-authored papers
6
Yang Zhou
University of Alabama at Birmingham
Co-authored papers
6
Thanh Nguyen
University of Alabama at Birmingham
Co-authored papers
3
Chao Xing
University of Texas Southwestern Medical Center
Co-authored papers
3
Gregory P Walcott
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Co-authored papers
3
Norman E Sharpless
National Cancer Institute
Co-authored papers
2
Meng Zhao
National Engineering Research Center of Cell Products, AmCellGene Engineering Co.
Co-authored papers
2
Wangping Chen
The Second Xiangya Hospital, Central South University
Co-authored papers
2
Jake Y. Chen (CM4AI)
University of Alabama at Birmingham
Co-authored papers
2
David Neil Hayes
Center for Cancer Research, University of Tennessee Health Science Center
Co-authored papers
2
Jake Y Chen
Co-authored papers
2
Mohammed Kanchwala
The University of Texas Southwestern Medical Center
Co-authored papers
2
Nabeel Bardeesy
Massachusetts General Hospital
Co-authored papers
2
Charles Lee
Co-authored papers
1
Philip J Ebert
Lilly Research Laboratories
Co-authored papers
1
Eric Zhang
University of Alabama at Birmingham.
Co-authored papers
1
Lewis C Cantley
Co-authored papers
1
Thomas G Stewart
Vanderbilt University Medical Center
Co-authored papers
1
Wuming Gong
Lillehei Heart Institute, University of Minnesota
Co-authored papers
1
Daniel J Garry
University of Minnesota
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Weihua Bian
Binzhou Medical University
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