Resultados de búsqueda - Tyler J. Kirby
- Mostrando 1 - 16 Resultados de 16
-
1
Emerging views of the nucleus as a cellular mechanosensor por Tyler J. Kirby, Jan Lammerding
Publicado 2018Revisão -
2
MicroRNAs in skeletal muscle biology and exercise adaptation por Tyler J. Kirby, John J. McCarthy
Publicado 2013Revisão -
3
-
4
-
5
-
6
-
7
-
8
-
9
-
10
Reduced voluntary running performance is associated with impaired coordination as a result of muscle satellite cell depletion in adult mice por Janna R. Jackson, Tyler J. Kirby, Christopher S. Fry, Robin L. Cooper, John J. McCarthy, Charlotte A. Peterson, Esther E. Dupont‐Versteegden
Publicado 2015Artigo -
11
-
12
Regulation of the muscle fiber micro environment by activated satellite cells during hypertrophy por Christopher S. Fry, Jonah D. Lee, Janna R. Jackson, Tyler J. Kirby, Shawn A. Stasko, Honglu Liu, Esther E. Dupont‐Versteegden, John J. McCarthy, Charlotte A. Peterson
Publicado 2013Artigo -
13
Aged Muscle Demonstrates Fiber-Type Adaptations in Response to Mechanical Overload, in the Absence of Myofiber Hypertrophy, Independent of Satellite Cell Abundance por Jonah D. Lee, Christopher S. Fry, Jyothi Mula, Tyler J. Kirby, Janna R. Jackson, Fujun Liu, Lin Yang, Esther E. Dupont‐Versteegden, John J. McCarthy, Charlotte A. Peterson
Publicado 2015Artigo -
14
Satellite cell depletion does not inhibit adult skeletal muscle regrowth following unloading-induced atrophy por Janna R. Jackson, Jyothi Mula, Tyler J. Kirby, Christopher S. Fry, Jonah D. Lee, Margo F. Ubele, Kenneth S. Campbell, John J. McCarthy, Charlotte A. Peterson, Esther E. Dupont‐Versteegden
Publicado 2012Artigo -
15
Starring or Supporting Role? Satellite Cells and Skeletal Muscle Fiber Size Regulation por Kevin A. Murach, Christopher S. Fry, Tyler J. Kirby, Janna R. Jackson, Jonah D. Lee, Sarah H White-Springer, Esther E. Dupont‐Versteegden, John J. McCarthy, Charlotte A. Peterson
Publicado 2017Revisão -
16
Inducible depletion of satellite cells in adult, sedentary mice impairs muscle regenerative capacity without affecting sarcopenia por Christopher S. Fry, Jonah D. Lee, Jyothi Mula, Tyler J. Kirby, Janna R. Jackson, Fujun Liu, Lin Yang, Christopher L. Mendias, Esther E. Dupont‐Versteegden, John J. McCarthy, Charlotte A. Peterson
Publicado 2014Artigo
Herramientas de búsqueda:
Materias Relacionadas
Biology
Cell biology
Skeletal muscle
Gene
Genetics
Medicine
Anatomy
Endocrinology
Internal medicine
Muscle hypertrophy
Aerospace engineering
Engineering
Myocyte
Satellite
Biochemistry
Extracellular matrix
Cell
Lamin
Nucleus
RNA
Sarcopenia
Transcription factor
Atrophy
Chemistry
Chromatin
DNA
Extracellular
Gene expression
Messenger RNA
Molecular biology