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20 results on '"Muscle Development radiation effects"'

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1. Development of Mesenchymal Stem Cell Encoded with Myogenic Gene for Treating Radiation-Induced Muscle Fibrosis.

2. Unraveling radiation-induced skeletal muscle damage: Insights from a 3D human skeletal muscle organoid model.

3. Effects of thyroid hormone on monochromatic light combinations mediate skeletal muscle fiber pattern in broilers.

4. Comparison of Three Antagonists of Hedgehog Pathway to Promote Skeletal Muscle Regeneration after High Dose Irradiation.

5. DNMT3A and DNMT3B Targeting as an Effective Radiosensitizing Strategy in Embryonal Rhabdomyosarcoma.

6. Mechanical Stimulation of Adhesion Receptors Using Light-Responsive Nanoparticle Actuators Enhances Myogenesis.

7. Characterization of C2C12 cells in simulated microgravity: Possible use for myoblast regeneration.

8. A systems biology approach reveals neuronal and muscle developmental defects after chronic exposure to ionising radiation in zebrafish.

9. Photobiomodulation and different macrophages phenotypes during muscle tissue repair.

10. Promotion of Myogenic Maturation by Timely Application of Electric Field Along the Topographical Alignment.

11. The effect of low intensity shockwave treatment (Li-SWT) on human myoblasts and mouse skeletal muscle.

12. Various LED Wavelengths Affected Myofiber Development and Satellite Cell Proliferation of Chick Embryos via the IGF-1 Signaling Pathway.

13. Extremely Low-Frequency Electromagnetic Fields Affect Myogenic Processes in C2C12 Myoblasts: Role of Gap-Junction-Mediated Intercellular Communication.

14. In ovo exposure to monochromatic lights affect posthatch muscle growth and satellite cell proliferation of chicks: role of IGF-1.

15. Electrically driven intracellular and extracellular nanomanipulators evoke neurogenic/cardiomyogenic differentiation in human mesenchymal stem cells.

16. Effect of Green Light on Nitric Oxide Metabolism in Chick Embryos. A Possible Physiological Role.

17. Redistribution of body composition in patients with Graves' disease after iodine-131 treatment.

18. Nonionizing radiation as a noninvasive strategy in regenerative medicine: the effect of Ca(2+)-ICR on mouse skeletal muscle cell growth and differentiation.

19. Extensive mononuclear infiltration and myogenesis characterize recovery of dysferlin-null skeletal muscle from contraction-induced injuries.

20. Intrabiliary radiation inhibits smooth muscle formation and biliary duct remodelling after balloon overstretching injury in dogs.

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