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1. Impacts of radiation exposure, hindlimb unloading, and recovery on murine skeletal muscle cell telomere length

2. Dynamics of skeletal muscle-resident stem cells during myogenesis in fibrodysplasia ossificans progressiva

3. CD206+ tendon resident macrophages and their potential crosstalk with fibroblasts and the ECM during tendon growth and maturation

4. Telomere length assessments of muscle stem cells in rodent and human skeletal muscle sections

5. A robust Pax7EGFP mouse that enables the visualization of dynamic behaviors of muscle stem cells

6. Single Stem Cell Imaging and Analysis Reveals Telomere Length Differences in Diseased Human and Mouse Skeletal Muscles

7. Cardiomyocyte‐Specific Telomere Shortening is a Distinct Signature of Heart Failure in Humans

8. Specialized Circuitry of Embryonic Stem Cells Promotes Genomic Integrity

9. <scp>Gli1</scp> Defines a Subset of Fibro‐adipogenic Progenitors that Promote Skeletal Muscle Regeneration With Less Fat Accumulation

10. Piezo1 regulates the regenerative capacity of skeletal muscles via orchestration of stem cell morphological states

11. Telomere length assessments of muscle stem cells in rodent and human skeletal muscle sections

12. T Cell Predominant Response to AAV-Spike Protects hACE2 Mice from SARS-CoV-2 Pneumonia

14. Persistent NF-κB activation in muscle stem cells induces proliferation-independent telomere shortening

15. Single Stem Cell Imaging and Analysis Reveals Telomere Length Differences in Diseased Human and Mouse Skeletal Muscles

16. A new method of genotyping MDX4CV mice by PCR-RFLP analysis

17. Cardiomyocyte‐Specific Telomere Shortening is a Distinct Signature of Heart Failure in Humans

18. Human Skeletal Stem Cells: The Markers Provide Some Clues in the Hunt for Hidden Treasure

19. Mechanosensing by the Lamina Protects against Nuclear Rupture, DNA Damage, and Cell-Cycle Arrest

20. The abundance of Rad51 protein in mouse embryonic stem cells is regulated at multiple levels

21. The human DEK oncogene regulates DNA damage response signaling and repair

22. Mismatch and base excision repair proficiency in murine embryonic stem cells

23. Mouse Embryonic Stem Cells, but Not Somatic Cells, Predominantly Use Homologous Recombination to Repair Double-Strand DNA Breaks

24. The breast cancer susceptibility allele CHEK2*1100delC promotes genomic instability in a knock-in mouse model

25. Loss of NAD Homeostasis Leads to Progressive and Reversible Degeneration of Skeletal Muscle

26. Mechanisms maintaining genomic integrity in embryonic stem cells and induced pluripotent stem cells

27. Preservation of Genomic Integrity in Mouse Embryonic Stem Cells

28. DNA Repair in Murine Embryonic Stem Cells and Differentiated Cells

29. DNA double‐strand break repair in mouse embryonic stem cells

30. Protecting genomic integrity in somatic cells and embryonic stem cells

32. Mouse embryonic stem cells undergo charontosis, a novel programmed cell death pathway dependent upon cathepsins, p53, and EndoG, in response to etoposide treatment

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