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39 results on '"Globus RK"'

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1. Dried plum diet protects from bone loss caused by ionizing radiation.

2. Simulated Microgravity Alters Gene Regulation Linked to Immunity and Cardiovascular Disease.

3. Spaceflight Modulates the Expression of Key Oxidative Stress and Cell Cycle Related Genes in Heart.

4. Overexpression of catalase in mitochondria mitigates changes in hippocampal cytokine expression following simulated microgravity and isolation.

5. Placenta-Expanded Stromal Cell Therapy in a Rodent Model of Simulated Weightlessness.

6. Neutrophil-to-Lymphocyte Ratio: A Biomarker to Monitor the Immune Status of Astronauts.

7. Skeletal tissue regulation by catalase overexpression in mitochondria.

8. Dietary countermeasure mitigates simulated spaceflight-induced osteopenia in mice.

9. Validation of a New Rodent Experimental System to Investigate Consequences of Long Duration Space Habitation.

10. A human mission to Mars: Predicting the bone mineral density loss of astronauts.

11. Influence of Social Isolation During Prolonged Simulated Weightlessness by Hindlimb Unloading.

13. Behavior of mice aboard the International Space Station.

14. Redox Signaling and Its Impact on Skeletal and Vascular Responses to Spaceflight.

15. Dose- and Ion-Dependent Effects in the Oxidative Stress Response to Space-Like Radiation Exposure in the Skeletal System.

16. Preservation of Multiple Mammalian Tissues to Maximize Science Return from Ground Based and Spaceflight Experiments.

17. Apollo Lunar Astronauts Show Higher Cardiovascular Disease Mortality: Possible Deep Space Radiation Effects on the Vascular Endothelium.

18. Hindlimb unloading: rodent analog for microgravity.

19. Effects of hindlimb unloading and ionizing radiation on skeletal muscle resistance artery vasodilation and its relation to cancellous bone in mice.

20. Space radiation-associated lung injury in a murine model.

21. Mechanical unloading of bone in microgravity reduces mesenchymal and hematopoietic stem cell-mediated tissue regeneration.

22. Microgravity induces pelvic bone loss through osteoclastic activity, osteocytic osteolysis, and osteoblastic cell cycle inhibition by CDKN1a/p21.

23. Protein array profiling of mouse serum, six months post whole body radiation with (56)Fe.

24. Low-dose, ionizing radiation and age-related changes in skeletal microarchitecture.

25. Short-term effects of whole-body exposure to (56)fe ions in combination with musculoskeletal disuse on bone cells.

26. Oxidative stress and gamma radiation-induced cancellous bone loss with musculoskeletal disuse.

27. Total-body irradiation of postpubertal mice with (137)Cs acutely compromises the microarchitecture of cancellous bone and increases osteoclasts.

28. Influence of increased mechanical loading by hypergravity on the microtubule cytoskeleton and prostaglandin E2 release in primary osteoblasts.

29. Effects of disrupted beta1-integrin function on the skeletal response to short-term hindlimb unloading in mice.

30. Hindlimb unloading rodent model: technical aspects.

31. Bioenergetics and mitochondrial transmembrane potential during differentiation of cultured osteoblasts.

32. Gene expression in space.

33. Fibronectin is a survival factor for differentiated osteoblasts.

34. Interactions between integrin receptors and fibronectin are required for calvarial osteoblast differentiation in vitro.

35. The solid state environment orchestrates embryonic development and tissue remodeling.

36. Fibronectin regulates calvarial osteoblast differentiation.

38. Skeletal response to dietary calcium in a rat model simulating weightlessness.

39. Chronic 1,25-dihydroxyvitamin D3 administration in the rat reduces the serum concentration of 25-hydroxyvitamin D by increasing metabolic clearance rate.

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