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4. Neuroadaptive Biochemical Mechanisms of Remote Ischemic Conditioning.

6. Molecular Mechanisms of Adaptation to Hypoxia.

8. Differences in the Autophagy Response to Hypoxia in the Hippocampus and Neocortex of Rats.

10. Intermittent Hypoxic Training as an Effective Tool for Increasing the Adaptive Potential, Endurance and Working Capacity of the Brain.

16. Long-Term Effects of Prenatal Severe Hypoxia on Central and Peripheral Components of the Glucocorticoid System in Rats.

17. Neuroprotective action of PHD inhibitors is predominantly HIF‐1‐independent: An Editorial for 'Sex differences in neonatal mouse brain injury after hypoxia‐ischemia and adaptaquin treatment' on page 759.

18. Editorial: Brain Hypoxia and Ischemia: New Insights Into Neurodegeneration and Neuroprotection.

19. Current insights into the molecular mechanisms of hypoxic pre- and postconditioning using hypobaric hypoxia.

20. Brain, antibiotics, and microbiota – how do they interplay?

22. Differential expression of ADAM15 and ADAM17 metalloproteases in the rat brain after severe hypobaric hypoxia and hypoxic preconditioning

23. Postconditioning by mild hypoxic exposures reduces rat brain injury caused by severe hypoxia

24. Mild hypobaric hypoxia preconditioning up-regulates expression of transcription factors c-Fos and NGFI-A in rat neocortex and hippocampus

25. Antidepressant-like effects of mild hypoxia preconditioning in the learned helplessness model in rats

26. The preconditioning modified neuronal expression of apoptosis-related proteins of Bcl-2 superfamily following severe hypobaric hypoxia in rats

27. Mild preconditioning hypoxia modifies nerve growth factor-induced gene A messenger RNA expression in the rat brain induced by severe hypoxia

28. Expression of novel antioxidant thioredoxin-2 in the rat brain.

29. Glucocorticoid-Dependent Mechanisms of Brain Tolerance to Hypoxia.

30. Hypoxia-Induced S100A8 Expression Activates Microglial Inflammation and Promotes Neuronal Apoptosis.

31. Mechanisms underlying the health benefits of intermittent hypoxia conditioning.

32. Neuroprotective effect of hypobaric hypoxic postconditioning is accompanied by dna protection and lipid peroxidation changes in rat hippocampus.

33. Acetylation of histones in neocortex and hippocampus of rats exposed to different modes of hypobaric hypoxia: Implications for brain hypoxic injury and tolerance.

34. Neocortical pCREB and BDNF expression under different modes of hypobaric hypoxia: Role in brain hypoxic tolerance in rats.

35. The effect of preconditioning on the Cu, Zn superoxide dismutase expression and enzyme activity in rat brain at the early period after severe hypobaric hypoxia

36. The augmentation of brain thioredoxin-1 expression after severe hypobaric hypoxia by the preconditioning in rats

37. Preconditioning enhances the expression of mitochondrial antioxidant thioredoxin-2 in the forebrain of rats exposed to severe hypobaric hypoxia.

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