173 results on '"Sanderson, Thomas H"'
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2. Modulation of mitochondrial function with near-infrared light reduces brain injury in a translational model of cardiac arrest
3. Cytochrome c lysine acetylation regulates cellular respiration and cell death in ischemic skeletal muscle
4. ER-associated degradation adapter Sel1L is required for CD8+ T cell function and memory formation following acute viral infection
5. Endoplasmic reticulum–associated degradation regulates mitochondrial dynamics in brown adipocytes
6. Rapid Treatment with Intramuscular Magnesium Sulfate During Cardiopulmonary Resuscitation Does Not Provide Neuroprotection Following Cardiac Arrest
7. Mitochondrial membrane potential and oxidative stress interact to regulate Oma1‐dependent processing of Opa1 and mitochondrial dynamics.
8. Iron regulates the quiescence of naive CD4 T cells by controlling mitochondria and cellular metabolism
9. Phosphorylations and Acetylations of Cytochrome c Control Mitochondrial Respiration, Mitochondrial Membrane Potential, Energy, ROS, and Apoptosis
10. Dose optimization of early high-dose valproic acid for neuroprotection in a swine cardiac arrest model
11. Abstract TP32: Sirtuin 3 Regulation of Mitochondrial Dynamics and Neuronal Apoptosis During Ischemia/Reperfusion
12. Machine learning-based classification of mitochondrial morphology in primary neurons and brain
13. Use of resuscitative balloon occlusion of the aorta in a swine model of prolonged cardiac arrest
14. Mitochondrial fission and mitophagy are independent mechanisms regulating ischemia/reperfusion injury in primary neurons
15. Non-invasive treatment with near-infrared light: A novel mechanisms-based strategy that evokes sustained reduction in brain injury after stroke
16. Mitochondrial Quality Control and Disease: Insights into Ischemia-Reperfusion Injury
17. Cytochrome c lysine acetylation regulates cellular respiration and cell death in ischemic skeletal muscle
18. Non‐invasive treatment of ischemia/reperfusion injury: Effective transmission of therapeutic near‐infrared light into the human brain through soft skin‐conforming silicone waveguides
19. Phosphorylation of Mammalian Cytochrome c and Cytochrome c Oxidase in the Regulation of Cell Destiny: Respiration, Apoptosis, and Human Disease
20. Does Disruption of Optic Atrophy-1 (OPA1) Contribute to Cell Death in HL-1 Cardiomyocytes Subjected to Lethal Ischemia-Reperfusion Injury?
21. Sometimes less is more: inhibitory infrared light during early reperfusion calms hyperactive mitochondria and suppresses reperfusion injury
22. Abstract 20928: Non-Invasive Mitochondrial Modulation: A Novel Approach to Reduce Brain Injury Following Cardiac Arrest
23. Release of mitochondrial Opa1 following oxidative stress in HT22 cells
24. Molecular Mechanisms of Ischemia–Reperfusion Injury in Brain: Pivotal Role of the Mitochondrial Membrane Potential in Reactive Oxygen Species Generation
25. Inhibiting Mitochondrial Cytochrome c Oxidase Downregulates Gene Transcription After Traumatic Brain Injury in Drosophila
26. Aerosol generation during chest compression and defibrillation in a swine cardiac arrest model
27. Abstract 109: Aerosol Generation During Chest Compression and Defibrillation in a Swine Cardiac Arrest Model
28. Abstract 123: Intra-arrest Delivery of Intra-muscular Magnesium Sulfate in a Rat Model of Cardiac Arrest
29. Abstract 213: Disruption of Mitochondrial Cristae Integrity in Lethal Myocardial Ischemia-Reperfusion Injury: Association or Cause-and-Effect?
30. Cytochrome c oxidase‐modulatory near‐infrared light penetration into the human brain: Implications for the noninvasive treatment of ischemia/reperfusion injury
31. Cytochrome c phosphorylation: Control of mitochondrial electron transport chain flux and apoptosis
32. Mitochondrial Quality Control: Role in Cardiac Models of Lethal Ischemia-Reperfusion Injury
33. Insulin blocks cytochrome c release in the reperfused brain through PI3-K signaling and by promoting Bax/Bcl-XL binding
34. Abstract 03: High-Dose Intranasal Insulin During CPR Improves Neurological Outcomes in a Rat Model of Cardiac Arrest
35. Abstract 273: Noninvasive Mitochondrial Modulation: Neuroprotection in a Translational Model of Cardiac Arrest and Resuscitation
36. Serine‐47 phosphorylation of cytochrome c in the mammalian brain regulates cytochrome c oxidase and caspase‐3 activity
37. Non-invasive treatment with near-infrared light: A novel mechanisms-based strategy that evokes sustained reduction in brain injury after stroke
38. Cytochrome c oxidase‐modulatory near‐infrared light penetration into the human brain: Implications for the noninvasive treatment of ischemia/reperfusion injury.
39. ER-associated degradation adapter Sel1L is required for CD8+T cell function and memory formation following acute viral infection
40. Endoplasmic reticulum-associated degradation regulates mitochondrial dynamics in brown adipocytes.
41. Abstract 359: Use of Resuscitative Balloon Occlusion of the Aorta in a Swine Model of Prolonged Cardiac Arrest
42. Tissue‐specific regulation of cytochrome c by post‐translational modifications: respiration, the mitochondrial membrane potential, ROS, and apoptosis
43. Publisher Correction: Inhibitory modulation of cytochrome c oxidase activity with specific near-infrared light wavelengths attenuates brain ischemia/reperfusion injury
44. Inhibitory modulation of cytochrome c oxidase activity with specific near-infrared light wavelengths attenuates brain ischemia/reperfusion injury
45. Mitochondrial Quality Control and Disease: Insights into Ischemia-Reperfusion Injury
46. Phosphorylation of Cytochrome c Threonine 28 Regulates Electron Transport Chain Activity in Kidney
47. Tissue-specific regulation of cytochrome c by post-translational modifications: respiration, the mitochondrial membrane potential, ROS, and apoptosis.
48. Mitochondrial dynamics following global cerebral ischemia
49. Cytochrome c is phosphorylated by AMP kinase in mammalian kidney, leading to controlled electron transport chain flux
50. Abstract W P234: Mitochondrial Dynamics During Cerebral Ischemia/Reperfusion Injury: The Role of Opa1 in Cytochrome c Release
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