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Reactive Oxygen Species Drive Epigenetic Changes in Radiation-Induced  Fibrosis
Reactive Oxygen Species Drive Epigenetic Changes in Radiation-Induced Fibrosis

Ionizing radiation induces loss of mitochondrial membrane potential and...  | Download Scientific Diagram
Ionizing radiation induces loss of mitochondrial membrane potential and... | Download Scientific Diagram

Ionizing Radiation-induced, Mitochondria-dependent Generation of Reactive  Oxygen/Nitrogen | Cancer Research
Ionizing Radiation-induced, Mitochondria-dependent Generation of Reactive Oxygen/Nitrogen | Cancer Research

Mitochondrial adaptation in human mesenchymal stem cells following ionizing  radiation - Patten - 2019 - The FASEB Journal - Wiley Online Library
Mitochondrial adaptation in human mesenchymal stem cells following ionizing radiation - Patten - 2019 - The FASEB Journal - Wiley Online Library

Fragmentation level determines mitochondrial damage response and  subsequently the fate of cancer cells exposed to carbon ions - Radiotherapy  and Oncology
Fragmentation level determines mitochondrial damage response and subsequently the fate of cancer cells exposed to carbon ions - Radiotherapy and Oncology

The impact of high and low dose ionising radiation on the central nervous  system - ScienceDirect
The impact of high and low dose ionising radiation on the central nervous system - ScienceDirect

The role of radiation induced oxidative stress as a regulator of  radio-adaptive responses - EMFSA
The role of radiation induced oxidative stress as a regulator of radio-adaptive responses - EMFSA

Radioprotective agents to prevent cellular damage due to ionizing radiation  | Journal of Translational Medicine | Full Text
Radioprotective agents to prevent cellular damage due to ionizing radiation | Journal of Translational Medicine | Full Text

Figure 3
Figure 3

Severe mitochondrial damage associated with low-dose radiation sensitivity  in ATM- and NBS1-deficient cells
Severe mitochondrial damage associated with low-dose radiation sensitivity in ATM- and NBS1-deficient cells

New publication of the Key Laboratory of Heavy Ion Radiation Medicine of  Chinese Academy of Sciences[1] » Nanolive - A complete solution for your  label-free live cell imaging
New publication of the Key Laboratory of Heavy Ion Radiation Medicine of Chinese Academy of Sciences[1] » Nanolive - A complete solution for your label-free live cell imaging

Radiation-induced heart disease: a review of classification, mechanism and  prevention
Radiation-induced heart disease: a review of classification, mechanism and prevention

PLOS ONE: Possible Existence of Lysosome-Like Organella within Mitochondria  and Its Role in Mitochondrial Quality Control
PLOS ONE: Possible Existence of Lysosome-Like Organella within Mitochondria and Its Role in Mitochondrial Quality Control

A mitochondria-targeted nanoradiosensitizer activating reactive oxygen  species burst for enhanced radiation therapy - Chemical Science (RSC  Publishing)
A mitochondria-targeted nanoradiosensitizer activating reactive oxygen species burst for enhanced radiation therapy - Chemical Science (RSC Publishing)

Mitochondrion‐Anchoring Photosensitizer with Aggregation‐Induced Emission  Characteristics Synergistically Boosts the Radiosensitivity of Cancer Cells  to Ionizing Radiation - Yu - 2017 - Advanced Materials - Wiley Online  Library
Mitochondrion‐Anchoring Photosensitizer with Aggregation‐Induced Emission Characteristics Synergistically Boosts the Radiosensitivity of Cancer Cells to Ionizing Radiation - Yu - 2017 - Advanced Materials - Wiley Online Library

Frontiers | Mitochondrial Degeneration and Autophagy Associated With  Delayed Effects of Radiation in the Mouse Brain | Frontiers in Aging  Neuroscience
Frontiers | Mitochondrial Degeneration and Autophagy Associated With Delayed Effects of Radiation in the Mouse Brain | Frontiers in Aging Neuroscience

Ionizing radiation activates sphingomyelinase (SMase) present in the... |  Download Scientific Diagram
Ionizing radiation activates sphingomyelinase (SMase) present in the... | Download Scientific Diagram

The diagram illustrates how radiation enhanced mitochondrial biogenesis...  | Download Scientific Diagram
The diagram illustrates how radiation enhanced mitochondrial biogenesis... | Download Scientific Diagram

Oxidative Stress as the Underlying Biomechanism of Detrimental Outcomes of  Ionizing and Non-Ionizing Radiation on Human Health: Antioxidant Protective  Strategies | Zahedan Journal of Research in Medical Sciences | Full Text
Oxidative Stress as the Underlying Biomechanism of Detrimental Outcomes of Ionizing and Non-Ionizing Radiation on Human Health: Antioxidant Protective Strategies | Zahedan Journal of Research in Medical Sciences | Full Text

Effects of ionizing radiation on mitochondria - ScienceDirect
Effects of ionizing radiation on mitochondria - ScienceDirect

Mitochondria and ROS in cell death. Various studies have shown that ROS...  | Download Scientific Diagram
Mitochondria and ROS in cell death. Various studies have shown that ROS... | Download Scientific Diagram

Cells | Free Full-Text | Mechanisms of Energy Metabolism in Skeletal Muscle  Mitochondria Following Radiation Exposure | HTML
Cells | Free Full-Text | Mechanisms of Energy Metabolism in Skeletal Muscle Mitochondria Following Radiation Exposure | HTML

PLOS ONE: Exposure to Heavy Ion Radiation Induces Persistent Oxidative  Stress in Mouse Intestine
PLOS ONE: Exposure to Heavy Ion Radiation Induces Persistent Oxidative Stress in Mouse Intestine

Regulatory roles of miR-22/Redd1-mediated mitochondrial ROS and cellular  autophagy in ionizing radiation-induced BMSC injury | Cell Death & Disease
Regulatory roles of miR-22/Redd1-mediated mitochondrial ROS and cellular autophagy in ionizing radiation-induced BMSC injury | Cell Death & Disease

Figure 1 from Reduction–oxidation (redox) system in radiation-induced  normal tissue injury: molecular mechanisms and implications in radiation  therapeutics | Semantic Scholar
Figure 1 from Reduction–oxidation (redox) system in radiation-induced normal tissue injury: molecular mechanisms and implications in radiation therapeutics | Semantic Scholar