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

Live cell imaging of mitochondria following targeted irradiation in situ  reveals rapid and highly localized loss of membrane potential | Scientific  Reports
Live cell imaging of mitochondria following targeted irradiation in situ reveals rapid and highly localized loss of membrane potential | Scientific Reports

Stimulation of cytoprotective autophagy and components of mitochondr
Stimulation of cytoprotective autophagy and components of mitochondr

GRK2 moderates the acute mitochondrial damage to ionizing radiation  exposure by promoting mitochondrial fission/fusion | Cell Death Discovery
GRK2 moderates the acute mitochondrial damage to ionizing radiation exposure by promoting mitochondrial fission/fusion | Cell Death Discovery

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 | PLOS ONE

Frontiers | The Mitochondrial Response to DNA Damage
Frontiers | The Mitochondrial Response to DNA Damage

Metabolism of cancer cells commonly responds to irradiation by a transient  early mitochondrial shutdown - ScienceDirect
Metabolism of cancer cells commonly responds to irradiation by a transient early mitochondrial shutdown - ScienceDirect

A mitochondria-targeted nanoradiosensitizer activating reactive oxygen  species burst for enhanced radiation therapy
A mitochondria-targeted nanoradiosensitizer activating reactive oxygen species burst for enhanced radiation therapy

Role of ion channels in ionizing radiation-induced cell death -  ScienceDirect
Role of ion channels in ionizing radiation-induced cell death - ScienceDirect

IJMS | Free Full-Text | Role of Mitochondria in Radiation Responses:  Epigenetic, Metabolic, and Signaling Impacts
IJMS | Free Full-Text | Role of Mitochondria in Radiation Responses: Epigenetic, Metabolic, and Signaling Impacts

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

Rays Sting: The Acute Cellular Effects of Ionizing Radiation Exposure. -  Abstract - Europe PMC
Rays Sting: The Acute Cellular Effects of Ionizing Radiation Exposure. - Abstract - Europe PMC

Figure 2 from Rays Sting: The Acute Cellular Effects of Ionizing Radiation  Exposure | Semantic Scholar
Figure 2 from Rays Sting: The Acute Cellular Effects of Ionizing Radiation Exposure | Semantic Scholar

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 | PLOS ONE

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

Frontiers | The Role of Mitochondrial Dysfunction in Radiation-Induced  Heart Disease: From Bench to Bedside
Frontiers | The Role of Mitochondrial Dysfunction in Radiation-Induced Heart Disease: From Bench to Bedside

Radiation-induced mitochondrial response. Radiation induces... | Download  Scientific Diagram
Radiation-induced mitochondrial response. Radiation induces... | Download Scientific Diagram

Evaluation of the role of mitochondria in the non-targeted effects of ionizing  radiation using cybrid cellular models | Scientific Reports
Evaluation of the role of mitochondria in the non-targeted effects of ionizing radiation using cybrid cellular models | Scientific Reports

Targeting cancer-cell mitochondria and metabolism to improve radiotherapy  response - ScienceDirect
Targeting cancer-cell mitochondria and metabolism to improve radiotherapy response - ScienceDirect

Genes | Free Full-Text | ATM-Mediated Mitochondrial Radiation Responses of  Human Fibroblasts | HTML
Genes | Free Full-Text | ATM-Mediated Mitochondrial Radiation Responses of Human Fibroblasts | HTML