Alzheimer s disease (AD) is a human neurodegenerative disease, and its global prevalence is predicted to increase dramatically in the following decades. There is mounting evidence describing the effects of ioniz- ing radiation (IR) on the brain, suggesting that exposure to IR might ultimately favor the development of AD. Therefore better understanding the possible connections between exposure to IR and AD pathogenesis is of utmost importance. In this review, recent developments in the research on the biological and cognitive effects of IR in the brain will be explored. Because AD is largely an age-related pathology, the effects of IR on ageing will be investigated
Cause and progression of Alzheimer\u27s disease (AD) are poorly understood. Possible cognitive and b...
International audienceBackground and aim. Humans are daily exposed to low-dose ionizing radiation (I...
Galactic Cosmic Radiation consisting of high-energy, high-charged (HZE) particles poses a significan...
Alzheimer’s disease (AD) is a human neurodegenerative disease, and its global prevalence is predicte...
Exposure to low-dose radiation (LDR, mostly less than 100 mGy) may reduce the vulnerability of expos...
BackgroundA recent study in mice reported early transcriptional response in brain to low-dose X-rays...
The number of people living with dementia is rising globally as life expectancy increases. Dementia ...
The cause and risk factors of Alzheimer’s disease (AD) are largely unknown. Studies on possible radi...
The cause and progression of Alzheimer\u27s disease (AD) are poorly understood. Possible cognitive a...
Alzheimer s disease (AD) is the most common form of dementia while its cause and progression are not...
Alzheimer Disease (AD), a chronic degenerative brain disorder, accounts for the most common form of...
International audienceBackground: High-dose ionizing radiation (IR) (>0.5 Gy) is an established risk...
International audienceThe last decades have seen increased concern about the possible effects of low...
Galactic Cosmic Radiation consisting of high-energy, high-charged (HZE) particles poses a significan...
Accruing data indicate that radiation-induced consequences resemble pathologies of neurodegenerative...
Cause and progression of Alzheimer\u27s disease (AD) are poorly understood. Possible cognitive and b...
International audienceBackground and aim. Humans are daily exposed to low-dose ionizing radiation (I...
Galactic Cosmic Radiation consisting of high-energy, high-charged (HZE) particles poses a significan...
Alzheimer’s disease (AD) is a human neurodegenerative disease, and its global prevalence is predicte...
Exposure to low-dose radiation (LDR, mostly less than 100 mGy) may reduce the vulnerability of expos...
BackgroundA recent study in mice reported early transcriptional response in brain to low-dose X-rays...
The number of people living with dementia is rising globally as life expectancy increases. Dementia ...
The cause and risk factors of Alzheimer’s disease (AD) are largely unknown. Studies on possible radi...
The cause and progression of Alzheimer\u27s disease (AD) are poorly understood. Possible cognitive a...
Alzheimer s disease (AD) is the most common form of dementia while its cause and progression are not...
Alzheimer Disease (AD), a chronic degenerative brain disorder, accounts for the most common form of...
International audienceBackground: High-dose ionizing radiation (IR) (>0.5 Gy) is an established risk...
International audienceThe last decades have seen increased concern about the possible effects of low...
Galactic Cosmic Radiation consisting of high-energy, high-charged (HZE) particles poses a significan...
Accruing data indicate that radiation-induced consequences resemble pathologies of neurodegenerative...
Cause and progression of Alzheimer\u27s disease (AD) are poorly understood. Possible cognitive and b...
International audienceBackground and aim. Humans are daily exposed to low-dose ionizing radiation (I...
Galactic Cosmic Radiation consisting of high-energy, high-charged (HZE) particles poses a significan...