Disruption of iron homeostasis as a consequence of aging is thought to cause iron levels to increase, potentially promoting oxidative cellular damage. Therefore, understanding how this process evolves through the lifespan could offer insights into both the aging process and the development of aging-related neurodegenerative brain diseases. This work aimed to map, in vivo for the first time with an unbiased whole-brain approach, age-related iron changes using quantitative susceptibility mapping (QSM)—a new postprocessed MRI contrast mechanism. To this end, a full QSM standardization routine was devised and a cohort of N = 116 healthy adults (20–79 years of age) was studied. The whole-brain and ROI analyses confirmed that the propensity of br...
© 2016. Iron deposition in the brain is a feature of normal aging, though in several neurodegenerati...
Intracellular iron is essential for many neurobiological mechanisms. However, at high concentrations...
Intracellular iron is essential for many neurobiological mechanisms. However, at high concentrations...
There is increasing evidence that iron deposition occurs in specific regions of the brain in normal ...
Different brain structures accumulate iron at different rates throughout the adult life span. Typica...
Evidence from magnetic resonance imaging (MRI) studies shows that healthy aging is associated with p...
Evidence from magnetic resonance imaging (MRI) studies shows that healthy aging is associated with p...
Quantifying tissue iron concentration in vivo is instrumental for understanding the role of iron in ...
Brain aging is a heterogeneous phenomenon, and this thesis illustrates how the course of aging can v...
Brain aging is a heterogeneous phenomenon, and this thesis illustrates how the course of aging can v...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
AbstractEvidence from magnetic resonance imaging (MRI) studies shows that healthy aging is associate...
Brain iron dyshomeostasis disrupts various critical cellular functions, and age-related iron accumul...
Brain iron dyshomeostasis disrupts various critical cellular functions, and age-related iron accumul...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
© 2016. Iron deposition in the brain is a feature of normal aging, though in several neurodegenerati...
Intracellular iron is essential for many neurobiological mechanisms. However, at high concentrations...
Intracellular iron is essential for many neurobiological mechanisms. However, at high concentrations...
There is increasing evidence that iron deposition occurs in specific regions of the brain in normal ...
Different brain structures accumulate iron at different rates throughout the adult life span. Typica...
Evidence from magnetic resonance imaging (MRI) studies shows that healthy aging is associated with p...
Evidence from magnetic resonance imaging (MRI) studies shows that healthy aging is associated with p...
Quantifying tissue iron concentration in vivo is instrumental for understanding the role of iron in ...
Brain aging is a heterogeneous phenomenon, and this thesis illustrates how the course of aging can v...
Brain aging is a heterogeneous phenomenon, and this thesis illustrates how the course of aging can v...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
AbstractEvidence from magnetic resonance imaging (MRI) studies shows that healthy aging is associate...
Brain iron dyshomeostasis disrupts various critical cellular functions, and age-related iron accumul...
Brain iron dyshomeostasis disrupts various critical cellular functions, and age-related iron accumul...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
© 2016. Iron deposition in the brain is a feature of normal aging, though in several neurodegenerati...
Intracellular iron is essential for many neurobiological mechanisms. However, at high concentrations...
Intracellular iron is essential for many neurobiological mechanisms. However, at high concentrations...