Purpose: To assess a recently developed magnetic resonance imaging (MRI) technique called magnetic field correlation (MFC) imaging along with a conventional imaging method, the transverse relaxation rate (R2), for estimating age-related brain iron concentration in adolescents and adults. Brain region measures were compared with nonheme iron concentrations (CPM) based on a prior postmortem study. Materials and Methods: Asymmetric spin echo (ASE) images were acquired at 3T from 26 healthy individuals (16 adolescents, 10 adults). Regions of interest (ROIs) were placed in areas in which age-related iron content was estimated postmortem: globus pallidus (GP), putamen (PUT), caudate nucleus (CN), thalamus (THL), and frontal white matter (FWM). Re...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
Disruption of iron homeostasis as a consequence of aging is thought to cause iron levels to increase...
Background: Chemical imaging of the human brain has great potential for diagnostic and monitoring pu...
Purpose: To assess a recently developed magnetic resonance imaging (MRI) technique called magnetic f...
Different brain structures accumulate iron at different rates throughout the adult life span. Typica...
Aim: To quantify age-dependent iron deposition changes in healthy subjects using Susceptibility Weig...
ii During the last few years, magnetic resonance imaging (MRI) systems operating at high (≥3 Tesla) ...
To track iron accumulation and location in the brain across adolescence, we repurposed diffusion ten...
AIM: To quantify age-dependent iron deposition changes in healthy subjects using Susceptibility Weig...
Several magnetic resonance imaging (MRI) techniques are being exploited to measure brain iron levels...
Evidence from animal and histological studies has indicated that accumulation of iron in the brain r...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
Magnetic resonance imaging (MRI) studies have highlighted the possibility to investigate brain iron ...
Magnetic resonance imaging (MRI) enables a noninvasive in vivo quantification of iron in various org...
Studies of iron overload in humans and animals suggest that brain iron concentrations may be related...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
Disruption of iron homeostasis as a consequence of aging is thought to cause iron levels to increase...
Background: Chemical imaging of the human brain has great potential for diagnostic and monitoring pu...
Purpose: To assess a recently developed magnetic resonance imaging (MRI) technique called magnetic f...
Different brain structures accumulate iron at different rates throughout the adult life span. Typica...
Aim: To quantify age-dependent iron deposition changes in healthy subjects using Susceptibility Weig...
ii During the last few years, magnetic resonance imaging (MRI) systems operating at high (≥3 Tesla) ...
To track iron accumulation and location in the brain across adolescence, we repurposed diffusion ten...
AIM: To quantify age-dependent iron deposition changes in healthy subjects using Susceptibility Weig...
Several magnetic resonance imaging (MRI) techniques are being exploited to measure brain iron levels...
Evidence from animal and histological studies has indicated that accumulation of iron in the brain r...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
Magnetic resonance imaging (MRI) studies have highlighted the possibility to investigate brain iron ...
Magnetic resonance imaging (MRI) enables a noninvasive in vivo quantification of iron in various org...
Studies of iron overload in humans and animals suggest that brain iron concentrations may be related...
The link between brain iron homeostasis and neurodegenerative disease has been the subject of extens...
Disruption of iron homeostasis as a consequence of aging is thought to cause iron levels to increase...
Background: Chemical imaging of the human brain has great potential for diagnostic and monitoring pu...