BACKGROUND: Manganese (Mn) exposure is associated with increased T1-weighted magnetic resonance imaging (MRI) signal in the basal ganglia. T1 signal intensity has been correlated with occupational Mn exposure but not with clinical symptomatology or neuropathology. OBJECTIVES: This study investigated predictors of ex vivo T1 MRI basal ganglia signal intensity in neuropathologic tissue obtained from deceased South African mine workers. METHODS: A 3.0 T MRI was performed on ex vivo brain tissue obtained from 19 Mn mine workers and 10 race- and sex-matched mine workers of other commodities. Basal ganglia regions of interest were identified for each subject with T1-weighted intensity indices generated for each region. In a pathology subset, regi...
BACKGROUND: Manganese (Mn) neurotoxicity is associated with parkinsonism; the associated motor defic...
Occupational manganese (Mn) exposure is associated with the development of parkinsonism; however, th...
Gamma-aminobutyric acid (GABA) is the most abundant inhibitory neurotransmitter in the brain. It pla...
Manganese (Mn) is a common neurotoxicant associated with a clinical syndrome that includes signs and...
Manganese (Mn) is a common occupational exposure worldwide. Recent studies indicate clinical and ima...
Occupational exposure to Manganese, such as in welding, can cause motor and cognitive deficits that ...
Exposure to high levels of manganese (Mn) is known to produce a complex neurological syndrome with p...
Objectives Manganese exposure leads to diffuse cerebral metal deposition with the highest concentrat...
Manganese (Mn) is a neurotoxicant that many workers are exposed to daily. There is limited knowledge...
Although the essential element manganese (Mn) is neurotoxic at high doses, the effects of lower expo...
Excessive occupational exposure to Manganese (Mn) has been associated with clinical symptoms resembl...
Background Exposure to excessive levels of manganese (Mn) is known to induce psychiatric and motor ...
D ow nloaded from 2 Exposure to high levels of manganese (Mn) is known to produce a complex neurolog...
poster abstractExcessive manganese (Mn) exposure is known to cause cognitive, psychiatric and motor ...
Manganese (Mn) is an essential metal and has important physiological functions for human health. Ho...
BACKGROUND: Manganese (Mn) neurotoxicity is associated with parkinsonism; the associated motor defic...
Occupational manganese (Mn) exposure is associated with the development of parkinsonism; however, th...
Gamma-aminobutyric acid (GABA) is the most abundant inhibitory neurotransmitter in the brain. It pla...
Manganese (Mn) is a common neurotoxicant associated with a clinical syndrome that includes signs and...
Manganese (Mn) is a common occupational exposure worldwide. Recent studies indicate clinical and ima...
Occupational exposure to Manganese, such as in welding, can cause motor and cognitive deficits that ...
Exposure to high levels of manganese (Mn) is known to produce a complex neurological syndrome with p...
Objectives Manganese exposure leads to diffuse cerebral metal deposition with the highest concentrat...
Manganese (Mn) is a neurotoxicant that many workers are exposed to daily. There is limited knowledge...
Although the essential element manganese (Mn) is neurotoxic at high doses, the effects of lower expo...
Excessive occupational exposure to Manganese (Mn) has been associated with clinical symptoms resembl...
Background Exposure to excessive levels of manganese (Mn) is known to induce psychiatric and motor ...
D ow nloaded from 2 Exposure to high levels of manganese (Mn) is known to produce a complex neurolog...
poster abstractExcessive manganese (Mn) exposure is known to cause cognitive, psychiatric and motor ...
Manganese (Mn) is an essential metal and has important physiological functions for human health. Ho...
BACKGROUND: Manganese (Mn) neurotoxicity is associated with parkinsonism; the associated motor defic...
Occupational manganese (Mn) exposure is associated with the development of parkinsonism; however, th...
Gamma-aminobutyric acid (GABA) is the most abundant inhibitory neurotransmitter in the brain. It pla...