Lipid composition of the normal human brain: gray matter, white matter, and myelin.
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Site distribution at the edge of the palaeolithic world: a nutritional niche approachTargeted Lipid Profiling Discovers Plasma Biomarkers of Acute Brain InjuryDifferential Lipid Profiles of Normal Human Brain Matter and Gliomas by Positive and Negative Mode Desorption Electrospray Ionization – Mass Spectrometry ImagingInhibition of the PLP-dependent enzyme serine palmitoyltransferase by cycloserine: evidence for a novel decarboxylative mechanism of inactivationDynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering--A Comparison between Wild-Type Protein and a Hinge Mutant.MR-guided transcranial brain HIFU in small animal modelsA Minimalist Approach to MALDI Imaging of Glycerophospholipids and Sphingolipids in Rat Brain SectionsCholesterol Modifies Huntingtin Binding to, Disruption of, and Aggregation on Lipid Membranes.Rapid measurement of brain macromolecular proton fraction with transient saturation transfer MRI.Modeling white matter microstructure.Myelin lipid abnormalities in the aspartoacylase-deficient tremor rat.Intrathecal synthesis of oligoclonal IgM against myelin lipids predicts an aggressive disease course in MS.Does a "moderate" alcohol intake damage the brain?Higher levels of myelin phospholipids in brains of neuronal α-Synuclein transgenic mice precede myelin loss.Shotgun lipidomics in substantiating lipid peroxidation in redox biology: Methods and applicationsThe contribution of chemical exchange to MRI frequency shifts in brain tissueLayer-specific variation of iron content in cerebral cortex as a source of MRI contrast.Sensitivity of MRI resonance frequency to the orientation of brain tissue microstructure.Association of Cognitive Impairment in Patients on 3-Hydroxy-3-Methyl-Glutaryl-CoA Reductase InhibitorsMouse brain plasmalogens are targets for hypochlorous acid-mediated modification in vitro and in vivo.Human cerebrospinal fluid fatty acid levels differ between supernatant fluid and brain-derived nanoparticle fractions, and are altered in Alzheimer's diseaseResistive and reactive changes to the impedance of intracortical microelectrodes can be mitigated with polyethylene glycol under acute in vitro and in vivo settings.The challenge of understanding cerebral white matter injury in the premature infant.Membrane interactions in nerve myelin: II. Determination of surface charge from biochemical data.Effects of lipid packing on polymorphic phase behavior and membrane properties.ω-3 fatty acids in the prevention of cognitive decline in humans.Altered lipid levels provide evidence for myelin dysfunction in multiple system atrophy.MR susceptibility imaging.Two modes of interaction between the membrane-embedded TARP stargazin's C-terminal domain and the bilayer visualized by electron crystallography.Analysis of lipid experiments (ALEX): a software framework for analysis of high-resolution shotgun lipidomics data.Increased CNS levels of apolipoprotein D in schizophrenic and bipolar subjects: implications for the pathophysiology of psychiatric disorders.Blood-brain barrier dysfunction in disorders of the developing brainTreatment of rats with a self-selected hyperlipidic diet, increases the lipid content of the main adipose tissue sites in a proportion similar to that of the lipids in the rest of organs and tissues.Myelin abnormalities in the optic and sciatic nerves in mice with GM1-gangliosidosisMice lacking major brain gangliosides develop parkinsonismLong acting injection versus oral risperidone in first-episode schizophrenia: differential impact on white matter myelination trajectory.Magnetization transfer from inhomogeneously broadened lines: A potential marker for myelin.In vivo evaluation of demyelination and remyelination in a nerve crush injury modelDHA-PC and PSD-95 decrease after loss of synaptophysin and before neuronal loss in patients with Alzheimer's disease.Quantification of histone deacetylase isoforms in human frontal cortex, human retina, and mouse brain
P2860
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P2860
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
description
1965 nî lūn-bûn
@nan
1965 թուականի Հոկտեմբերին հրատարակուած գիտական յօդուած
@hyw
1965 թվականի հոտեմբերին հրատարակված գիտական հոդված
@hy
1965年の論文
@ja
1965年論文
@yue
1965年論文
@zh-hant
1965年論文
@zh-hk
1965年論文
@zh-mo
1965年論文
@zh-tw
1965年论文
@wuu
name
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@ast
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@en
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@nl
type
label
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@ast
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@en
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@nl
prefLabel
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@ast
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@en
Lipid composition of the normal human brain: gray matter, white matter, and myelin.
@nl
P1476
Lipid composition of the normal human brain: gray matter, white matter, and myelin
@en
P2093
O'Brien JS
Sampson EL
P304
P577
1965-10-01T00:00:00Z