[HTML][HTML] Ion exchanger in the brain: quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke, FE Wagner… - Scientific reports, 2015 - nature.com
Perineuronal nets (PNs) are a specialized form of brain extracellular matrix, consisting of
negatively charged glycosaminoglycans, glycoproteins and proteoglycans in the direct …

Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke… - Scientific …, 2015 - ui.adsabs.harvard.edu
Perineuronal nets (PNs) are a specialized form of brain extracellular matrix, consisting of
negatively charged glycosaminoglycans, glycoproteins and proteoglycans in the direct …

[PDF][PDF] Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke… - Scientific …, 2015 - mediatum.ub.tum.de
Results Elemental imaging in brain tissue. In order to analyze the fixed negative charge
density in the neuronal microenvironment and PNs with an iron probe by μ PIXE, the PN …

[PDF][PDF] Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke, FE Wagner… - researchgate.net
Results Elemental imaging in brain tissue. In order to analyze the fixed negative charge
density in the neuronal microenvironment and PNs with an iron probe by μ PIXE, the PN …

[HTML][HTML] Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke… - Scientific …, 2015 - ncbi.nlm.nih.gov
Perineuronal nets (PNs) are a specialized form of brain extracellular matrix, consisting of
negatively charged glycosaminoglycans, glycoproteins and proteoglycans in the direct …

[PDF][PDF] Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke, FE Wagner… - bib-pubdb1.desy.de
Results Elemental imaging in brain tissue. In order to analyze the fixed negative charge
density in the neuronal microenvironment and PNs with an iron probe by μ PIXE, the PN …

Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties.

M Morawski, T Reinert, W Meyer-Klaucke… - Scientific …, 2015 - europepmc.org
Perineuronal nets (PNs) are a specialized form of brain extracellular matrix, consisting of
negatively charged glycosaminoglycans, glycoproteins and proteoglycans in the direct …

[PDF][PDF] Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke, FE Wagner… - kpubiochem.firebird.jp
Results Elemental imaging in brain tissue. In order to analyze the fixed negative charge
density in the neuronal microenvironment and PNs with an iron probe by µ PIXE, the PN …

[PDF][PDF] Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke, FE Wagner… - cyberleninka.org
Results Elemental imaging in brain tissue. In order to analyze the fixed negative charge
density in the neuronal microenvironment and PNs with an iron probe by μ PIXE, the PN …

Ion exchanger in the brain: Quantitative analysis of perineuronally fixed anionic binding sites suggests diffusion barriers with ion sorting properties

M Morawski, T Reinert, W Meyer-Klaucke… - Scientific …, 2015 - pubmed.ncbi.nlm.nih.gov
Perineuronal nets (PNs) are a specialized form of brain extracellular matrix, consisting of
negatively charged glycosaminoglycans, glycoproteins and proteoglycans in the direct …