Pages that link to "Q28212187"
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The following pages link to Postnatal development of dye-coupling among astrocytes in rat visual cortex (Q28212187):
Displaying 37 items.
- (Q28178914) (redirect page) (← links)
- Astrocytic connexin distributions and rapid, extensive dye transfer via gap junctions in the inferior colliculus: implications for [(14)C]glucose metabolite trafficking (Q30483418) (← links)
- Astrocytes, spontaneity, and the developing thalamus (Q30718505) (← links)
- Glioanatomy assessed by cell-cell interactions and phagocytotic labelling. (Q34080382) (← links)
- Astroglial Wiring is Adding Complexity to Neuroglial Networking (Q34167868) (← links)
- The physiology of developmental changes in BOLD functional imaging signals. (Q34205139) (← links)
- Coupled heterocellular arrays in the brain. (Q34784425) (← links)
- Cerebral haemodynamic response to somatosensory stimulation in near-term fetal sheep (Q36180146) (← links)
- Human epileptic astrocytes exhibit increased gap junction coupling (Q36791566) (← links)
- Mislocalization of Kir channels in malignant glia (Q36901703) (← links)
- Neurovascular coupling and energy metabolism in the developing brain (Q37468048) (← links)
- Astroglial networks: a step further in neuroglial and gliovascular interactions. (Q37678191) (← links)
- Structure--function relationships in gap junctions. (Q40500428) (← links)
- Endothelin-1 regulates glucose utilization in cultured astrocytes by controlling intercellular communication through gap junctions (Q41220649) (← links)
- Neurovascular coupling develops alongside neural circuits in the postnatal brain (Q42697932) (← links)
- The enhancement of glucose uptake caused by the collapse of gap junction communication is due to an increase in astrocyte proliferation (Q43718629) (← links)
- Connexin expression in homotypic and heterotypic cell coupling in the developing cerebral cortex (Q43864485) (← links)
- Spreading depression can be elicited in brain stem of immature but not adult rats (Q44467205) (← links)
- Gap junction-mediated astrocytic networks in the mouse barrel cortex (Q46595674) (← links)
- Autocellular coupling by gap junctions in cultured astrocytes: a new view on cellular autoregulation during process formation. (Q47700224) (← links)
- The K-ATP channel regulates the effect of Ca2+ on gap junction permeability in cultured astrocytes (Q48012316) (← links)
- Astrocytic dye coupling in rat hippocampus: topography, developmental onset, and modulation by protein kinase C. (Q48118740) (← links)
- Extent of intercellular calcium wave propagation is related to gap junction permeability and level of connexin-43 expression in astrocytes in primary cultures from four brain regions (Q48171362) (← links)
- 5-Hydroxytryptamine and glutamate modulate velocity and extent of intercellular calcium signalling in hippocampal astroglial cells in primary cultures (Q48205718) (← links)
- Late onset and increasing expression of the gap junction protein connexin30 in adult murine brain and long-term cultured astrocytes. (Q48304354) (← links)
- Regulation of extracellular potassium in the developing hippocampus (Q48397216) (← links)
- Postnatal conditioning for spreading cortical depression in the rat brain (Q48485313) (← links)
- Development of gap junctions in hippocampal astrocytes: evidence that whole cell electrophysiological phenotype is an intrinsic property of the individual cell (Q48496563) (← links)
- Gap junctions equalize intracellular Na+ concentration in astrocytes (Q48650070) (← links)
- Postnatal Development of Ionic Currents in Rat Hippocampal Astrocytes In Situ (Q48668370) (← links)
- Membrane capacitance of cortical neurons and glia during sleep oscillations and spike-wave seizures (Q48738866) (← links)
- Connexins and gap junctions of astrocytes and oligodendrocytes in the CNS (Q58493657) (← links)
- Anisotropic Panglial Coupling Reflects Tonotopic Organization in the Inferior Colliculus (Q59806798) (← links)
- Development of hemodynamic responses and functional connectivity in rat somatosensory cortex (Q59811666) (← links)
- Cortical type 2 astrocytes are not dye coupled nor do they express the major gap junction genes found in the central nervous system (Q72511729) (← links)
- Astrocytes exhibit regional specificity in gap-junction coupling (Q72803717) (← links)
- A Vector-Based Method to Analyze the Topography of Glial Networks (Q92661468) (← links)