Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regulate information processing in the brain. The fruit fly Drosophila melanogaster has become a valuable experimental system for genetic manipulation of the nervous system and has enormous potential for elucidating mechanisms that mediate neuron–glia interactions. Here, we show the first electrophysiological recordings from Drosophila astrocytes and characterize their spatial and physiological relationship with particular synapses. Astrocyte intrinsic properties were found to be strongly analogous to those of vertebrate astrocytes, including a passive current-voltage relationship, low membrane resistance, high capacitance, and dye-coupling to loc...
Genetic malleability and amenability to behavioral assays make Drosophila an attractive model for di...
Genetic malleability and amenability to behavioral assays make Drosophila an attractive model for di...
Single page poster.Synapses are chemical junctions between neurons that allow signals to be transmit...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Astrocytes are the most abundant non-neuronal cells in vertebrate brains. Although Drosophila melano...
Astrocytes are known to maintain a proper ionic balance in the central nervous system, take up neuro...
Astrocytes densely infiltrate the brain and intimately associate with synaptic structures. In the pa...
Molecular genetic approaches in small model organisms like Drosophila have helped to elucidate funda...
Astrocytic uptake of GABA through GABA transporters (GATs) is an important mechanism regulating exci...
Poster exhibited at GPSC Student Showcase, February 24th, 2016, University of Arizona. Recipient of ...
Developmental neural activity is a common feature of neural circuit assembly. Although glia have est...
Astrocytic uptake of GABA through GABA transporters (GATs) is an important mechanism regulating exci...
Understanding neuronal function at the local and circuit level requires understanding astrocyte func...
Understanding the ongoing signaling between neurons and glial cells requires a detailed analysis of ...
Genetic malleability and amenability to behavioral assays make Drosophila an attractive model for di...
Genetic malleability and amenability to behavioral assays make Drosophila an attractive model for di...
Single page poster.Synapses are chemical junctions between neurons that allow signals to be transmit...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Astrocytes are the most abundant non-neuronal cells in vertebrate brains. Although Drosophila melano...
Astrocytes are known to maintain a proper ionic balance in the central nervous system, take up neuro...
Astrocytes densely infiltrate the brain and intimately associate with synaptic structures. In the pa...
Molecular genetic approaches in small model organisms like Drosophila have helped to elucidate funda...
Astrocytic uptake of GABA through GABA transporters (GATs) is an important mechanism regulating exci...
Poster exhibited at GPSC Student Showcase, February 24th, 2016, University of Arizona. Recipient of ...
Developmental neural activity is a common feature of neural circuit assembly. Although glia have est...
Astrocytic uptake of GABA through GABA transporters (GATs) is an important mechanism regulating exci...
Understanding neuronal function at the local and circuit level requires understanding astrocyte func...
Understanding the ongoing signaling between neurons and glial cells requires a detailed analysis of ...
Genetic malleability and amenability to behavioral assays make Drosophila an attractive model for di...
Genetic malleability and amenability to behavioral assays make Drosophila an attractive model for di...
Single page poster.Synapses are chemical junctions between neurons that allow signals to be transmit...