Astrocytes are the most abundant non-neuronal cells in vertebrate brains. Although Drosophila melanogaster has fewer astrocytic cells relative to neuronal and other glial cell populations, they, like vertebrate astrocytes, are located in synaptic regions, organized into exclusive, minimally-overlapping domains, and play developmental roles in synaptogenesis. But, do Drosophila astrocytes have parallel roles in the regulation of synaptic signaling? Preliminary electron microscopic (EM) data indicates that astrocytic processes are located at a greater distance, on average, from Drosophila synapses than they are from vertebrate synapses, thus raising questions about their capacity to alter synaptic signals. Do astrocytic cells and processes oc...
Poster exhibited at GPSC Student Showcase, February 24th, 2016, University of Arizona. Recipient of ...
The stereotyped synaptic connections that define neural circuit function are established during deve...
Our nervous system is made of billions of neurons that process sensory information and control behav...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Understanding the ongoing signaling between neurons and glial cells requires a detailed analysis of ...
Understanding neuronal function at the local and circuit level requires understanding astrocyte func...
Astrocytes densely infiltrate the brain and intimately associate with synaptic structures. In the pa...
Astrocytes are known to maintain a proper ionic balance in the central nervous system, take up neuro...
Molecular genetic approaches in small model organisms like Drosophila have helped to elucidate funda...
Astrocytes are crucial in the formation, fine-tuning, function and plasticity of neural circuits in ...
Developmental neural activity is a common feature of neural circuit assembly. Although glia have est...
SummaryAstrocytes are critically important for neuronal circuit assembly and function. Mammalian pro...
Single page poster.Synapses are chemical junctions between neurons that allow signals to be transmit...
Poster exhibited at GPSC Student Showcase, February 24th, 2016, University of Arizona. Recipient of ...
The stereotyped synaptic connections that define neural circuit function are established during deve...
Our nervous system is made of billions of neurons that process sensory information and control behav...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Anatomical, molecular, and physiological interactions between astrocytes and neuronal synapses regul...
Understanding the ongoing signaling between neurons and glial cells requires a detailed analysis of ...
Understanding neuronal function at the local and circuit level requires understanding astrocyte func...
Astrocytes densely infiltrate the brain and intimately associate with synaptic structures. In the pa...
Astrocytes are known to maintain a proper ionic balance in the central nervous system, take up neuro...
Molecular genetic approaches in small model organisms like Drosophila have helped to elucidate funda...
Astrocytes are crucial in the formation, fine-tuning, function and plasticity of neural circuits in ...
Developmental neural activity is a common feature of neural circuit assembly. Although glia have est...
SummaryAstrocytes are critically important for neuronal circuit assembly and function. Mammalian pro...
Single page poster.Synapses are chemical junctions between neurons that allow signals to be transmit...
Poster exhibited at GPSC Student Showcase, February 24th, 2016, University of Arizona. Recipient of ...
The stereotyped synaptic connections that define neural circuit function are established during deve...
Our nervous system is made of billions of neurons that process sensory information and control behav...