Motivation: Synaptic connections underlie learning and memory in the brain and are dynamically formed and eliminated during development and in response to stimuli. Quantifying changes in overall density and strength of synapses is an important pre-requisite for studying connectivity and plasticity in these cases or in diseased conditions. Unfortunately, most techniques to detect such changes are either low-throughput (e.g. electrophysiology), prone to error and difficult to automate (e.g. standard electron microscopy) or too coarse (e.g. magnetic resonance imaging) to provide accurate and large-scale measurements.Results: To facilitate high-throughput analyses, we used a 50-year-old experimental technique to selectively stain for synapses i...
Development of new imaging technologies in recent years has transformed neuroscience in profound way...
Synapses of the mammalian CNS are diverse in size, structure, molecular composition, and function. S...
Synapses of the mammalian CNS are diverse in size, structure, molecular composition, and function. S...
MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
<p>MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically fo...
Nerve tissue contains a high density of chemical synapses, about 1 per µm3 in the mammalian cerebral...
Nerve tissue contains a high density of chemical synapses, about 1 per μm3 in the mammalian cerebral...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
We describe a protocol for fully automated detection and segmentation of asymmetric, presumed excita...
Information transfer and integration in the brain occurs at chemical synapses and is mediated by the...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
Critical determinants of synaptic functions include subcellular locations, input sources, and specif...
Brain wiring diagrams showing every individual neuron and all the synaptic connections are becoming ...
Teravoxel volume electron microscopy data sets from neural tissue can now be acquired in weeks, but ...
Teravoxel volume electron microscopy data sets from neural tissue can now be acquired in weeks, but ...
Development of new imaging technologies in recent years has transformed neuroscience in profound way...
Synapses of the mammalian CNS are diverse in size, structure, molecular composition, and function. S...
Synapses of the mammalian CNS are diverse in size, structure, molecular composition, and function. S...
MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
<p>MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically fo...
Nerve tissue contains a high density of chemical synapses, about 1 per µm3 in the mammalian cerebral...
Nerve tissue contains a high density of chemical synapses, about 1 per μm3 in the mammalian cerebral...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
We describe a protocol for fully automated detection and segmentation of asymmetric, presumed excita...
Information transfer and integration in the brain occurs at chemical synapses and is mediated by the...
We describe a method for fully automated detection of chemical synapses in serial electron microscop...
Critical determinants of synaptic functions include subcellular locations, input sources, and specif...
Brain wiring diagrams showing every individual neuron and all the synaptic connections are becoming ...
Teravoxel volume electron microscopy data sets from neural tissue can now be acquired in weeks, but ...
Teravoxel volume electron microscopy data sets from neural tissue can now be acquired in weeks, but ...
Development of new imaging technologies in recent years has transformed neuroscience in profound way...
Synapses of the mammalian CNS are diverse in size, structure, molecular composition, and function. S...
Synapses of the mammalian CNS are diverse in size, structure, molecular composition, and function. S...