<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structural composition affects synaptic transmission and plasticity and whether they support functional diversity remains rather unclear. Here, synaptic boutons on layer 5B (L5B) pyramidal neurons in the adult rat barrel cortex were investigated. Simultaneous patch-clamp recordings from synaptically connected L5B pyramidal neurons revealed great heterogeneity in amplitudes, coefficients of variation (CVs), and failures (F%) of EPSPs. Quantal analysis indicated multivesicular release as a likely source of this variability. Trains of EPSPs decayed with fast and slow time constants, presumably representing release from small readily releasable (RRP; 5....
Precise processing of sensory signals is decisive for an adequate reaction to inputs from the enviro...
The short-term plasticity of synaptic transmission between excitatory neurons within a barrel of lay...
Synapses are the key elements for signal transduction and plasticity in the brain, thus controlling ...
<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structu...
<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structu...
<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structu...
Cortical computations rely on functionally diverse and highly dynamic synapses. How their structural...
<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structu...
The probability of synaptic transmitter release determines the spread of excitation and the possible...
There are two types of excitatory neurons within layer IV of rat somatosensory cortex: star pyramida...
The morphology of neocortical pyramidal neurons is not only highly characteristic but also displays ...
Layer 5 (L5) of somatosensory cortex is a major gateway for projections to intra− and subcortical br...
The number of vesicles released at excitatory synapses and the number of release sites per synaptic ...
Short-Term Dynamics of Synaptic Transmission Within the Excitatory Neuronal Network of Rat Layer 4 B...
Layer 5 (L5) of somatosensory cortex is a major gateway for projections to intra- and subcortical br...
Precise processing of sensory signals is decisive for an adequate reaction to inputs from the enviro...
The short-term plasticity of synaptic transmission between excitatory neurons within a barrel of lay...
Synapses are the key elements for signal transduction and plasticity in the brain, thus controlling ...
<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structu...
<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structu...
<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structu...
Cortical computations rely on functionally diverse and highly dynamic synapses. How their structural...
<p>Cortical computations rely on functionally diverse and highly dynamic synapses. How their structu...
The probability of synaptic transmitter release determines the spread of excitation and the possible...
There are two types of excitatory neurons within layer IV of rat somatosensory cortex: star pyramida...
The morphology of neocortical pyramidal neurons is not only highly characteristic but also displays ...
Layer 5 (L5) of somatosensory cortex is a major gateway for projections to intra− and subcortical br...
The number of vesicles released at excitatory synapses and the number of release sites per synaptic ...
Short-Term Dynamics of Synaptic Transmission Within the Excitatory Neuronal Network of Rat Layer 4 B...
Layer 5 (L5) of somatosensory cortex is a major gateway for projections to intra- and subcortical br...
Precise processing of sensory signals is decisive for an adequate reaction to inputs from the enviro...
The short-term plasticity of synaptic transmission between excitatory neurons within a barrel of lay...
Synapses are the key elements for signal transduction and plasticity in the brain, thus controlling ...