Rodent studies have demonstrated that synaptic dynamics from excitatory to inhibitory neuron types are often dependent on the target cell type. However, these target cell-specific properties have not been well investigated in human cortex, where there are major technical challenges in reliably obtaining healthy tissue, conducting multiple patch-clamp recordings on inhibitory cell types, and identifying those cell types. Here, we take advantage of newly developed methods for human neurosurgical tissue analysis with multiple patch-clamp recordings, post-hoc fluorescent in situ hybridization (FISH), machine learning-based cell type classification, and prospective GABAergic AAV-based labeling to investigate synaptic properties between pyramidal...
The central goal of this study was to generate synapse-resolution maps of local and long-range inner...
Uncovering structural regularities and architectural topologies of cortical circuitry is vital for u...
The cerebral cortex contains numerous neuronal cell types, distinguished by their molecular identity...
Rodent studies have demonstrated that synaptic dynamics from excitatory to inhibitory neuron types a...
Rodent studies have demonstrated that synaptic dynamics from excitatory to inhibitory neuron types a...
We present a unique, extensive, and open synaptic physiology analysis platform and dataset. Through ...
We describe convergent evidence from transcriptomics, morphology, and physiology for a specialized G...
SummaryIntracellular recordings of membrane potential in vitro have defined fundamental properties o...
Neocortical microcircuits are thought to contribute importantly to the sophisticated processing abil...
The human cerebral cortex houses 1000 times more neurons than that of the cerebral cortex of a mouse...
Intracellular recordings of membrane potential in vitro have defined fundamental properties of synap...
How neuronal connections are established and organized into functional networks determines brain fun...
Circuits in the cerebral cortex consist of thousands of neurons connected by millions of synapses. A...
Elucidating the cellular architecture of the human cerebral cortex is central to understanding our c...
GABAergic interneurons are notorious for their heterogeneity, despite constituting a small fraction ...
The central goal of this study was to generate synapse-resolution maps of local and long-range inner...
Uncovering structural regularities and architectural topologies of cortical circuitry is vital for u...
The cerebral cortex contains numerous neuronal cell types, distinguished by their molecular identity...
Rodent studies have demonstrated that synaptic dynamics from excitatory to inhibitory neuron types a...
Rodent studies have demonstrated that synaptic dynamics from excitatory to inhibitory neuron types a...
We present a unique, extensive, and open synaptic physiology analysis platform and dataset. Through ...
We describe convergent evidence from transcriptomics, morphology, and physiology for a specialized G...
SummaryIntracellular recordings of membrane potential in vitro have defined fundamental properties o...
Neocortical microcircuits are thought to contribute importantly to the sophisticated processing abil...
The human cerebral cortex houses 1000 times more neurons than that of the cerebral cortex of a mouse...
Intracellular recordings of membrane potential in vitro have defined fundamental properties of synap...
How neuronal connections are established and organized into functional networks determines brain fun...
Circuits in the cerebral cortex consist of thousands of neurons connected by millions of synapses. A...
Elucidating the cellular architecture of the human cerebral cortex is central to understanding our c...
GABAergic interneurons are notorious for their heterogeneity, despite constituting a small fraction ...
The central goal of this study was to generate synapse-resolution maps of local and long-range inner...
Uncovering structural regularities and architectural topologies of cortical circuitry is vital for u...
The cerebral cortex contains numerous neuronal cell types, distinguished by their molecular identity...