Cortical inhibitory interneurons (INs) are subdivided into a variety of morphologically and functionally specialized cell types. How the respective specific properties translate into mechanisms that regulate sensory-evoked responses of pyramidal neurons (PNs) remains unknown. Here, we investigated how INs located in cortical layer 1 (L1) of rat barrel cortex affect whisker-evoked responses of L2 PNs. To do so we combined in vivo electrophysiology and morphological reconstructions with computational modeling. We show that whisker-evoked membrane depolarization in L2 PNs arises from highly specialized spatiotemporal synaptic input patterns. Temporally L1 INs and L2–5 PNs provide near synchronous synaptic input. Spatially synaptic contacts fro...
Stimulation of a principal whisker yields sparse action potential (AP) spiking in layer 2/3 (L2/3) p...
<div><p>Cortical computations are critically dependent on interactions between pyramidal neurons (PN...
Whisker deflection evokes sparse, low-probability spiking among L2/3 pyramidal cells in rodent somat...
Cortical inhibitory interneurons (INs) are subdivided into a variety of morphologically and function...
Cortical inhibitory interneurons (INs) are subdivided into a variety of morphologically and function...
Cortical inhibitory interneurons (INs) are subdivided into a variety of morphologically and function...
This computational study integrates anatomical and physiological data to assess the functional role ...
This computational study integrates anatomical and physiological data to assess the functional role ...
This computational study integrates anatomical and physiological data to assess the functional role ...
A fundamental challenge in neuroscience is to understand the cellular and circuit mechanisms underly...
Inhibitory interneurons target specific subcellular compartments of cortical pyramidal neurons, wher...
A fundamental challenge in neuroscience is to understand the cellular and circuit mechanisms underly...
UnrestrictedTo understand how information is processed in neocortical circuits, it is crucial to map...
Cortical computations are critically dependent on interactions between pyramidal neurons (PNs) and a...
Summary: Excitatory synaptic input reaches the soma of a cortical excitatory pyramidal neuron via an...
Stimulation of a principal whisker yields sparse action potential (AP) spiking in layer 2/3 (L2/3) p...
<div><p>Cortical computations are critically dependent on interactions between pyramidal neurons (PN...
Whisker deflection evokes sparse, low-probability spiking among L2/3 pyramidal cells in rodent somat...
Cortical inhibitory interneurons (INs) are subdivided into a variety of morphologically and function...
Cortical inhibitory interneurons (INs) are subdivided into a variety of morphologically and function...
Cortical inhibitory interneurons (INs) are subdivided into a variety of morphologically and function...
This computational study integrates anatomical and physiological data to assess the functional role ...
This computational study integrates anatomical and physiological data to assess the functional role ...
This computational study integrates anatomical and physiological data to assess the functional role ...
A fundamental challenge in neuroscience is to understand the cellular and circuit mechanisms underly...
Inhibitory interneurons target specific subcellular compartments of cortical pyramidal neurons, wher...
A fundamental challenge in neuroscience is to understand the cellular and circuit mechanisms underly...
UnrestrictedTo understand how information is processed in neocortical circuits, it is crucial to map...
Cortical computations are critically dependent on interactions between pyramidal neurons (PNs) and a...
Summary: Excitatory synaptic input reaches the soma of a cortical excitatory pyramidal neuron via an...
Stimulation of a principal whisker yields sparse action potential (AP) spiking in layer 2/3 (L2/3) p...
<div><p>Cortical computations are critically dependent on interactions between pyramidal neurons (PN...
Whisker deflection evokes sparse, low-probability spiking among L2/3 pyramidal cells in rodent somat...