GABAergic interneurons are key inhibitory regulators of cortical circuit function. Among the dozens of reported transcriptionally distinct types of cortical interneurons, neurogliaform cells (NGCs) are unique: they are the primary source of ‘slow’ cortical inhibition and are recruited by long-range excitatory inputs. Despite their functional importance, the developmental emergence and cellular diversity within this cell type remain unclear. Here, combining single- cell transcriptomics, genetic fate-mapping, electrophysiological characterization and morphological reconstruction, we show that discrete molecular subtypes of NGCs emerge from a common progenitor domain in the embryonic preoptic area (POA). Moreover, using in-utero electroporatio...
The mammalian neocortex is characterized by a variety of neuronal cell types and precise arrangement...
Neocortical function and malfunction depends critically on a spectrum of inhibitory interneurons. To...
GABAergic interneurons are crucial to controlling the excitability and responsiveness of cortical ci...
GABAergic interneurons are key inhibitory regulators of cortical circuit function. Among the dozens ...
Delineating the basic cellular components of cortical inhibitory circuits remains a fundamental issu...
GABA-containing (GABAergic) interneurons comprise a very heterogeneousgroupof cells that are crucial...
Diverse subsets of cortical interneurons have vital roles in higher-order brain functions. To invest...
Neurogliaform (RELN+) and bipolar (VIP+) GABAergic interneurons of the mammalian cerebral cortex pro...
The cerebral cortex is a cellularly complex structure comprising a rich diversity of neuronal and gl...
Neurogliaform (RELN+) and bipolar (VIP+) GABAergic interneurons of the mammalian cerebral cortex pro...
Inhibitory GABAergic interneurons of the mouse neocortex are a highly heterogeneous population of ne...
A fundamental question in developmental neuroscience is how hundreds of diverse cell types are gener...
Previous work has demonstrated that the character of mouse cortical interneuron subtypes can be dire...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
Cortical microcircuit function relies on the coordinated activity of a large diversity of interneuro...
The mammalian neocortex is characterized by a variety of neuronal cell types and precise arrangement...
Neocortical function and malfunction depends critically on a spectrum of inhibitory interneurons. To...
GABAergic interneurons are crucial to controlling the excitability and responsiveness of cortical ci...
GABAergic interneurons are key inhibitory regulators of cortical circuit function. Among the dozens ...
Delineating the basic cellular components of cortical inhibitory circuits remains a fundamental issu...
GABA-containing (GABAergic) interneurons comprise a very heterogeneousgroupof cells that are crucial...
Diverse subsets of cortical interneurons have vital roles in higher-order brain functions. To invest...
Neurogliaform (RELN+) and bipolar (VIP+) GABAergic interneurons of the mammalian cerebral cortex pro...
The cerebral cortex is a cellularly complex structure comprising a rich diversity of neuronal and gl...
Neurogliaform (RELN+) and bipolar (VIP+) GABAergic interneurons of the mammalian cerebral cortex pro...
Inhibitory GABAergic interneurons of the mouse neocortex are a highly heterogeneous population of ne...
A fundamental question in developmental neuroscience is how hundreds of diverse cell types are gener...
Previous work has demonstrated that the character of mouse cortical interneuron subtypes can be dire...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
Cortical microcircuit function relies on the coordinated activity of a large diversity of interneuro...
The mammalian neocortex is characterized by a variety of neuronal cell types and precise arrangement...
Neocortical function and malfunction depends critically on a spectrum of inhibitory interneurons. To...
GABAergic interneurons are crucial to controlling the excitability and responsiveness of cortical ci...