The human brain is composed of a complex assembly of about 171 billion heterogeneous cellular units (86 billion neurons and 85 billion non-neuronal glia cells). A comprehensive description of brain cells is necessary to understand the nervous system in health and disease. Recently, advances in genomics have permitted the accurate analysis of the full transcriptome of single cells (scRNA-seq). We have built upon such technical progress to combine scRNA-seq with patch-clamping electrophysiological recording and morphological analysis of single human neurons in vitro. This new powerful method, referred to as Patch-seq, enables a thorough, multimodal profiling of neurons and permits us to expose the links between functional properties, morpholo...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
AbstractMolecular genetic studies are typically performed on homogenized biological samples, resulti...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
This is an open-access article distributed under the terms of the Creative Commons Attribution Lice...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Despite the importance of the mammalian neocortex for complex cognitive processes, we still lack a c...
Neurons exhibit a rich diversity of morphological phenotypes, electrophysiological properties, and g...
Despite the importance of the mammalian neocortex for complex cognitive processes, we still lack a c...
Individual neurons vary widely in terms of their gene expression, morphology, and electrophysiologic...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Abstract Individual neurons vary widely in terms of their gene expression, morphology, and electroph...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Individual neurons vary widely in terms of their gene expression, morphology, and electrophysiologic...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
AbstractMolecular genetic studies are typically performed on homogenized biological samples, resulti...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...
This is an open-access article distributed under the terms of the Creative Commons Attribution Lice...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Despite the importance of the mammalian neocortex for complex cognitive processes, we still lack a c...
Neurons exhibit a rich diversity of morphological phenotypes, electrophysiological properties, and g...
Despite the importance of the mammalian neocortex for complex cognitive processes, we still lack a c...
Individual neurons vary widely in terms of their gene expression, morphology, and electrophysiologic...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Abstract Individual neurons vary widely in terms of their gene expression, morphology, and electroph...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Individual neurons vary widely in terms of their gene expression, morphology, and electrophysiologic...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
Patch-seq, combining patch-clamp electrophysiology with single-cell RNA-sequencing (scRNAseq), enabl...
AbstractMolecular genetic studies are typically performed on homogenized biological samples, resulti...
Cellular reprogramming is driven by a defined set of transcription factors; however, the regulatory ...