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Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the  Fetal Retina Developmental Dynamics - Li - 2023 - Advanced Science - Wiley  Online Library
Integrative Single‐Cell Transcriptomics and Epigenomics Mapping of the Fetal Retina Developmental Dynamics - Li - 2023 - Advanced Science - Wiley Online Library

Single-Cell RNA Sequencing and Assay for Transposase-Accessible Chromatin  Using Sequencing Reveals Cellular and Molecular Dynamics of Aortic Aging in  Mice | Arteriosclerosis, Thrombosis, and Vascular Biology
Single-Cell RNA Sequencing and Assay for Transposase-Accessible Chromatin Using Sequencing Reveals Cellular and Molecular Dynamics of Aortic Aging in Mice | Arteriosclerosis, Thrombosis, and Vascular Biology

SCENIC
SCENIC

Predicting gene regulatory networks from cell atlases | Life Science  Alliance
Predicting gene regulatory networks from cell atlases | Life Science Alliance

Single-Cell RNA-Seq Reveals Dynamic Early Embryonic-like Programs during  Chemical Reprogramming - ScienceDirect
Single-Cell RNA-Seq Reveals Dynamic Early Embryonic-like Programs during Chemical Reprogramming - ScienceDirect

The SCENIC workflow (a) In the first step, co-expression modules... |  Download Scientific Diagram
The SCENIC workflow (a) In the first step, co-expression modules... | Download Scientific Diagram

SCENIC: Single-cell regulatory network inference and clustering | Request  PDF
SCENIC: Single-cell regulatory network inference and clustering | Request PDF

SCENIC
SCENIC

SCENIC+: single-cell multiomic inference of enhancers and gene regulatory  networks | Nature Methods
SCENIC+: single-cell multiomic inference of enhancers and gene regulatory networks | Nature Methods

Cells | Free Full-Text | Single-Cell Transcriptomics Reveals Core  Regulatory Programs That Determine the Heterogeneity of Circulating and  Tissue-Resident Memory CD8+ T Cells
Cells | Free Full-Text | Single-Cell Transcriptomics Reveals Core Regulatory Programs That Determine the Heterogeneity of Circulating and Tissue-Resident Memory CD8+ T Cells

Integrated single-cell transcriptomic analyses reveal that GPNMB-high  macrophages promote PN-MES transition and impede T cell activation in GBM -  eBioMedicine
Integrated single-cell transcriptomic analyses reveal that GPNMB-high macrophages promote PN-MES transition and impede T cell activation in GBM - eBioMedicine

SCENIC: Single-cell regulatory network inference and clustering | bioRxiv
SCENIC: Single-cell regulatory network inference and clustering | bioRxiv

SCENIC: Single-cell regulatory network inference and clustering
SCENIC: Single-cell regulatory network inference and clustering

SCENIC: Single-cell regulatory network inference and clustering | bioRxiv
SCENIC: Single-cell regulatory network inference and clustering | bioRxiv

SCENIC: Single-cell regulatory network inference and clustering | bioRxiv
SCENIC: Single-cell regulatory network inference and clustering | bioRxiv

A scalable SCENIC workflow for single-cell gene regulatory network analysis  | Nature Protocols
A scalable SCENIC workflow for single-cell gene regulatory network analysis | Nature Protocols

Single-cell transcriptomics unveils gene regulatory network plasticity |  Genome Biology | Full Text
Single-cell transcriptomics unveils gene regulatory network plasticity | Genome Biology | Full Text

Frontiers | Single-cell sequencing of PBMC characterizes the altered  transcriptomic landscape of classical monocytes in BNT162b2-induced  myocarditis
Frontiers | Single-cell sequencing of PBMC characterizes the altered transcriptomic landscape of classical monocytes in BNT162b2-induced myocarditis

Gene regulatory network inference with SCENIC reveals cell... | Download  Scientific Diagram
Gene regulatory network inference with SCENIC reveals cell... | Download Scientific Diagram

Dynamic regulatory networks of T cell trajectory dissect transcriptional  control of T cell state transition: Molecular Therapy - Nucleic Acids
Dynamic regulatory networks of T cell trajectory dissect transcriptional control of T cell state transition: Molecular Therapy - Nucleic Acids

antisense. on X: "SCENIC+: single-cell multiomic inference of enhancers and  gene regulatory networks https://t.co/Cqrp6I1CMu https://t.co/DlSkc35JZX" /  X
antisense. on X: "SCENIC+: single-cell multiomic inference of enhancers and gene regulatory networks https://t.co/Cqrp6I1CMu https://t.co/DlSkc35JZX" / X

SCENIC
SCENIC

SCENIC+: single-cell multiomic inference of enhancers and gene regulatory  networks | Nature Methods
SCENIC+: single-cell multiomic inference of enhancers and gene regulatory networks | Nature Methods

SCENIC+: single-cell multiomic inference of enhancers and gene regulatory  networks | Nature Methods
SCENIC+: single-cell multiomic inference of enhancers and gene regulatory networks | Nature Methods

Frontiers | Single-Cell Regulatory Network Inference and Clustering  Identifies Cell-Type Specific Expression Pattern of Transcription Factors  in Mouse Sciatic Nerve
Frontiers | Single-Cell Regulatory Network Inference and Clustering Identifies Cell-Type Specific Expression Pattern of Transcription Factors in Mouse Sciatic Nerve

Chapter 17 SCENIC Differential Regulons | Single Cell Multi-Omics Data  Analysis
Chapter 17 SCENIC Differential Regulons | Single Cell Multi-Omics Data Analysis

Dissecting the transcriptome landscape of the human fetal neural retina and  retinal pigment epithelium by single-cell RNA-seq analysis | PLOS Biology
Dissecting the transcriptome landscape of the human fetal neural retina and retinal pigment epithelium by single-cell RNA-seq analysis | PLOS Biology