Search

Single-cell transcriptome analysis reveals three sequential phases

5 (296) · $ 20.99 · In stock

Single-cell transcriptome analysis reveals three sequential phases
Single-cell transcriptomic analysis of zebrafish cranial neural crest  reveals spatiotemporal regulation of lineage decisions during development -  ScienceDirect

Single-cell transcriptomic analysis of zebrafish cranial neural crest reveals spatiotemporal regulation of lineage decisions during development - ScienceDirect

A regulatory network of Sox and Six transcription factors initiate

A regulatory network of Sox and Six transcription factors initiate

Frontiers  Identification of multiple transcription factor genes

Frontiers Identification of multiple transcription factor genes

Single-cell transcriptome analysis reveals three sequential phases of gene  expression during zebrafish sensory hair cell regeneration - ScienceDirect

Single-cell transcriptome analysis reveals three sequential phases of gene expression during zebrafish sensory hair cell regeneration - ScienceDirect

Frontiers  Single-Cell RNA Sequencing of Peripheral Blood Reveals Immune  Cell Signatures in Alzheimer's Disease

Frontiers Single-Cell RNA Sequencing of Peripheral Blood Reveals Immune Cell Signatures in Alzheimer's Disease

Stepwise fate conversion of supporting cells to sensory hair cells

Stepwise fate conversion of supporting cells to sensory hair cells

Single-cell sequencing - Wikipedia

Single-cell sequencing - Wikipedia

Single-cell sequencing highlights heterogeneity and malignant progression  in actinic keratosis and cutaneous squamous cell carcinoma

Single-cell sequencing highlights heterogeneity and malignant progression in actinic keratosis and cutaneous squamous cell carcinoma

Integrated scRNAseq analyses of mouse cochlear supporting cells

Integrated scRNAseq analyses of mouse cochlear supporting cells

Single-cell RNA-seq transcriptome analysis of linear and circular RNAs

Single-cell RNA-seq transcriptome analysis of linear and circular RNAs

Single-cell transcriptomic profiling of the zebrafish inner ear reveals  molecularly distinct hair cell and supporting cell subtypes

Single-cell transcriptomic profiling of the zebrafish inner ear reveals molecularly distinct hair cell and supporting cell subtypes

Tatjana PIOTROWSKI, Principal Investigator, Ph.D

Tatjana PIOTROWSKI, Principal Investigator, Ph.D