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Defining genome architecture at base-pair resolution | Nature
Systematic evaluation of chromosome conformation capture assays | Nature Methods
Chromosome conformation capture - Wikipedia
Hi-C (genomic analysis technique) - Wikipedia
Guide to Hi-C & Related Methods
Nucleosome positions alone can be used to predict domains in yeast chromosomes | PNAS
A supervised learning framework for chromatin loop detection in genome-wide contact maps | Nature Communications
Micro-C XL: assaying chromosome conformation from the nucleosome to the entire genome | Nature Methods
Characterizing chromatin interactions of regulatory elements and nucleosome positions, using Hi-C, Micro-C, and promoter capture Micro-C | Epigenetics & Chromatin | Full Text
Hi-C analysis: from data generation to integration | SpringerLink
Dovetail® Micro-C Kit - Dovetail Genomics
Welcome to Micro-C documentation — Micro-C 0.1 documentation
Ultrastructural Details of Mammalian Chromosome Architecture - ScienceDirect
End-to-End Hi-C Service
Improving the Resolution of Hi-C Assays with Micro-C
Dovetail® Micro-C Kit - Dovetail Genomics
Overview of epigenome change in the human genome. a Human cells within... | Download Scientific Diagram
BL-Hi-C is an efficient and sensitive approach for capturing structural and regulatory chromatin interactions | Nature Communications
Hi-C (genomic analysis technique) - Wikipedia
Hi‐C 3.0: Improved Protocol for Genome‐Wide Chromosome Conformation Capture - Lafontaine - 2021 - Current Protocols - Wiley Online Library
Application of Hi-C and other omics data analysis in human cancer and cell differentiation research - ScienceDirect
Mapping Nucleosome Resolution Chromosome Folding in Yeast by Micro-C - ScienceDirect
Ultrastructural Details of Mammalian Chromosome Architecture
Region Capture Micro-C reveals coalescence of enhancers and promoters into nested microcompartments | bioRxiv
Dovetail® Micro-C Kit - Dovetail Genomics
Dovetail Blog - How to get the most out of your 3C assay sequence - Dovetail Genomics