Areejit Samal

Orcid: 0000-0002-6796-9604

According to our database1, Areejit Samal authored at least 19 papers between 2006 and 2024.

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Bibliography

2024
Bakry-Émery-Ricci curvature: an alternative network geometry measure in the expanding toolbox of graph Ricci curvatures.
J. Complex Networks, 2024

Biologically meaningful regulatory logic enhances the convergence rate in Boolean networks and bushiness of their state transition graph.
Briefings Bioinform., 2024

2023
EPEK: Creation and analysis of an Ectopic Pregnancy Expression Knowledgebase.
Comput. Biol. Chem., June, 2023

Leveraging developmental landscapes for model selection in Boolean gene regulatory networks.
Briefings Bioinform., May, 2023

2022
A Poset-Based Approach to Curvature of Hypergraphs.
Symmetry, 2022

2021
A simple differential geometry for complex networks.
Netw. Sci., October, 2021

2020
Edge-based analysis of networks: curvatures of graphs and hypergraphs.
Theory Biosci., 2020

Degree difference: A simple measure to characterize structural heterogeneity in complex networks.
CoRR, 2020

2019
Forman-Ricci curvature and Persistent homology of unweighted complex networks.
CoRR, 2019

Persistent homology of unweighted complex networks via discrete Morse theory.
CoRR, 2019

A Simple Differential Geometry for Networks and Its Generalizations.
Proceedings of the Complex Networks and Their Applications VIII, 2019

2017
Comparative analysis of two discretizations of Ricci curvature for complex networks.
CoRR, 2017

2016
Relative stability of network states in Boolean network models of gene regulation in development.
Biosyst., 2016

Advances in the integration of transcriptional regulatory information into genome-scale metabolic models.
Biosyst., 2016

2011
Environmental versatility promotes modularity in genome-scale metabolic networks.
BMC Syst. Biol., 2011

2010
Genotype networks in metabolic reaction spaces.
BMC Syst. Biol., 2010

Challenges in experimental data integration within genome-scale metabolic models.
Algorithms Mol. Biol., 2010

2008
The regulatory network of E. coli metabolism as a Boolean dynamical system exhibits both homeostasis and flexibility of response.
BMC Syst. Biol., 2008

2006
Low degree metabolites explain essential reactions and enhance modularity in biological networks.
BMC Bioinform., 2006


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