activity
20242026
collaborators

13 papers

q-bio.MN2026

On the realizability of abstract reaction networks with real molecules and reactions

Tuyet-Minh Phan, Daniel Merkle, Tieu-Long Phan +2

Abstract reaction networks appear not only as models of chemical reactions but also as models of complex systems, with applications in areas such as ecology and epidemiology, and a…

cs.MS2026

CombOL: a Library for Practical Enumeration and Boltzmann Sampling of Combinatorial Classes

Casper Asbjørn Eriksen, Daniel Merkle

We present CombOL (Combinatorial Objects Library), an open-source library for the enumeration and Boltzmann sampling of combinatorial classes. Classes can be specified by a concise…

q-bio.MN2026

A Collision-based strategy for Network-free Exploration of Complex Molecular Networks

Adittya Pal, Rolf Fagerberg, Jakob Lykke Andersen +2

This work presents a stochastic exploration framework for large, implicitly defined chemical reaction spaces that are too large to be generated and stored as explicit molecular net…

cs.CE2026

Finding Pathways in Reaction Networks guided by Energy Barriers using Integer Linear Programming

Adittya Pal, Rolf Fagerberg, Jakob Lykke Andersen +2

Analyzing synthesis pathways for target molecules in a chemical reaction network annotated with information on the kinetics of individual reactions is an area of active study. This…

q-bio.QM2026

ChemRecon: a Consolidated Meta-Database Platform for Biochemical Data Integration

Casper Asbjørn Eriksen, Jakob Lykke Andersen, Rolf Fagerberg +1

In this paper, we present ChemRecon, a meta-database and Python interface for integrating and exploring biochemical data across multiple heterogeneous resources by consolidating co…

q-bio.QM2026

A Sensitivity Analysis Methodology for Rule-Based Stochastic Chemical Systems

Erika M. Herrera Machado, Jakob L. Andersen, Rolf Fagerberg +1

In this study, we introduce a sensitivity analysis methodology for stochastic systems in chemistry, where dynamics are often governed by random processes. Our approach is based on…