activity
20242026
collaborators

5 papers

cs.CC2026

Analog computation with transcriptional networks

David Doty, Mina Latifi, David Soloveichick

Transcriptional networks represent one of the most extensively studied types of systems in synthetic biology. Although the completeness of transcriptional networks for digital logi…

cs.DS2026

Exactly simulating stochastic chemical reaction networks in sub-constant time per reaction

Joshua Petrack, David Doty

The model of chemical reaction networks is among the oldest and most widely studied and used in natural science. The model describes reactions among abstract chemical species, for…

cs.CC2026

The computational power of discrete chemical reaction networks with bounded executions

David Doty, Ben Heckmann

Chemical reaction networks (CRNs) model systems where molecules interact according to a finite set of reactions such as , representing that if a molecule of and $B…

cs.CC2025

Robust predicate and function computation in continuous chemical reaction networks

Kim Calabrese, David Doty, Mina Latifi

We initiate the study of rate-constant-independent computation of Boolean predicates and numerical functions in the continuous model of chemical reaction networks (CRNs), which mod…

cs.ET2024

Rate-independent continuous inhibitory chemical reaction networks are Turing-universal

Kim Calabrese, David Doty

We study the model of continuous chemical reaction networks (CRNs), consisting of reactions such as that can transform some continuous, nonnegative real-valued quanti…