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List of works by Mathias Foo

A Framework for Engineering Stress Resilient Plants Using Genetic Feedback Control and Regulatory Network Rewiring

article

A simplified modelling framework facilitates more complex representations of plant circadian clocks

scientific article published on 16 March 2020

Biologically inspired design of feedback control systems implemented using DNA strand displacement reactions.

scientific article published in August 2016

Computationally Efficient Modelling of Stochastic Spatio-Temporal Dynamics in Biomolecular Networks

scientific article published on 22 February 2018

Data-driven dynamical modelling of a pathogen-infected plant gene regulatory network: A comparative analysis

scientific article published in 2022

Design of an embedded inverse-feedforward biomolecular tracking controller for enzymatic reaction processes

scientific article published on April 2017

Exploiting the dynamic properties of covalent modification cycle for the design of synthetic analog biomolecular circuitry

scientific article (publication date: 2016)

Kernel Architecture of the Genetic Circuitry of the Arabidopsis Circadian System

scientific article published in February 2016

Modelling and Control of Gene Regulatory Networks for Perturbation Mitigation

article

Nanomechanical Contribution of Collagen and von Willebrand Factor A in Marine Underwater Adhesion and Its Implication for Collagen Manipulation.

scientific article published on 19 February 2016

Proportional–Integral Degradation Control Allows Accurate Tracking of Biomolecular Concentrations With Fewer Chemical Reactions

Recombinant mussel proximal thread matrix protein promotes osteoblast cell adhesion and proliferation

scientific article published on 16 February 2016

Sugary interfaces mitigate contact damage where stiff meets soft

scientific article published on 16 June 2016

System identification of gene regulatory networks for perturbation mitigation via feedback control

article

Uncovering the nutritional landscape of food.

scientific article

Waveforms of molecular oscillations reveal circadian timekeeping mechanisms