Skip navigation

Emrah Haspolat

Postgraduate Research

Emrah -haspolatQuantitative mathematical models have an essential place in GRNs to obtain the functions for the complex network systems. Dynamics of GRNs can be quantitatively modelled by differential equations to capture the behaviour of gene expression.

Flowering time regulation that has been widely examined in the plant model species – Arabidopsis thaliana, has a large complex network system. A quantitative approach provides to understand the numerical amount of genes impact strength in each other. Therefore, a quantitative and dynamic modelling of this network based on a system of differential equations is required.

Research interest;

Dynamic modelling of the Arabidopsis thaliana flowering time gene regulation.

An efficient set of parameters for the dynamics of Arabidopsis thaliana flowering time GRN by using an ODE identification (ODEion) method with (no-delay and delay), and compared with the polynomial fitting experimental expression time-course data.

Stability analysis of simplified model.

Analytical and numerical solutions of the dynamic model.

Supervisors

  • Prof. Maia Angelova
  • Dr. Benoit Huard

 


Latest News and Features

four women standing with a building behind them
Nigel Coates founded the University’s Business Clinic in 2013, developing it from initial concept into one of the most recognised real-world experiential learning initiatives in UK higher education.
Michael Stockdale Northern Law Awards
Professor Steve Cummings (Teesside), Professor Chris Day (Newcastle), North East Mayor Kim McGuinness, Professor Karen O'Brien (Durham), Professor Andy Long (Northumbria) and Sir David Bell (Sunderland)
a wooden model of a miner and houses
Northumbria University.
More news
More events

Upcoming events

Supporting Survivors of Sexual Violence and Abuse Conference 2026
REVEAL Architecture
-
REVEAL 3D Design: Furniture and Product
-
REVEAL Design for Industry
-
Back to top