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20202026
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math.OC2025

Optimal dynamic thermal plant control: A study and benchmark

Thomas Grandits, Stefano Coss, Gundolf Haase

District heating networks play a vital role in thermal energy supply in many countries. Thus, it comes to no surprise that these has been a central role in improving energy efficie…

math.OC2024

Accurate and Efficient Cardiac Digital Twin from surface ECGs: Insights into Identifiability of Ventricular Conduction System

Thomas Grandits, Karli Gillette, Gernot Plank +1

Digital twins for cardiac electrophysiology are an enabling technology for precision cardiology. Current forward models are advanced enough to simulate the cardiac electric activit…

math.OC2023

Digital twinning of cardiac electrophysiology models from the surface ECG: a geodesic backpropagation approach

Thomas Grandits, Jan Verhülsdonk, Gundolf Haase +2

The eikonal equation has become an indispensable tool for modeling cardiac electrical activation accurately and efficiently. In principle, by matching clinically recorded and eikon…

math.OC2021

GEASI: Geodesic-based Earliest Activation Sites Identification in cardiac models

Thomas Grandits, Alexander Effland, Thomas Pock +3

The identification of the initial ventricular activation sequence is a critical step for the correct personalization of patient-specific cardiac models. In healthy conditions, the…

math.OC2020

PIEMAP: Personalized Inverse Eikonal Model from cardiac Electro-Anatomical Maps

Thomas Grandits, Simone Pezzuto, Jolijn M. Lubrecht +3

Electroanatomical mapping, a keystone diagnostic tool in cardiac electrophysiology studies, can provide high-density maps of the local electric properties of the tissue. It is ther…