Beyond Myocytes: Benchmarking Microstructural Heterogeneity in Cardiac Electrophysiology
- Forschungsthema/Bereich
- Computermodelle des Herzens
- Typ der Abschlussarbeit
- Bachelor / Master
- Startzeitpunkt
- -
- Bewerbungsschluss
- 30.09.2026
- Dauer der Arbeit
- -
Beschreibung
MotivationHeart muscle contraction is determined by excitation waves traveling through its tissue. While traditionally at- tributed solely to cardiomyocytes (CM), fibroblasts (FB) are increasingly recognised to electrically couple to CM and thus modulate excitation spread.Student Project
We employ the extracellular-membrane-intracellular (EMI) model [1], which explicitly resolves CM and their membranes within the computational mesh to capture the micro-structural behavior of excitation spread. The aim of this thesis is to extend EMI-based simulations, using the cardiac electrophysiology simulator open- CARP [3], to investigate CM-FB interactions in spatially extended tissue and thereby investigate how FB presence modulates excitation propagation in cardiac tissue. To this end, we will:
a) vary the CM/FB ratio (sweep over the number n of FB),
b) vary the spatial distribution of FB (sweep over where these n FB are placed),
c) vary the microstructural arrangement (CM-FB coupling types and FB distribution patterns)Your tasks will include:
• Literature research on the spatial organization of FB in cardiac tissue (e.g. using histological studies),
• Construct meshes accounting for this spatial organization starting from a given single-CM geometry,
• Assess under which conditions (variations in FB presence) excitation spread succeeds or fails[1] Tveito et al. Modeling Excitable Tissue: The EMI Framework. Simula Springer Briefs on Computing. Springer (2020)
[2] Giardini et al., Nat Cardiovasc Res (2025), doi: 10.1038/s44161-025-00728-9
[3] https://opencarp.org
Voraussetzung
- Voraussetzungen an Studierende
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- Programmier-Grundkenntnisse, Interessen an Medizintechnik
- Studiengangsbereiche
-
- Ingenieurwissenschaften
Elektrotechnik & Informationstechnik
Informatik
Biomedical Engineering
Electrical Engineering and Information Technology
- Ingenieurwissenschaften
Betreuung
- Titel, Vorname, Name
- M.Sc. Joshua Steyer, M.Sc. Jan-Erik Duhme
- Organisationseinheit
- Institut für Biomedizinische Technik
- E-Mail Adresse
- joshua.steyer@kit.edu
- Link zur eigenen Homepage/Personenseite
- Website
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Senden Sie die oben genannten Bewerbungsunterlagen bitte per Mail an joshua.steyer@kit.edu
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