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Niklas Biere, Anja Doebbe, Daniel Jäger, Nils Rothe, Sebastian Goldenberg, Benjamin Friedrich, Christoph Brinkrolf, Benjamin Kormeier, Olaf Kruse, Björn Sommer (Bielefeld University/MPI for the Physics of Complex Systems, Dresden/Monash University, Melbourne)The structural representation of cells is a quite complex task because different microscopic, spectroscopic and other information resources have to be combined to achieve a three-dimensional representation with a high accuracy. In this work, a Chlamydomonas reinhardtii cell model is created by combining information from various light microscopic and electron microscopic images, as well as publication-related data. Each cell component is presented with special structural and visual properties. Based on the created model, an educative animation was created, showing different energy-producing pathways. This topic is especially relevant in the context of C. reinhardtii cells, because they are an important topic of current energy production research.