Understanding the detailed morphological development of filamentous fungal pellet cultures is crucial for optimizing fungal bioprocesses. However, the interplay of the fungal growth processes was often not regarded. In addition, the internal structural evolution of pellets over the cultivation time remained largely unexplored. This thesis presents new methods based on 2D and 3D µ-computed tomographic imaging and image analysis that capture the temporal evolution of fungal pellet cultivations in a holistic and statistically representative manner.
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Understanding the detailed morphological development of filamentous fungal pellet cultures is crucial for optimizing fungal bioprocesses. However, the interplay of the fungal growth processes was often not regarded. In addition, the internal structural evolution of pellets over the cultivation time remained largely unexplored. This thesis presents new methods based on 2D and 3D µ-computed tomographic imaging and image analysis that capture the temporal evolution of fungal pellet cultivations in...
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