In this thesis we developed processing pipelines that identify cells in brightfield or fluorescence channels of a time-lapse experiment and quantify their morphology. By linking these measurements with the temporal information of cell tracking approaches, we were able to describe the morphodynamics and motility of single cells but also whole genealogies. In particular we analyzed the migration behavior of T-lymphocytes under changing environmental influences and predicted the differentiation state of hematopoietic stem cells.
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In this thesis we developed processing pipelines that identify cells in brightfield or fluorescence channels of a time-lapse experiment and quantify their morphology. By linking these measurements with the temporal information of cell tracking approaches, we were able to describe the morphodynamics and motility of single cells but also whole genealogies. In particular we analyzed the migration behavior of T-lymphocytes under changing environmental influences and predicted the differentiation sta...
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