Fr. 69.00

How Do Spores Select Where to Settle? - A Holographic Motility Analysis of Ulva Zoospores on Different Surfaces

English · Hardback

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Description

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In this thesis, Matthias Heydt applies digital in-line holography to achieve for the first time a complete three dimensional and real time motion analysis of Ulva zoospores, both in solution and in the vicinity of different surfaces. These results provide previously unknown information about the behavior and mechanism spores use to select a suitable site for settlement. This work gives deeper insight into biofouling algae and stimulates new design strategies for antifouling coatings. Furthermore, the tracking system developed during this research could be used as a new system for assessing the antifouling performance on different surfaces at very early points in time, allowing disentanglement of surface conditioning and interaction of spores with pristine chemistries.

List of contents

Introduction.- Theory of Holography.- State of the Art.- Experimental details.- Results: Motility and exploration behavior of Ulva zoospores.- Discussion of the motility of Ulva zoospores in vicinity to surfaces.- Conclusion and Outlook.- Acknowledgement.- Appendix.

Summary

In this thesis, Matthias Heydt applies digital in-line holography to achieve for the first time a complete three dimensional and real time motion analysis of Ulva zoospores, both in solution and in the vicinity of different surfaces. These results provide previously unknown information about the behavior and mechanism spores use to select a suitable site for settlement. This work gives deeper insight into biofouling algae and stimulates new design strategies for antifouling coatings. Furthermore, the tracking system developed during this research could be used as a new system for assessing the antifouling performance on different surfaces at very early points in time, allowing disentanglement of surface conditioning and interaction of spores with pristine chemistries.

Product details

Authors Matthias Heydt
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 10.03.2011
 
EAN 9783642172168
ISBN 978-3-642-17216-8
No. of pages 178
Weight 451 g
Illustrations XVIII, 178 p.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Chemistry > Physical chemistry

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