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Title:

Biofilm Adhesion to Surfaces is Modulated by Biofilm Wettability and Stiffness

Document type:
Zeitschriftenaufsatz
Author(s):
Kretschmer, Martin; Schüßler, Carina Anke; Lieleg, Oliver
Abstract:
Although many surfaces in industry and medicine are colonized by bacterial biofilms, little is known about the physical principles that govern the adhesion properties of such bacterial communities. In part, this is due to the technical challenge associated with the characterization of a biofilm directly on the substrate it is grown on. Moreover, distinguishing between the cohesive and adhesive properties of a (bio)material requires information on the amount of material transferred between the in...     »
Dewey Decimal Classification:
500 Naturwissenschaften
Journal title:
Advanced Materials Interfaces
Year:
2021
Journal volume:
8
Journal issue:
5
Pages contribution:
2001658
Covered by:
Scopus
Reviewed:
ja
Language:
en
Fulltext / DOI:
doi:10.1002/admi.202001658
WWW:
https://onlinelibrary.wiley.com/doi/full/10.1002/admi.202001658
Publisher:
Wiley
E-ISSN:
2196-73502196-7350
Date of publication:
15.01.2021
TUM Institution:
Professur für Biomechanik
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