2010
DOI: 10.1002/ps.2068
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Efficacy of non‐toxic surfaces to reduce bioadhesion in terrestrial gastropods

Abstract: Preliminary data suggest surface roughness controlled aestivation behavior while elastic modulus (surface flexibility) controlled adhesion strength. In spite of greater adhesion to high-modulus materials, surface modulus was not a statistically significant controlling factor on gastropod aestivation preference. Understanding and exploiting the behavioral and mechanistic cues that organisms use while attaching to surfaces may lead to more environmentally benign control approaches.

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Cited by 5 publications
(1 citation statement)
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“…In such cases, the material's surface should not support bacterial growth since it might cause inflammation, rejection by the body, and eventually failure of the biomaterial application. To prevent that, we printed additional microstructures on the surface of the samples from the corresponding material (resin with or without AgNPs) as was suggested by Kennedy and Vasudevan [25,26] which is repeated on a large shape (23 × 23 × 21 µm 3 ) and a spacing of 5 µm.…”
Section: Materials Functionality and Its Antibacterial Propertiesmentioning
confidence: 99%
“…In such cases, the material's surface should not support bacterial growth since it might cause inflammation, rejection by the body, and eventually failure of the biomaterial application. To prevent that, we printed additional microstructures on the surface of the samples from the corresponding material (resin with or without AgNPs) as was suggested by Kennedy and Vasudevan [25,26] which is repeated on a large shape (23 × 23 × 21 µm 3 ) and a spacing of 5 µm.…”
Section: Materials Functionality and Its Antibacterial Propertiesmentioning
confidence: 99%