: Enhancing the performance and lifespan of micro-scale medical devices that interact with biological systems. Content of the Supporting Media
The file appears to be a supplementary video associated with a peer-reviewed scientific paper titled "Durable, Ultrathin, and Antifouling Polymer Brush Coating for Durable and High-Performance Bio-MEMS". Key Scientific Context
: Visualizing how biological cells or molecules react to treated vs. untreated surfaces.
: Developing ultrathin coatings designed to prevent biofouling , which is the accumulation of unwanted biological matter (like proteins or bacteria) on medical or technical surfaces.
For the most helpful use of this piece, it is best viewed alongside the full text of the article on PubMed Central , which provides the necessary experimental parameters and data interpretation for the video.
Supplementary Material * am3c17293_si_001.pdf (1.1MB, pdf) * am3c17293_si_002.avi (3.3MB, avi) * am3c17293_si_003.avi (4.2MB, avi) PubMed Central (PMC) (.gov)
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: Enhancing the performance and lifespan of micro-scale medical devices that interact with biological systems. Content of the Supporting Media
The file appears to be a supplementary video associated with a peer-reviewed scientific paper titled "Durable, Ultrathin, and Antifouling Polymer Brush Coating for Durable and High-Performance Bio-MEMS". Key Scientific Context
: Visualizing how biological cells or molecules react to treated vs. untreated surfaces.
: Developing ultrathin coatings designed to prevent biofouling , which is the accumulation of unwanted biological matter (like proteins or bacteria) on medical or technical surfaces.
For the most helpful use of this piece, it is best viewed alongside the full text of the article on PubMed Central , which provides the necessary experimental parameters and data interpretation for the video.
Supplementary Material * am3c17293_si_001.pdf (1.1MB, pdf) * am3c17293_si_002.avi (3.3MB, avi) * am3c17293_si_003.avi (4.2MB, avi) PubMed Central (PMC) (.gov)