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Titlebook: Atomic Force Microscopy; Methods and Protocol Nuno C. Santos,Filomena A. Carvalho Book 2019 Springer Science+Business Media, LLC, part of S

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Studies in Fuzziness and Soft Computingbased single-molecule dynamic force spectroscopy represents one of the most powerful techniques available to directly investigate ligand-receptor recognition under physiological conditions without considerable disruption to cells. It provides important information for research on biological processe
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Real-Time Fuzzy Logic Controllers,. The quantification of mechanical resistance of cells and biomolecules using biophysical methods matured thanks to the development of nanotechnologies such as optical and magnetic tweezers, the biomembrane force probe, and atomic force microscopy (AFM). The quantitative nature of force spectroscopy
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https://doi.org/10.1007/978-3-319-26656-5e surface structure and in the force mode it can also be used to test the mechanical properties of the sample. AFM has been successfully applied to study the molecular mechanism of pore-forming proteins on model membranes. It gives information about both the structural reorganization of the membrane
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Jérôme Fortin,Adam Kasperski,Paweł Zielińskigen invasion and proliferation. Notwithstanding their protective role, NETs have also been linked to the development of a variety of disorders, including cardiovascular and autoimmune diseases. Since the first reports on NETs in 2004 it has been possible to image NETs by a variety of imaging techniq
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Francesca A. Lisi,Umberto Straccias for following bacterial attachment to glass surfaces and provide protocols for coupling bacterial cells to AFM tips. Using single microbial cell force spectroscopy in physiological environment, we show methods to probe mechanical parameters and the dissociation of curliated . cells from fibronecti
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