The formation and dissolution of blood clots is both a biochemical and a biomechanical process. While much of the chemistry has been worked out for both processes, the influence of biophysical properties is less well understood. This review considers the impact of several structural and mechanical parameters on lytic rates of fibrin fibers. The influences of fiber and network architecture, fiber strain, FXIIIa cross-linking, and particle transport phenomena will be assessed. The importance of the mechanical aspects of fibrinolysis is emphasized, and future research avenues are discussed.
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Abstract Amyloid beta peptide (Aβ), the main component of senile plaques of Alzheimer’s disease brains, is produced by sequential cleavage ...
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ACS Nano DOI: 10.1021/acsnano.7b02426 from #AlexandrosSfakianakis via Alexandros G.Sfakianakis on Inoreader http://ift.tt/2h1neaG via...
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Coexistence of t(5;17)/NPM1-RARA and t(9;22)/BCR-ABL1 in chronic myeloid leukemia at initial diagnosis Juvenile myelomonocytic leukemia: a s...
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We set out to estimate net survival trends for 10 common cancers in 279 cancer registry populations in 67 countries around the world, as par...
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Abstract The incidences of thyroid cancer keep rising worldwide over the past few decades. Although most thyroid cancers are indolent and ...
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Abstract Background Hyponatremia is associated with the increased risk of early and late mortality in patients with cardiac disease. Thi...
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JPM, Vol. 8, Pages 5: Acknowledgement to Reviewers of Journal of Personalized Medicine in 2017 Journal of Personalized Medicine doi: 10.339...
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Publication date: Available online 17 January 2018 Source: Journal of Infection and Chemotherapy Author(s): Nobuyasu Hirai, Kei Kasahara, ...
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