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Rupture of blood clots: Mechanics and pathophysiology) of physiologically relevant fibrin gels was determined to be 7.6 ± 0.45 J/m2. Finite element (FE) simulations using

Shape changes of erythrocytes during blood clot contraction and the structure of polyhedrocytes

Circulating Microparticles Alter Formation, Structure, and Properties of Fibrin Clots

Impaired contraction of blood clots precedes and predicts postoperative venous thromboembolism

Mechanistic Basis for the Binding of RGD- and AGDV-Peptides to the Platelet Integrin αIIbβ3

Circulating Microparticles Alter Formation, Structure, and Properties of Fibrin Clots

Quantitative structural mechanobiology of platelet-driven blood clot contraction

Conformational Flexibility and Self-Association of Fibrinogen in Concentrated Solutions for fibrinogen diffusion E d = 21.3 kJ/mol at 1.4 mg/mL and 28.4 kJ/mol at 38 mg/mL. We found a dramatic slowdown

Regulatory element in fibrin triggers tension-activated transition from catch to slip bonds

Atomic Structural Models of Fibrin Oligomers

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