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20182021
most citedMechanobiology of shear-induced platelet aggregation leading to occlusive arterial thrombosis: a multiscale in silico analysis

36 citations · 92 across the 3 of their papers we have counts for

collaborators

5 papers

physics.bio-ph202136 cited

Mechanobiology of shear-induced platelet aggregation leading to occlusive arterial thrombosis: a multiscale in silico analysis

Zixiang L Liu, David N Ku, Cyrus K Aidun

Occlusive thrombosis in arteries causes heart attacks and strokes. The rapid growth of thrombus at elevated shear rates (~10,000 1/s) relies on shear-induced platelet aggregation (…

physics.comp-ph202023 cited

Heterogeneous partition of cellular blood-borne nanoparticles through microvascular bifurcations

Zixiang L. Liu, Jonathan R. Clausen, Justin L. Wagner +5

Blood flowing through microvascular bifurcations has been an active research topic for many decades, while the partitioning pattern of nanoscale solutes in the blood remains relati…

cond-mat.soft2019

A unified analysis of nano-to-microscale particle dispersion in tubular blood flow

Zixiang Liu, Jonathan R. Clausen, Rekha R. Rao +1

Transport of solid particles in blood flow exhibits qualitative differences in the transport mechanism when the particle varies from nanoscale to microscale size comparable to the…

physics.bio-ph201933 cited

Nanoparticle diffusion in sheared cellular blood flow

Zixiang Liu, Jonathan R. Clausen, Rekha R. Rao +1

Using a multiscale blood flow solver, the complete diffusion tensor of nanoparticle (NP) in sheared cellular blood flow is calculated over a wide range of shear rate and haematocri…

physics.comp-ph2018

Conformational dynamics of charged polymers interacting with charged nanoparticles

Yuanzheng Zhu, Zixiang Liu, Michael T. Griffin +2

The transition from globular to elongated states of biopolymers in shear flow occurs at a distinct critical shear rate, . The magnitude of depends on the…