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Micro- and nano-scale elements are more prone to the effects of adhesion than are their macro-scale counterparts.
The model calculates shoe-floor coefficient of friction (COF) in boundary lubrication regime where effects of adhesion friction and hydrodynamic pressures are negligible.
Importantly, observed effects of growth factors were frequently altered depending on the type of co-immobilized matrices, suggesting synergic effects of adhesion and growth factor signals.
Almost every experimental study of SERS omitted the issues of the negative effects of adhesion layer [32 36], while we found that it had a dramatic influence of SERS enhancement.
We investigate the elastic response including the effects of adhesion, which, as the scale decreases to the nano level, become an important issue.
The goal of this study was to investigate the effects of adhesion to the arginine-glycine-aspartic acid (RGD) sequence on the chondrogenesis of bone marrow stromal cells (BMSCs).
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The biomechanical effects of adhesions in the suprapatellar pouch and anterior interval during simulated quadriceps muscle contraction from 0 to 90° of knee flexion were assessed.
The purpose of this study was to analyze the biomechanical effects of adhesions in the suprapatellar pouch and anterior interval and corresponding patellofemoral contact forces during simulated quadriceps muscle contraction from 0° to 90° of knee flexion.
Additionally, there is a paucity of published literature on the effects of adhesions in the suprapatellar pouch, which is a large, proximal continuation of the synovial membrane of the knee.
The effects of adhesions in the anterior interval, defined as the space between the infrapatellar fat pad and anterior border of the tibia (Dragoo et al. 2010), have been investigated (Ahmad et al. 1998) but not fully biomechanically characterized.
The first application of our model investigates this phenomenon by simulating a monolayer culture of cells and the exploring the effects of adhesions on tissue formation and morphology.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com