Sentence examples for engineering adhesion from inspiring English sources

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It is believed that plasma treatment will be a source of new information about PEEK surface mostly in the field of biomaterial engineering, adhesion of biomolecules as well as biocompatibility.

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The obtained results are particularly relevant in space engineering, since adhesion forces may affect the manipulation of objects, especially when they must be released into geodetic motion under controlled residual velocity conditions.

Hence, engineering the adhesion properties of these nonpathogenic E. coli strains may improve their colonization efficiency and specificity for target mucosal surfaces and tumors in vivo.

As depicted in Fig. 1A, biological processes on length scales ranging from nanometers to microns are important for understanding and engineering cell adhesion and downstream responses to ligand presentation.

Therefore, this review focuses on the engineering of the short adhesion molecules on the electrode surface for increasing cell adhesion without affecting electrode exchange phenomenon [10, 11, 44].

The objective of this study was to examine the hypothesis that PMEA is a biocompatible polymer for tissue engineering that can facilitate adhesion and proliferation of PDL cells with low platelet adhesion.

The combined effect of scaffold morphology and surface bioactivity is ideal for bone tissue engineering, supporting bone cells adhesion, proliferation and differentiation.

Recent advances in the experimental study of metallic adhesion between engineering metallic surfaces lead to a more detailed investigation, where two main improvements are sought.

The unique properties of GBNs, such as high elasticity, flexibility and adaptability to flat and irregular surfaces, make them suitable for the structural reinforcement of materials essential for tissue engineering which can improve adhesion, differentiation and cell function [24, 139, 140].

A computationally efficient engineering model to predict adhesion in rolling contact in the presence of water is presented which may be implemented in multibody dynamics software or in braking models to study train performance and braking strategies.

This chapter emphasizes that although there are several studies in the field of tissue engineering that focus on adhesion peptides, there is great potential to better leverage peptides as a translational approach in the field.

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