IN-SILICO PREDICTION OF MECHANICAL BEHAVIOUR OF UNIFORM GYROID SCAFFOLDS AFFECTED BY ITS DESIGN PARAMETERS FOR BONE TISSUE ENGINEERING APPLICATIONS

In-Silico Prediction of Mechanical Behaviour of Uniform Gyroid Scaffolds Affected by Its Design Parameters for Bone Tissue Engineering Applications

Due to their excellent properties, triply periodic minimal surfaces (TPMS) have been applied to design scaffolds for bone tissue engineering applications.Predicting the mechanical response of bone scaffolds in different loading conditions is vital to designing scaffolds.The optimal mechanical properties can be achieved by tuning their geometrical p

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Testing the Hypothesis of Biofilm as a Source for Soft Tissue and Cell-Like Structures Preserved in Dinosaur Bone.

Recovery of still-soft tissue structures, including blood vessels and osteocytes, from dinosaur bone after demineralization was reported in 2005 and in subsequent publications.Despite multiple edgewater shoes lines of evidence supporting an endogenous source, it was proposed that these structures arose from contamination from biofilm-forming organi

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Low Carbon Economy Optimization of Integrated Energy System Considering Electric Vehicle Charging Mode and Multi-Energy Coupling

In order to enable a multi-energy coupling integrated energy system (IES) to meet the needs of load diversity in low-carbon economic operation, a bi-level optimal configuration method for low-carbon economic operation of multi-energy coupling IES in different charging modes of electric vehicles (EVs) is proposed.First, an IES including cold-thermal

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