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In this study, a numerical model for simulation of molten glass flow through an isopipe during the overflow fusion process was carried out.
A single main energy barrier governing the fusion process was identified in the absence and presence of SNAREs in the bilayers.
This fusion process was specific to melanoma cells and did not occur in co-cultures of GFP labeled fibroblasts with myogenic C2C12 cells (Figure 2B).
One of the major morphological changes during the fusion process was ossification of the arch centra.
The fusion process was stopped when the maximal modularity was reached.
The targeting of the sphingopeptide to the viral entry site during the fusion process was assessed using infectious virions and confocal microscopy.
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In order to minimize processing time as well as storage requirement, the fusion process is designed to retain the size of a single protected template.
A multi-resolution fusion process is proposed to further refine the statistically corrected results.
In this article, by applying image fusion quality metrics (IFQMs) to image objects, an object-level strategy for quality assessment of the image fusion process is proposed.
The state-of-the-art finite element models in the simulation of powder bed fusion process are reviewed.
Powders used in the Particle Bed Fusion process are spread onto compact layers and are then fused to generate a layer of the final part.
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