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The results demonstrate that the microstructural organization of nanofibers gradually changed from random to aligned patterns.
© 2014 Wiley Periodicals, Inc. Diffusion tensor magnetic resonance imaging (DT-MRI) is a technique used to quantify the microstructural organization of biological tissues.
In small intestinal submucosa scaffolds for functional tissue engineering, the impact of scaffold fabrication parameters on success rate may be related to the mechanotransductory properties of the final microstructural organization of collagen fibers.
MRI with diffusion tensor imaging (DTI) characterizes the diffusion of water molecules in tissue environments, which is influenced by the microstructural organization of tissues and their constituent cells, and can provide unique insights into pathophysiology, particularly in white matter.
These diffusion coefficients are suggested to reflect the microstructural organization of white matter.
An anisotropy map can thus be obtained, which provides information about the microstructural organization of the white matter.
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This kind of microstructural organization can be the result of structural memory coming from the solid structure of FAMEs molecules, where polar interactions exist between heads and van der Waals forces are between two adjacent backbones forming an interdigitated structure.
This kind of microstructural organization can be the result of structural memory coming from the solid structure, and can very well explain the two peaks.
First, the class of rich club connections showed a high level of microstructural organization as compared to the class of feeder and local connections, as reflected by significantly higher levels of FA and low levels of MD and TD.
The marked differences in mechanical responses exhibited by the anterior, mid, and posterior central cornea correlate with microstructural organization and responses of the collagen lamellae.
The structural integrity of the articulating surfaces within the knee joint depends on the microstructural organization and material properties of the cartilage and meniscus, the macroscopic structural morphology of the joint (e.g., articular surface shape, cartilage thickness, joint alignment, ligament morphology, meniscus size and shape), and the loads transmitted through the joint.
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