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The novel aspect of this study was the application of a new experimental mechanics method, that is, digital volume correlation, which allowed mapping of strains in volumes of alveolar bone in contact with a loaded implant.
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(2) The mapping of strain using the Raman response of a strained high modulus carbon fiber and, simultaneously, from the surrounding polymer matrix using single-wall nanotubes dispersed in the polymer.
High density 3D mapping of strain and displacement has also been achieved, by tracing the physical displacement of the surface particles.
Mapping of strain fields using digital imaging correlation shows a gradual transition of deformation over the interface region and softening effects in the heat-affected zones of the FGM tracks.
The use of inbred mouse strains that are presumed to be genetically homogenous at all loci reduces variability during analysis of a defined genetic modification, increases experimental reproducibility between different laboratories, and facilitates genetic mapping of strain-specific effects.
Genome-wide mapping of strain differences in RMS cell proliferation using the AXB/BXA panel led to the identification of a significant quantitative trait locus (QTL) on distal chromosome (Chr) 11 that accounts for ~20% of the phenotypic differences observed among the strains [ 14].
At the beginning, at a set of discrete true strains the response maps of strain rate sensitivity exponent (m-value), power dissipation efficiency (η-value) and instability parameter (ξ-value) to temperatures and strain rates were developed respectively.
Together with a new global map of strain accumulation at plate boundaries, the data sets will form the core of an international public-private partnership intended to reshape the science of earthquake forecasting.
A chromosomal map of strain P12 was generated using CGView [ 42], and WebLogo [ 43] was used to display sequence alignments of ICE border regions.
Digital image correlation at submicron length scales enables mapping of transformation strains with high confidence.
However, due to the various limitations of these methods, the 2-D and 3-D mapping of internal strains within bulk cross-sections at a spatial resolution of 0.1 mm or better has long remained a challenge.
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