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The difference in the fiber periods of the two crystalline forms was attributed mainly to the conformational difference in the tetramethylene unit, i.e. TGTḠT of the α form and TTTTT of the β form.
No difference in the fiber staining was noted.
Thereafter, this percentage remains constant, and, for example, there is no significant difference in the fiber type distribution patterns between 6-year-old children and adults [ 249].
Actually, no difference in the fiber type composition of all six EOM among cat, rabbit, guinea pig and rat was found [ 2].
Hirata et al. [ 35] reported a gender difference in the fiber architecture of the endopelvic fascia (fascia pelvis parietalis; a fascia lining the superior or inner aspect of the LA): the male endopelvic fascia is multilayered and contains abundant smooth muscle fibers, whereas the female endopelvic fascia is solid, thick, and contains abundant elastic fibers rather than smooth muscle.
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Similarly, as already discussed above, stimulating at different angles would not make much difference if the fibers in the target area are oriented in all directions (anisotropic arrangement).
Differences in oxidation regimes and in thermal shock resistance were ascribed in large part to differences in the fiber architectures.
This discrepancy in the behavior can be traced back to differences in the fiber orientation distributions between specimens that were compacted by impact and kneading.
Ultrasonic measurements made on core and clad materials extracted from the preform confirm the observed elastic property differences in the fiber.
Although there were significant differences in the fiber lengths of the various fractions (Table 2), the average initial fiber width values were not substantially different, with the SPP samples having very similar (approximately 25 μm) widths (Table 2).
The novel application of double feature selection analysis led to the discovery of species- and stage-specific genetic expression patterns, which are biologically relevant to the genetic programs that underlie the differences in the fiber phenotypes in Pima and TM1.
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