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Moreover, it is unclear whether there are between-sex differences in the contribution of stretch tolerance and passive stiffness to total hamstring extensibility.
Non-linearity in response to different stretch velocities may further mean that the contribution of stretch reflexes at the velocities achieved while walking (∼140°/s) was underestimated.
However, this study highlights the need to determine muscle strength objectively, to assess the contribution of stretch reflexes to limb stiffness in both the resting and active participant and to differentiate between limb stiffness caused passive stiffness and spasticity; this will have a direct impact on potential therapeutic approaches.
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The model and cadaveric vertebral arteries demonstrated localized compression or kinking of the vessel wall with atlanto-axial rotation contralaterally but revealed no evidence of major contribution of stretching to stenosis.
Thus, the contribution of stretching mechanisms to the SV at mid-depth is more significant than expected based on the relative strength of the poloidal flow at the top of the shell.
We focus on the contribution of stretching as well as other mechanisms to the SV of the radial component of the field for comparison with the radial field on the outer boundary, which is the component accessible from observations.
Our main focus was to examine the contribution of stretching due to thermal convection, thermophoresis, electrophoresis, or a combination thereof in order to gain further insights into the flow behavior of the DNA stretching mechanism and the physical/mechanical properties of single DNA molecules, as well as related phenomena.
The contribution of radial stretching is significant for total stretching SV dominance at depth.
Lignin and cellulose display prominent bands and thus can be easily detected in the regions of 1,575 1,620 cm−1, assigned to contribution of symmetric stretching of the aromatic ring, and 2,789 2,932 cm−1, known for the C H and C H2 stretching modes, respectively [ 46, 47].
The phenomenological effects of blending are tentatively interpreted in view of the contribution of chain stretching.
The significant contribution of radial stretching in the mid-shell roots indicates a possible underlying deep dynamo mechanism that sustains intense magnetic flux patches at the outer boundary.
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