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In other words, these changes can include switching between the regimes A and B, switching between the regimes B and C, and the changes in diffusion coefficients corresponding to the hindered motion and/or rotation of the molecule (regime B).
Restricted or hindered motion of water across axonal membranes as characterized with diffusion-weighted (DW) imaging may be a potential marker of axonal damage in white matter (WM) injury due to trauma, neurodegeneration, or other causes.
A dynamical behaviour of molecules encapsulated inside nanotubes can correspond to the following regimes: oscillations about a fixed position and/or a fixed orientation of the molecule (regime A), hindered motion along the nanotube axis and/or rotation of the molecule (regime B) and free motion and/or rotation of the molecule (regime C).
The considered changes are possible in the case where the regime B takes place for at least one phase of the nanotube, i.e. the temperature T P of the Peierls transition should correspond to the temperature range of the regime B (the hindered motion and/or rotation of the molecule).
Representative particle trajectories for both PEG-coated and COOH-coated particles at all sizes studied in brain tumor tissue are provided in Figure 1 B, where particles densely coated with PEG exhibited diffusive motion for 70 nm particles, but increasingly hindered motion for 100 and 240 nm particles.
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The desiccant exhibited a dielectric relaxation whose activation energy was lowered upon addition of water indicating either a less hindered rotational motion or crystal reorientation.
Finally, the self-diffusion coefficients, the hindered translational motions of the water molecules parallel and perpendicular to smooth and corrugated walls, and the librational motions are discussed, calculated from the simulations with the help of the corresponding velocity autocorrelation functions.
The spectral densities of the hindered translational motions of both ions parallel and perpendicular to the Pt(100) and the liquid mercury surface are presented.
Some springs between residues must have hindered such motions.
No shields- they hinder movement.
Nanoscale surface roughness of CNT-based substrates can deform cell membrane and hinder the motion of vesicles in cells.
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