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Linear cell models can predict the resonant frequency (fR∼5MHz), but only a nonlinear analysis can reveal the amount of mechanical energy that couples into the cell and the bifurcation behavior of the cell when it is excited near resonance.
The linear cell density is 100 and 190 ppi along two orthogonal directions, and the major physical properties were examined according to these same directions: electrical and thermal conductivities, mechanical strength and elastic modulus, coefficient of thermal expansion, permeability and fire resistance.
We discuss prediction of 3-D simulations of a square cell SiC DMOSFET having interface traps, field dependent mobility and non-uniform doping, using either 2-D simulation of a linear cell device and "inaccurate" analytical models, or 2-D simulation using rotational symmetry.
In addition to their proliferative capacity, an essential property of bona fide stem cells is their self-renewal potential, which can be demonstrated in neural stem cell cultures by observing a linear cell growth kinetic under the appropriate neurosphere assay conditions and in long-term cultures [28].
Random linear cell motility was also assessed in cells carrying inhibition of FAK-signalling.
Images were taken of the intersections of the linear cell wound and each grid line.
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At −2 °C, a relatively large voltage increment accompanied the formation of linear cells in a relatively compact arrangement.
Synergism or antagonism was depicted by the linear cell-kill effects obtained by the toxic drug in a combination with the interacting drug in the different concentrations [ 24].
Conjugation of purified branched and linear peptides to PNA was carried out through disulfide bond by reaction of each C-terminal Cys-containing peptide with the N-terminal Cys NPys) PNA705 18-mer sequence as previously described for other linear cell-penetrating peptides (16, 18, 19, 27).
The stochastic approach allowed us to model non-linear cell dynamics and the complex relationship between cell-autonomous and non-cell-autonomous processes that control somatic evolution and fitness dynamics within the HSC pool.
The authors found that photoreceptor stimulation yielded a linear bipolar cell output, whereas the ganglion cells responded in a nonlinear manner [ 61– 61].
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