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Clear understanding how the integration of multiple inputs produces coherent behavior is one of the major challenges of cell biology.
The coherent behavior of the overall system is not established by a common transcriptional master regulator, but arises from the molecular interactions within the system itself [5].
The most successful approach to describe how coherent behavior emerges in these complex systems is given by the paradigmatic Kuramoto model.
Our framework may serve as a basis for coherent behavior studies of transitions that otherwise run the risk of being ad hoc.
By exploiting correlation properties and assembling groups of frequency bins characterized by coherent behavior, SUs can be efficiently assisted on discovering more and larger white spaces that are also characterized by potentially lower reconfiguration overhead.
By computing the correlation coefficient between any frequency bins pair of interest, a SU can next cluster sequential frequency bins together into discrete bands based on their correlation value and, thus, create groups of frequency bins that present coherent behavior.
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The profiles show coherent behaviors: when the illumination intensity increases, the current increases in the intrinsic epi-Si layer (Fig. 4b) and the surface potential decreases by a difference correlated to the measured V oc (Fig. 4a).
This is the property that is necessary for cells to make simple tissues such as epithelia, where sheets and ensembles of cells can get bigger and bigger and perform coherent behaviors.
Furthermore, the inherent difficulty of this problem when dealing with the original real-valued expression matrix and the great interest in finding coherent behaviors regardless of the exact numeric values in the matrix, has led many authors to a formulation based on a discretized version of the expression matrix [ 7- 9, 12- 23].
Systems may exhibit a non-coherent behavior and time becomes an important element of the analysis due to aging effects.
This deflection is significant, but stable coherent failure behavior between G1 and G2 was observed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com