Exact(6)
Immobilization of VEGF on the scaffolds significantly enhanced the proliferation of human umbilical vein endothelial cells (HUVECs) through enhanced cells adhesion and improved cell-scaffold interactions.
This architecture includes enhanced cells intended for MVT model test patterns generation and analysis test responses.
In Section 4, we outline the proposed dynamic resource assignment for relay enhanced cells and illustrate its application to the test scenarios.
In the following we propose the following radio resource management techniques for relay enhanced cells: dynamic resource assignment, flow control for multihop connections and cooperative relaying as an add-on to single-path relaying.
In WINNER we propose a distributed scheduling, that is, the BS assigns resources to itself and the RSs in the relay enhanced cells but it does not centrally schedule the transmissions to the MSs.
Moreover, one important motivation to study the applicability of the existing FPC for the relay enhanced cells is the desired backward compatibility between LTE Release 8 and LTE-Advanced terminals.
Similar(54)
Patterned cell growth and enhanced cell differentiation were seen.
Notably, these cells exhibited enhanced cell proliferation, migration and invasion.
Also the avidin biotin binding system enhanced cell initial spreading.
However, lymphopenia may be due to enhanced cell death.
On the other hand, in NF1-null cells, LIMK2 is hyperphosphorylated by ROCK, leading to enhanced cell migration and invasion.
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