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Using transgenic mouse model systems, we demonstrated that CD8+ T cells primed with E2 particles were able to exert lytic activity and produce IFNγ.
By using various heterologous protein expression systems, we demonstrated that murine IL-31 was secreted as inter-molecularly disulfide-bonded covalent aggregates.
Upon reevaluating the hardness of Cu/Al, Cu/W and other bimetallic multilayer systems, we demonstrated that apart from IBs, GBs also contribute to the strengthening process of polycrystalline multilayers.
By analyzing location conditions of the identified land systems, we demonstrated the significance of both bio-physical (precipitation, soil) and socio-economic (population density, market influence) factors driving the occurrence of these systems.
In both systems we demonstrated functionally and morphologically that without cofilin-1 normal foot processes are not present.
Moreover, by using different cell systems, we demonstrated that the impaired integration of RA signal at a mutant RARα induces a repression wave that is propagated, in a domino fashion, from RARβ2 to targets downstream of RARβ2.
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In the test systems, we demonstrate an increase of the external quantum efficiency upon orientation.
For Pt monolayer systems, we demonstrate a relationship between the PtPt distance in the monolayer and the changes in the CO binding energy.
Using these other equiatomic model systems we demonstrate how systematic CALPHAD simulations can improve and accelerate the design of multicomponent alloy systems.
In this work, based on the thermodynamic modeling of two quinary alloy systems we demonstrate that the existence of large atomic size difference over broad compositional region is necessary condition for enhancing GFA in non-equiatomic HEBMGs.
By using the classical stability theorem of linear fractional order systems, we demonstrate convincingly the existence of fractional-order Lyapunov function and present a mathematical description of fractional-order Lyapunov stability theorem.
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CEO of Professional Science Editing for Scientists @ prosciediting.com