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Using an adoptive mixed transfer method, we show that MEKK3-deficient T cells are severely impaired in lymphopenia-induced cell proliferation and survival.
By using transfer method, we fabricated flexible and transparent capacitors with the structure of graphene-BMN-graphene.
Using a highly efficient viral HVJ (hemagglutinating virus of Japan) liposome-mediated transfer method, we examined the cellular fate of antisense oligodeoxyribonucleotides (oligos) in the vessel wall in vivo.
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Based on transduction efficiencies of GFP with various gene transfer methods, we have designed a T-cell stimulation scheme in which m-E7 transduced autologous dendritic cells (DCs) and LCLs are used as priming and restimulating APCs, respectively.
Using the transfer matrix method, we theoretically study the electron transport properties in a graphene-based magnetic nanostructure modulated by a Schottky metal (SM) stripe, which can be experimentally realized by depositing a ferromagnetic metal (FM) stripe and a SM stripe on the top and bottom of the monolayer graphene.
By means of the transfer matrix method, we investigate the effect of refractive indices and layer numbers on the optical response of the structure.
Using the 4×4 transfer matrix method, we study the optical properties of a designed structure composing one magnetic film sandwiched between two identical metal films.
By using transfer matrix method, we examined the transmittance spectra for the proposed terahertz wave filter has a 3 dB transmission loss bandwidth of 20 MHz ranging from 0.29998 THz to 0.30001 THz.
By using a 2-D finite difference time domain and transfer matrix method, we have theoretically and numerically analyzed the optical transmission characteristics of optical waveguide coupling to ring cavity array.
By using our developed analytic approach along with the numerical transfer matrix method, we present a procedure for the synthesis of an MPC to generate any desired transmittance and Faraday rotation in possible ranges.
Here, utilizing transfer matrix method, we take the Si/TiO2 heterojunction as a prototype to shed light on the rational design of the semiconductor heterojunction photocatalyst in terms of its intrinsic characteristics, such as TiO2 thickness and the dopant concentration.
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CEO of Professional Science Editing for Scientists @ prosciediting.com