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BMSCs differentiation into tenocytes was studied via gene expression.
The performance of the proposed method was studied via simulations and the results show good performance.
The crystallographic composition of the synthesized samples was studied via X-ray diffraction (XRD).
The reducibility of nickel species was studied via temperature-programmed reduction.
The conductivity of the samples was studied via the two-probe method.
The injectivity of the gel system was studied via viscosity measurements.
The cause of this damage was studied via finite element analysis.
Finally, the interaction mechanism was studied via 1D and 2D NMR.
The mechanism of inhibition was studied via enzyme kinetics with recombinant NanA NA.
Before and after plasma treatment, cell morphology was studied via scanning electron microscopy (SEM).
The reduction of heterogenite in hydrogen was studied via a design-of-experiment approach.
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