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Busetto, S., Trevisan, E., Patriarca, P. & Menegazzi, R. A single-step, sensitive flow cytofluorometric assay for the simultaneous assessment of membrane-bound and ingested Candida albicans in phagocytosing neutrophils.
Auffan, M, Masion, A, Mouneyrac, C, de Garidel-Thoron, C, Hendren, CO, Thiery, A, Santaella, C, Giamberini, L, Bottero, JY, Wiesner, MR, and Rose, J. "Contribution of mesocosm testing to a single-step and exposure-driven environmental risk assessment of engineered nanomaterials". Nanoimpact 13 (January 1 , 2019: 66-69.
M. Auffan, Masion, A., Mouneyrac, C., de Garidel-Thoron, C., Hendren, C. O., Thiéry, A., Santaella, C., Giamberini, L., Bottero, J. - Y., Wiesner, M. R., and Rose, J., "Contribution of mesocosm testing to a single-step and exposure-driven environmental risk assessment of engineered nanomaterials", NanoImpact, vol. 13, pp. 66 - 69, 2019.
This approach can be a valuable tool for a damping-layout assessment as high damping can be achieved with a reduced amount of damping material in a single-step solution.
However, this is not a single-step process.
This is a significant improvement over a single-step process.
Therefore, it is more powerful than a single-step.
Here, we tested a single-step approach using three models.
The presented technique is a single-step procedure.
This approach allows for the assessment of mediation effects (indirect pathways) that are estimated and tested in a single step that is more statistically powerful than using a multistep method.
Some take it in a single step.
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