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Staining was performed with Live/Dead BacLight bacterial viability kit.
Applying bio-imaging in bacterial viability assessment is vital to human health.
Figure 9 Fluorescence microscopy displaying bacterial viability (green = viable; red = dead) after incubation of 4 hours and stained with LIVE/DEAD® BacLight Bacterial Viability Kit.
However, very little knowledge has been accumulated regarding the innate biological mechanism influencing the bacterial viability.
Bacterial viability was assessed by counting the number of colonies formed on the agar plate.
However, the innate biological mechanism influencing the bacterial viability is still unclear.
After sonodynamic treatment, colony forming unit assay and bacterial viability assay were conducted.
The fatty acid biosynthesis is essential for the bacterial viability and growth.
showed that the nanospikes on the Ti alloy surfaces has potential to reduce bacterial viability.
Viability of adherent yeasts to the surfaces was evaluated with the LIVE/DEAD® Bacterial Viability Kit (BacLight®).
Finally, ∆soxR still showed no effect on the bacterial viability at low RH compared to the parental strain.
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