ocelloscope imager (BioSense Solutions ApS)
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Ocelloscope Imager, supplied by BioSense Solutions ApS, used in various techniques. Bioz Stars score: 95/100, based on 60 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/ocelloscope/oCelloScope/pm42000315-59-16-18
Average 95 stars, based on 60 article reviews
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Imaging:Article Title: From lab to industry: Methods for biomass quantification in basidiomycetous fungi Article Snippet: .. The Microbial Monitoring:Article Title: From lab to industry: Methods for biomass quantification in basidiomycetous fungi Article Snippet: .. The other:Article Title: Impact of carbon sources in airport de-icing compounds on the growth of Sphaerotilus natans Article Snippet: Methods such as Live Cell Imaging:Article Title: Functional transitions of the Aspergillus fumigatus iron regulator HapX are governed by conserved domains cooperatively binding [2Fe-2S] clusters Article Snippet: .. Therefore, we applied automated microbial live cell imaging and analysis using the Article Title: How Habitable Are M Dwarf Exoplanets? Modeling Surface Conditions and Exploring the Role of Melanins in the Survival of Aspergillus niger Spores Under Exoplanet-Like Radiation. Article Snippet: Exoplanet habitability remains a challenging field due to the large distances separating Earth from other stars.. Using insights from biology and astrophysics, we studied the habitability of M dwarf exoplanets by modeling their surface temperature and flare ultraviolet (UV) and X-ray doses using the martian atmosphere as a shielding model. Analyzing the Proxima Centauri and TRAPPIST-1 systems, our models suggest that Proxima b and TRAPPIST-1 e are likeliest to have temperatures compatible with surface liquid water, as well as tolerable radiation environments.. Results of the modeling were used as a basis for microbiology experiments to assess spore survival and germination of the melanin-rich fungus Aspergillus niger to exoplanet-like radiation (UV-C and X-rays). Food & Beverages:Article Title: Synergistic antifungal effects of the preservative ammonium propionate and medium chain fatty acids against dormant and germinating conidia, germ tubes and hyphae of Aspergillus chevalieri, a feed spoilage fungus. Article Snippet: In feed, propionic acid is the weak organic acid of choice to prevent growth of spoilage fungi.. For safe and easy industrial handling this antifungal agent is applied in the presence of neutralizing ammonium, which however has the disadvantage to negatively affect the efficacy of fungus-inhibiting properties of the formulation.. In the present study we investigated the impact of medium chain fatty acids (MCFA) on the antifungal efficacy of an ammonium propionate formulation on dormantand germinating conidia as well as germ tubes and hyphae of Aspergillus chevalieri, a xerophilic fungus predominant on moulded feed. |
