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<full_title>Journal of Open Source Software</full_title> | ||
<abbrev_title>JOSS</abbrev_title> | ||
<issn media_type="electronic">2475-9066</issn> | ||
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<doi>10.21105/joss</doi> | ||
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<title>AIgarMIC: a Python package for automated interpretation | ||
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<given_name>Alessandro</given_name> | ||
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<article_title>Determination of minimum inhibitory | ||
concentrations (MICs) of antibacterial agents by agar | ||
dilution</article_title> | ||
<author>EUCAST</author> | ||
<journal_title>Clinical Microbiology and | ||
Infection</journal_title> | ||
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minimum inhibitory concentrations (MICs) of antibacterial agents by agar | ||
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dilution</article_title> | ||
<author>Gerada</author> | ||
<journal_title>Microbiology Spectrum</journal_title> | ||
<doi>10.1128/spectrum.04209-23</doi> | ||
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Reza, N., & Hope, W. (2024). Determination of minimum inhibitory | ||
concentrations using machine-learning-assisted agar dilution. | ||
Microbiology Spectrum, e04209–23. | ||
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<doi>10.17638/DATACAT.LIVERPOOL.AC.UK/2631</doi> | ||
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Reza, N., Hope, W., & Liverpool Clinical Laboratories. (2024). Image | ||
and model assets for AIgarMIC (agar dilution minimum inhibitory | ||
concentration software) [Data set]. DataCat. | ||
https://doi.org/10.17638/DATACAT.LIVERPOOL.AC.UK/2631</unstructured_citation> | ||
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<journal_title>BioTechniques</journal_title> | ||
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<doi>10.2144/000112257</doi> | ||
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<unstructured_citation>Lamprecht, M. R., Sabatini, D. M., | ||
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for automated biological image analysis. BioTechniques, 42(1), 71–75. | ||
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<article_title>Agar and broth dilution methods to determine | ||
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substances</article_title> | ||
<author>Wiegand</author> | ||
<journal_title>Nature Protocols</journal_title> | ||
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Hancock, R. E. W. (2008). Agar and broth dilution methods to determine | ||
the minimal inhibitory concentration (MIC) of antimicrobial substances. | ||
Nature Protocols, 3(2), 163–175. | ||
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