Computer identification of yeasts of the genus Saccharomyces

I. Campbell

    Research output: Contribution to journalArticle

    Abstract

    A punched card system of identification by computer is described, whereby matching at over 85% with the description of a recognized Saccharomyces species constitutes identification. The system is based on a set of 39 invariable descriptions of species, so defined that no species is related at higher than 85% matching coefficient to any other species.

    Original languageEnglish
    Pages (from-to)127-135
    Number of pages9
    JournalJournal of General Microbiology
    Volume77
    Issue number1
    Publication statusPublished - 1973

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    Saccharomyces
    yeasts
    species identification

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    title = "Computer identification of yeasts of the genus Saccharomyces",
    abstract = "A punched card system of identification by computer is described, whereby matching at over 85{\%} with the description of a recognized Saccharomyces species constitutes identification. The system is based on a set of 39 invariable descriptions of species, so defined that no species is related at higher than 85{\%} matching coefficient to any other species.",
    author = "I. Campbell",
    year = "1973",
    language = "English",
    volume = "77",
    pages = "127--135",
    journal = "Journal of General Microbiology",
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    publisher = "Society for General Microbiology",
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    Computer identification of yeasts of the genus Saccharomyces. / Campbell, I.

    In: Journal of General Microbiology, Vol. 77, No. 1, 1973, p. 127-135.

    Research output: Contribution to journalArticle

    TY - JOUR

    T1 - Computer identification of yeasts of the genus Saccharomyces

    AU - Campbell, I.

    PY - 1973

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    AB - A punched card system of identification by computer is described, whereby matching at over 85% with the description of a recognized Saccharomyces species constitutes identification. The system is based on a set of 39 invariable descriptions of species, so defined that no species is related at higher than 85% matching coefficient to any other species.

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    M3 - Article

    VL - 77

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    EP - 135

    JO - Journal of General Microbiology

    JF - Journal of General Microbiology

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