JP2021173613A5 - - Google Patents

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JP2021173613A5
JP2021173613A5 JP2020076956A JP2020076956A JP2021173613A5 JP 2021173613 A5 JP2021173613 A5 JP 2021173613A5 JP 2020076956 A JP2020076956 A JP 2020076956A JP 2020076956 A JP2020076956 A JP 2020076956A JP 2021173613 A5 JP2021173613 A5 JP 2021173613A5
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program
determination program
unit
serotype
serotyping
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JP7310694B2 (en
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微生物判別部20の実体は、ワークステーションやパーソナルコンピュータ等のコンピュータであり、中央演算処理装置であるCPU(Central Processing Unit)21にメモリ22、LCD(Liquid Crystal Display)等から成る表示部23、キーボードやマウス等から成る入力部24、ハードディスクやSSD(Solid State Drive)等の大容量記憶装置から成る記憶部30が互いに接続されている。記憶部30には、OS(Operating System)31、スペクトル作成プログラム32、種決定プログラム33、及び血清型決定プログラム35(本発明に係るプログラム)が記憶されると共に、第1データベース34及び第2データベース36が格納されている。微生物判別部20は、更に、外部装置との直接的な接続や、外部装置等とのLAN(Local Area Network)などのネットワークを介した接続を司るためのインターフェース(I/F)25を備えており、該インターフェース25よりネットワークケーブルNW(又は無線LAN)を介して質量分析部10に接続されている。
The entity of the microorganism identification unit 20 is a computer such as a workstation or a personal computer, and includes a CPU (Central Processing Unit) 21, which is a central processing unit, a memory 22, a display unit 23 composed of an LCD (Liquid Crystal Display), etc., and a keyboard. An input unit 24 such as a mouse or the like, and a storage unit 30 comprising a large-capacity storage device such as a hard disk or SSD (Solid State Drive) are connected to each other. The storage unit 30 stores an OS (Operating System) 31, a spectrum creation program 32, a species determination program 33, and a serotype determination program 35 (a program according to the present invention), as well as a first database 34 and a second database. 36 are stored. The microorganism discrimination unit 20 further includes an interface (I/F) 25 for direct connection with an external device or connection with an external device or the like via a network such as a LAN (Local Area Network). The interface 25 is connected to the mass spectrometer 10 via a network cable NW (or wireless LAN).

図1においては、血清型決定プログラム35に係るように、スペクトル取得部37、m/z読み取り部38、及び血清型判定部39が示されている。これはいずれも基本的にはCPU21が血清型決定プログラム35を実行することによりソフトウェア的に実現される機能手段である。なお、血清型決定プログラム35は必ずしも単体のプログラムである必要はなく、例えば種決定プログラム33や、質量分析部10を制御するためのプログラムの一部に組み込まれた機能であってもよく、その形態は特に問わない。なお、種決定プログラム33としては、例えば、従来のフィンガープリント法による微生物識別を行うプログラム等を利用することができる。
In FIG. 1, a spectrum acquisition section 37, an m/z reading section 38, and a serotyping section 39 are shown as related to the serotyping program 35. FIG. All of these are basically functional means realized by software when the CPU 21 executes the serotype determination program 35 . The serotype determination program 35 does not necessarily have to be a standalone program, and may be, for example, a function incorporated in the species determination program 33 or a part of a program for controlling the mass spectrometer 10. The form is not particularly limited. As the species determination program 33, for example, a program for identifying microorganisms by a conventional fingerprint method can be used.

JP2020076956A 2020-04-23 2020-04-23 Microbial analysis method Active JP7310694B2 (en)

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JP2020076956A JP7310694B2 (en) 2020-04-23 2020-04-23 Microbial analysis method

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JP2020076956A JP7310694B2 (en) 2020-04-23 2020-04-23 Microbial analysis method

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JP2021173613A JP2021173613A (en) 2021-11-01
JP2021173613A5 true JP2021173613A5 (en) 2022-08-04
JP7310694B2 JP7310694B2 (en) 2023-07-19

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4818981B2 (en) * 2006-04-28 2011-11-16 独立行政法人産業技術総合研究所 Rapid cell identification method and identification device
EP3438655B1 (en) * 2016-03-31 2021-02-17 Shimadzu Corporation Microorganism identification method
JP2019138811A (en) * 2018-02-13 2019-08-22 株式会社島津製作所 Microorganism analysis method
JP2019138810A (en) * 2018-02-13 2019-08-22 株式会社島津製作所 Microorganism analysis method

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