A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä
NIRis: A low-cost, versatile imaging system for near-infrared fluorescence detection of phototrophic cell colonies used in research and education (2024)
Franz, O., Häkkänen, H., Kovanen, S., Heikkilä-Huhta, K., Nissinen, R., & Ihalainen, J. A. (2024). NIRis: A low-cost, versatile imaging system for near-infrared fluorescence detection of phototrophic cell colonies used in research and education. PLoS ONE, 19(5), Article e0287088. https://doi.org/10.1371/journal.pone.0287088
JYU-tekijät tai -toimittajat
Julkaisun tiedot
Julkaisun kaikki tekijät tai toimittajat: Franz, Ole; Häkkänen, Heikki; Kovanen, Salla; Heikkilä-Huhta, Kati; Nissinen, Riitta; Ihalainen, Janne A.
Lehti tai sarja: PLoS ONE
eISSN: 1932-6203
Julkaisuvuosi: 2024
Ilmestymispäivä: 21.05.2024
Volyymi: 19
Lehden numero: 5
Artikkelinumero: e0287088
Kustantaja: Public Library of Science (PLoS)
Julkaisumaa: Yhdysvallat (USA)
Julkaisun kieli: englanti
DOI: https://doi.org/10.1371/journal.pone.0287088
Julkaisun avoin saatavuus: Avoimesti saatavilla
Julkaisukanavan avoin saatavuus: Kokonaan avoin julkaisukanava
Julkaisu on rinnakkaistallennettu (JYX): https://jyx.jyu.fi/handle/123456789/95071
Tiivistelmä
A variety of costly research-grade imaging devices are available for the detection of spectroscopic features. Here we present an affordable, open-source and versatile device, suitable for a range of applications. We provide the files to print the imaging chamber with commonly available 3D printers and instructions to assemble it with easily available hardware. The imager is suitable for rapid sample screening in research, as well as for educational purposes. We provide details and results for an already proven set-up which suits the needs of a research group and students interested in UV-induced near-infrared fluorescence detection of microbial colonies grown on Petri dishes. The fluorescence signal confirms the presence of bacteriochlorophyll a in aerobic anoxygenic phototrophic bacteria (AAPB). The imager allows for the rapid detection and subsequent isolation of AAPB colonies on Petri dishes with diverse environmental samples. To this date, 15 devices have been build and more than 7000 Petri dishes have been analyzed for AAPB, leading to over 1000 new AAPB isolates. Parts can be modified depending on needs and budget. The latest version with automated switches and double band pass filters costs around 350€ in materials and resolves bacterial colonies with diameters of 0.5 mm and larger. The low cost and modular build allow for the integration in high school classes to educate students on light properties, fluorescence and microbiology. Computer-aided design of 3D-printed parts and programming of the employed Raspberry Pi computer could be incorporated in computer sciences classes. Students have been also inspired to do agar art with microbes. The device is currently used in seven different high schools in Finland. Additionally, a science education network of Finnish universities has incorporated it in its program for high school students. Video guides have been produced to facilitate easy operation and accessibility of the device.
YSO-asiasanat: fluoresenssi; kuvantaminen; lähi-infrapunaspektroskopia; keinovalo; 3D-tulostus; atk-laitteet
Vapaat asiasanat: fluorescence imaging; fluorescence; artificial light; near-infrared spectroscopy; white light; 3D printing; computer hardware; schools
Liittyvät organisaatiot
Hankkeet, joissa julkaisu on tehty
- Jaettu valo – valon biologia ja pohjoisen muuttuvat ekosysteemit
- Nissinen, Riitta
- Koneen Säätiö
OKM-raportointi: Kyllä
Raportointivuosi: 2024
Alustava JUFO-taso: 1
- Solu- ja molekyylibiologia (Bio- ja ympäristötieteiden laitos BIOENV) SMB
- Ekologia ja evoluutiobiologia (Bio- ja ympäristötieteiden laitos BIOENV) EKO
- Nanoscience Center (Fysiikan laitos PHYS, JYFL) (Matemaattis-luonnontieteellinen tiedekunta) (Kemian laitos CHEM) (Bio- ja ympäristötieteiden laitos BIOENV) NSC