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1. Identity statement
Reference TypeSlides (Audiovisual Material)
Sitemtc-m16c.sid.inpe.br
Holder Codeisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identifier8JMKD3MGP8W/34BG65B
Repositorysid.inpe.br/mtc-m18@80/2008/12.04.19.24   (restricted access)
Last Update2008:12.04.19.24.04 (UTC) seeger05
Metadata Repositorysid.inpe.br/mtc-m18@80/2008/12.04.19.24.06
Metadata Last Update2018:06.04.04.05.51 (UTC) administrator
Citation KeyRampellotoMacRosSchMun:2008:UVBiSe
TitleUV biological sensor versus MED and its potential applications in space studies involving the uv radiation effects on life systems
FormatOn-line
Year2008
Access Date2024, Apr. 27
Number of Files1
Size9616 KiB
2. Context
Author1 Rampelloto, Pabulo Henrique
2 Machado, Cristiano Zarzi
3 Rosa, Marcelo Barcellos da
4 Schuch, Nelson Jorge
5 Munakata, Nobuo
Group1 RSU-CIE-INPE-MCT-BR
2 RSU-CIE-INPE-MCT-BR
3 RSU-CIE-INPE-MCT-BR
4 RSU-CIE-INPE-MCT-BR
Affiliation1 Instituto Nacional de Pesquisas Espaciais (INPE)
2 Instituto Nacional de Pesquisas Espaciais (INPE)
3 Instituto Nacional de Pesquisas Espaciais (INPE)
4 Instituto Nacional de Pesquisas Espaciais (INPE)
Conference NameInternational Astronautical Congress, (59th).
Conference LocationGlasgow, Scotland
Date29 september - 03 October
PublisherInstituto Nacional de Pesquisas Espaciais
Publisher CitySão José dos Campos
History (UTC)2008-12-04 19:24:07 :: seeger05 -> administrator ::
2018-06-04 04:05:51 :: administrator -> seeger05 ::
3. Content and structure
Is the master or a copy?is the master
Content Stagecompleted
Transferable1
AbstractThe solar UV radiation (UVR) is the most deleterious factor for biological systems in the space environment due to the high capacity of its shorter wavelengths to induce DNA damages. Consequently, the focus of recent studies has been to understand how is possible to adapt concepts and technologies of biological UV dosimetry developed under terrestrial conditions to space environment or others planetary surfaces. At the INPEs Southern Space Observatory (29.4S, 53.8W), South of Brazil, a biological dosimeter based in the spore inactivation doses (SID) of Bacillus subtilis strain TKJ6312, has been used to monitor the UVR and compared with MED (Minimal Eritematose Dose, which simulate the human sensitivity to UVR) data, obtained by Brewer Spectrophotometers. Due the Nucleotide Excision Repair (NER) and Spore Photoproduct Lyase (SP lyase) repair mechanisms, the spores acquire a sensibility to UVR and presents characteristically resistance for extreme environment conditions. The biological dosimetry fulfills the criterions established by BIODOS project from the European Commission to be applied as UV-biosensor including its simplicity, facility of use and transport, long term storage and action spectrum with a good resolution. The published first laboratory results show that the SID action spectrum profile agrees with the MED action spectrum. Similar results were also found in field experiments for minutes and days. On the other hand, the correlated long term behaviors of both measures, under different and adverse climatological conditions still remain unknown. Considering a long monitoring period, since 2000, a high correlation index about 0.9 of monthly expositions and compared with Brewers MED measurements indicate its application for long-term period. Furthermore, spores data analyses from other sites around the world are in agreement for UVR season variation observed in the literature, from equatorial to higher latitudes sites. The simplicity, robustness and high resistance of bacterial spores under extreme environment conditions makes the biosensor an applicable and potential biological tool in space and others planetary surfaces.
AreaCEA
ArrangementUV biological sensor...
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4. Conditions of access and use
Languageen
Target FileIAC 2008 Presentation Pabulo UV biological...ppt
User Groupseeger05
Visibilityshown
Read Permissiondeny from all and allow from 150.163
5. Allied materials
Next Higher Units8JMKD3MGPCW/3EUFCFP
Host Collectionsid.inpe.br/mtc-m18@80/2008/03.17.15.17
6. Notes
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