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1.
Astrobiology ; 17(4): 351-362, 2017 04.
Artículo en Inglés | MEDLINE | ID: mdl-28418705

RESUMEN

Raman spectrometers will be utilized on two Mars rover missions, ExoMars and Mars 2020, in the near future, to search for evidence of life and habitable geological niches on Mars. Carotenoid pigments are recognized target biomarkers, and as they are highly active in Raman spectroscopy, they can be readily used to characterize the capabilities of space representative instrumentation. As part of the preparatory work being performed for the ExoMars mission, a gypsum crust colonized by microorganisms was interrogated with commercial portable Raman instruments and a flight representative Raman laser spectrometer. Four separate layers, each exhibiting different coloration resulting from specific halophilic microorganism activities within the gypsum crust, were studied by using two excitation wavelengths: 532 and 785 nm. Raman or fluorescence data were readily obtained during the present study. Gypsum, the main constituent of the crust, was detected with both excitation wavelengths, while the resonance Raman signal associated with carotenoid pigments was only detected with a 532 nm excitation wavelength. The fluorescence originating from bacteriochlorophyll a was found to overwhelm the Raman signal for the layer colonized by sulfur bacteria when interrogated with a 785 nm excitation wavelength. Finally, it was demonstrated that portable instruments and the prototype were capable of detecting a statistically significant difference in band positions of carotenoid signals between the sample layers. Key Words: Gypsum-Raman spectrometers-Carotenoids-ExoMars-Mars exploration-Band position shift. Astrobiology 17, 351-362.


Asunto(s)
Carotenoides/análisis , Vuelo Espacial , Espectrometría Raman/instrumentación , Sulfato de Calcio/química , Carotenoides/química , Cristalización , Rayos Láser , Sulfatos/química
2.
J Autism Dev Disord ; 45(9): 3048-54, 2015 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-25841884

RESUMEN

The current study evaluated the use of Superheroes Social Skills to promote accurate use of discrete social skills in training and generalization conditions in two children with autism spectrum disorder. Participants attended a twice weekly social skills training group over 5 weeks, with lessons targeting nonverbal, requesting, responding, and conversation skills. A multiple probe across social skills design, replicated across participants, was utilized to assess the effects of participation of the intervention on skill accuracy. Following introduction of the intervention, participants demonstrated abrupt improvements in skill accuracy in both training and generalization conditions. Additionally, parental reports of participant social functioning indicated improvements following participation in the intervention. Limitations and future directions are discussed.


Asunto(s)
Trastorno del Espectro Autista/rehabilitación , Intervención Educativa Precoz/métodos , Películas Cinematográficas , Habilidades Sociales , Trastorno del Espectro Autista/psicología , Niño , Femenino , Humanos , Masculino
3.
Philos Trans A Math Phys Eng Sci ; 372(2030)2014 Dec 13.
Artículo en Inglés | MEDLINE | ID: mdl-25368350

RESUMEN

The first Raman spectrometers to be used for in situ analysis of planetary material will be launched as part of powerful, rover-based analytical laboratories within the next 6 years. There are a number of significant challenges associated with building spectrometers for space applications, including limited volume, power and mass budgets, the need to operate in harsh environments and the need to operate independently and intelligently for long periods of time (due to communication limitations). Here, we give an overview of the technical capabilities of the Raman instruments planned for future planetary missions and give a review of the preparatory work being pursued to ensure that such instruments are operated successfully and optimally. This includes analysis of extremophile samples containing pigments associated with biological processes, synthetic materials which incorporate biological material within a mineral matrix, planetary analogues containing low levels of reduced carbon and samples coated with desert varnish that incorporate both geo-markers and biomarkers. We discuss the scientific importance of each sample type and the challenges using portable/flight-prototype instrumentation. We also report on technical development work undertaken to enable the next generation of Raman instruments to reach higher levels of sensitivity and operational efficiency.

4.
Philos Trans A Math Phys Eng Sci ; 372(2030)2014 Dec 13.
Artículo en Inglés | MEDLINE | ID: mdl-25368354

RESUMEN

A prototype instrument, under development at the University of Leicester, for the future European Space Agency (ESA) ExoMars mission, was used for the analysis of microbial pigments within a stratified gypsum crust from a hypersaline saltern evaporation pond at Eilat (Israel). Additionally, the same samples were analysed using a miniaturized Raman spectrometer, featuring the same 532 nm excitation. The differences in the position of the specific bands, attributed to carotenoid pigments from different coloured layers, were minor when analysed by the ESA prototype instrument; therefore, making it difficult to distinguish among the different pigments. The portable Delta Nu Advantage instrument allowed for the discrimination of microbial carotenoids from the orange/green and purple layers. The purpose of this study was to complement previous laboratory results with new data and experience with portable or handheld Raman systems, even with a dedicated prototype Raman system for the exploration of Mars. The latter is equipped with an excitation wavelength falling within the carotenoid polyene resonance region. The ESA prototype Raman instrument detected the carotenoid pigments (biomarkers) with ease, although further detailed distinctions among them were not achieved.

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