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17
result(s) for
"Giordanengo, B"
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On-Orbit Degradation of Solar Instruments
by
Bradley, L.
,
Woods, T. N.
,
Woodraska, D.
in
Aerospace & aeronautics engineering
,
Astronomical instruments
,
Astrophysics
2013
We present the lessons learned about the degradation observed in several space solar missions, based on contributions at the Workshop about On-Orbit Degradation of Solar and Space Weather Instruments that took place at the Solar Terrestrial Centre of Excellence (Royal Observatory of Belgium) in Brussels on 3 May 2012. The aim of this workshop was to open discussions related to the degradation observed in Sun-observing instruments exposed to the effects of the space environment. This article summarizes the various lessons learned and offers recommendations to reduce or correct expected degradation with the goal of increasing the useful lifespan of future and ongoing space missions.
Journal Article
Degradation assessment of LYRA after 5 years on orbit - Technology Demonstration
2015
We present a long-term assessment of the radiometric calibration and degradation of the Large Yield Radiometer (LYRA), which has been on orbit since 2009. LYRA is an ultraviolet (UV) solar radiometer and is the first space experiment using aboard a pioneering diamond detector technology. We show that LYRA has degraded after the commissioning phase but is still exploitable scientifically after almost 5 years on orbit thanks to its redundancy design and calibration strategy correcting for instrument degradation. We focus on the inflight detector’s calibration and show that diamond photodetectors have not degraded while silicon reference photodiodes that are even less exposed to the Sun show an increase of their dark current and a decrease of their photoresponse.
Journal Article
The Projects for Onboard Autonomy (PROBA2) Science Centre: Sun Watcher Using APS Detectors and Image Processing (SWAP) and Large-Yield Radiometer (LYRA) Science Operations and Data Products
by
Schwehm, G.
,
Seaton, D. B.
,
Stegen, K.
in
Astrophysics
,
Astrophysics and Astroparticles
,
Atmospheric Sciences
2013
The PROBA2 Science Centre (P2SC) is a small-scale science operations centre supporting the Sun observation instruments onboard PROBA2: the EUV imager
Sun Watcher using APS detectors and image Processing
(SWAP) and
Large-Yield Radiometer
(LYRA). PROBA2 is one of ESA’s small, low-cost
Projects for Onboard Autonomy
(PROBA) and part of ESA’s In-Orbit Technology Demonstration Programme. The P2SC is hosted at the Royal Observatory of Belgium, co-located with both Principal Investigator teams. The P2SC tasks cover science planning, instrument commanding, instrument monitoring, data processing, support of outreach activities, and distribution of science data products. PROBA missions aim for a high degree of autonomy at mission and system level, including the science operations centre. The autonomy and flexibility of the P2SC is reached by a set of web-based interfaces allowing the operators as well as the instrument teams to monitor quasi-continuously the status of the operations, allowing a quick reaction to solar events. In addition, several new concepts are implemented at instrument, spacecraft, and ground-segment levels allowing a high degree of flexibility in the operations of the instruments. This article explains the key concepts of the P2SC, emphasising the automation and the flexibility achieved in the commanding as well as the data-processing chain.
Journal Article
Magnetic properties of (Zn,Cd,Cu)–Co–Fe–Ti spinel oxides
1999
AC susceptibility, magnetization and Mössbauer spectra have been measured for (Zn,Cd,Cu)0.5Co0.9Fe1.2Ti0.4O4 and Zn0.3Co0.9Fe1.4Ti0.4O4 spinel oxides. The variation of coercive field below the spin glass transition temperature Tsg is found to fit a double exponential function of the form \\(H_c ( T ) = H_1e ^ - _1 T + H_2e ^ - _2 T \\), where Hi and βi are constants. Mössbauer spectra and analysis show superparamagnetic fluctuations associated with magnetic clusters. Symmetric doublets above Tsg are decomposed into quadrupole doublets associated with tetrahedral (A) and octahedral (B) sites.
Journal Article
Initial radiometric calibration of the High-Resolution EUV Imager (\\(HRI_EUV\\)) of the Extreme Ultraviolet Imager (EUI) instrument onboard Solar Orbiter
2023
The \\(HRI_EUV\\) telescope was calibrated on ground at the Physikalisch-Technische Bundesanstalt (PTB), Germany's national metrology institute, using the Metrology Light Source (MLS) synchrotron in April 2017 during the calibration campaign of the Extreme Ultraviolet Imager (EUI) instrument onboard the Solar Orbiter mission. We use the pre-flight end-to-end calibration and component-level (mirror multilayer coatings, filters, detector) characterization results to establish the beginning-of-life performance of the \\(HRI_EUV\\) telescope which shall serve as a reference for radiometric analysis and monitoring of the telescope in-flight degradation. Calibration activities at component level and end-to-end calibration of the instrument were performed at PTB/MLS synchrotron light source (Berlin, Germany) and the SOLEIL synchrotron. Each component optical property is measured and compared to its semi-empirical model. This pre-flight characterization is used to estimate the parameters of the semi-empirical models. The end-to-end response is measured and validated by comparison with calibration measurements, as well as with its main design performance requirements. The telescope spectral response semi-empirical model is validated by the pre-flight end-to-end ground calibration of the instrument. It is found that \\(HRI_EUV\\) is a highly efficient solar EUV telescope with a peak efficiency superior to 1 e\\(^-\\).ph\\(^-1\\)), low detector noise (\\(\\) 3 e- rms), low dark current at operating temperature, and a pixel saturation above 120 ke- in low-gain or combined image mode. The ground calibration also confirms a well-modeled spectral selectivity and rejection, and low stray light. The EUI instrument achieves state-of-the-art performance in terms of signal-to-noise and image spatial resolution.
On-Orbit Degradation of Solar Instruments
by
Thuillier, G
,
Eyles, C J
,
Jeppesen, C
in
Aerospace environments
,
Degradation
,
Solar instruments
2013
We present the lessons learned about the degradation observed in several space solar missions, based on contributions at the Workshop about On-Orbit Degradation of Solar and Space Weather Instruments that took place at the Solar Terrestrial Centre of Excellence (Royal Observatory of Belgium) in Brussels on 3 May 2012. The aim of this workshop was to open discussions related to the degradation observed in Sun-observing instruments exposed to the effects of the space environment. This article summarizes the various lessons learned and offers recommendations to reduce or correct expected degradation with the goal of increasing the useful lifespan of future and ongoing space missions.
Divergent effects of PVY-infected potato plant on aphids
by
Boquel, Sébastien
,
Giordanengo, Philippe
,
Ameline, Arnaud
in
Agriculture
,
Animal behavior
,
Aphididae
2011
Host plant selection by aphids can be positively or negatively affected when plants are infected by phytoviruses. Potato plants infected by Potato virus Y (PVY), a non-persistent virus, are reported to affect settling behaviour and growth parameters of Myzus persicae Sulzer and Macrosiphum euphorbiae Thomas. Using the Electrical penetration graph system (EPG), we demonstrated that PVY-infection of potato plants influences the feeding behaviour of these two aphid species. Myzus persicae exhibited increased phloem sap ingestion and reduced non-probing duration. Macrosiphum euphorbiae showed delayed stylet insertion, reduced activity in the phloem vessels and an enhanced non-probing duration. In addition, we showed that these two species exhibited different transmission rates. The opposite effects of PVY-infected potato plant on these two aphids are discussed in terms of PVY spreading in the field.
Journal Article
NALP3 inflammasome upregulation and CASP1 cleavage of the glucocorticoid receptor cause glucocorticoid resistance in leukemia cells
2015
William Evans and colleagues find that the proinflammatory genes
CASP1
and
NLRP3
are expressed at higher levels in primary acute lymphoblastic leukemia cells that are resistant than in those that are sensitive to glucocorticoid treatment. They find that CASP1 mediates glucocorticoid resistance through cleavage of the glucocorticoid receptor.
Glucocorticoids are universally used in the treatment of acute lymphoblastic leukemia (ALL), and resistance to glucocorticoids in leukemia cells confers poor prognosis. To elucidate mechanisms of glucocorticoid resistance, we determined the prednisolone sensitivity of primary leukemia cells from 444 patients newly diagnosed with ALL and found significantly higher expression of
CASP1
(encoding caspase 1) and its activator
NLRP3
in glucocorticoid-resistant leukemia cells, resulting from significantly lower somatic methylation of the
CASP1
and
NLRP3
promoters. Overexpression of CASP1 resulted in cleavage of the glucocorticoid receptor, diminished the glucocorticoid-induced transcriptional response and increased glucocorticoid resistance. Knockdown or inhibition of CASP1 significantly increased glucocorticoid receptor levels and mitigated glucocorticoid resistance in
CASP1
-overexpressing ALL. Our findings establish a new mechanism by which the NLRP3-CASP1 inflammasome modulates cellular levels of the glucocorticoid receptor and diminishes cell sensitivity to glucocorticoids. The broad impact on the glucocorticoid transcriptional response suggests that this mechanism could also modify glucocorticoid effects in other diseases.
Journal Article
Tandem Mass Spectrometry of Poly(Methacrylic Acid) Oligomers Produced by Negative Mode Electrospray Ionization
by
Viel, Stéphane
,
Charles, Laurence
,
Allard-Breton, Béatrice
in
Acids
,
Acrylic resins
,
Analytical Chemistry
2009
Dissociation of small poly(methyl acrylic acid) (PMAA) anions produced by electrospray was characterized by tandem mass spectrometry. Upon collisional activation, singly, and doubly deprotonated PMAA oligomers were shown to fragment via two major reactions, dehydration and decarboxylation. The elimination of a water molecule would occur between two consecutive acid groups in a charged-remote mechanism, giving rise to cyclic anhydrides, and was shown to proceed as many times as pairs of neutral pendant groups were available. As a result, the number of dehydration steps, together with the abundance of the fragment ions produced after the release of all water molecules, revealed the polymerization degree of the molecule in the particular case of doubly charged oligomers. For singly deprotonated molecules, the exact number of MAA units could be reached from the number of carbon dioxide molecules successively eliminated from the fully dehydrated precursor ions. In contrast to dehydration, decarboxylation reactions would proceed via a charge-induced mechanism. The proposed dissociation mechanisms are consistent with results commonly reported in thermal degradation studies of poly(acrylic acid) resins and were supported by accurate mass measurements. These fragmentation rules were successfully applied to characterize a polymeric impurity detected in the tested PMAA sample.
Total number of successive water losses in the MS/MS spectrum allows the determination of PMAA polymerization degree.
Journal Article
Analytical Strategy for the Molecular Weight Determination of Random Copolymers of Poly(Methyl Methacrylate) and Poly(Methacrylic Acid)
by
Viel, Stéphane
,
Charles, Laurence
,
Allard-Breton, Béatrice
in
Analytical Chemistry
,
Bioinformatics
,
Biotechnology
2010
Molecular weight characterization of random amphiphilic copolymers currently represents an analytical challenge. In particular, molecules composed of methacrylic acid (MAA) and methyl methacrylate (MMA) as the repeat units raise issues in commonly used techniques. The present study shows that when random copolymers cannot be properly ionized by MALDI, and hence detected and measured in MS, one possible analytical strategy is to transform them into homopolymers, which are more amenable to this ionization technique. Then, by combining the molecular weight of the so-obtained homopolymers, as measured by MS, with the relative molar proportion of the MMA and MMA units, as given by
1H NMR spectrum, one can straightforwardly estimate the molecular weight of the initial copolymer. A methylation reaction was performed to transform MAA-MMA copolymer samples into PMMA homopolymers, using trimethylsilyldiazomethane as a derivatization agent. Weight average molecular weight (
M
w) parameters of the MAA-MMA copolymers could then be derived from
M
w values obtained for the methylated MAA-MMA molecules by MALDI, which were also validated by pulsed gradient spin echo (PGSE) NMR. An alkene function in one of the studied copolymer end-groups was also shown to react with the methylation agent, giving rise to MMA-like polymeric by-products characterized by tandem mass spectrometry and which could be avoided by adjusting the amount of the trimethylsilyldiazomethane in the reaction medium.
Methylation of MAA units to allow MALDI determination of
M
w parameter for random MAA-MMA amphiphilic copolymers.
Journal Article