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Synchrotron Radiation Studies of Free and Adsorbed MoleculesBao, Zhuo January 2008 (has links)
This thesis contains two parts. The first part concerns the research work on free molecules using synchrotron-radiation-related techniques. Auger electron spectra of two free open-shell molecules, O2 and NO, were studied experimentally and theoretically. Photoionization experimental technique with tunable synchrotron radiation source was used to induce core-level electron ionization and obtain the KVV normal Auger electron spectra. A quantitative assignment of O2 normal Auger spectrum was obtained by applying ab initio CI calculations and LVI Auger line shape simulations including the bond length dependence of Auger transition rates. The photon energy dependence of normal Auger electron spectra was focused on with photon energies in the vicinities of core-ionization threshold energies. Consequently, the MAPCI (Molecular Auger Post Collision Interaction) theory was developed. Taking the near-threshold O2 normal Auger spectrum as an example, the two extreme cases of MAPCI effect, “atomic-like PCI” and “molecular PCI”, were discovered and discussed. The effect of shape resonance on near-threshold molecular normal Auger spectrum was discussed taking NO near threshold normal Auger spectra as example. The second part deals with research work on the chemisorption of small epoxy organic molecules, ethylene oxide, methyl oxirane, on Si (100) surfaces. Synchrotron radiation related techniques, UPS, XPS and NEXAFS, were applied. Based on the valence photoemission spectra, C 1s and Si 2p XPS spectra, the epoxy ring opening reactions of these molecules in chemisorption process were proved. Further tentative search for the surface-adsorbate CDAD effect was performed, and no evident circular dichroism was confirmed.
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Monte Carlo and experimental small-field dosimetry applied to spatially fractionated synchrotron radiotherapy techniquesMartínez Rovira, Immaculada 12 March 2012 (has links)
Two innovative radiotherapy (RT) approaches are under development at the ID17 Biomedical
Beamline of the European Synchrotron Radiation Facility (ESRF): microbeam radiation
therapy (MRT) and minibeam radiation therapy (MBRT). The two main distinct characteristics
with respect to conventional RT are the use of submillimetric field sizes and spatial
fractionation of the dose. This PhD work deals with different features related to small-field
dosimetry involved in these techniques. Monte Carlo (MC) calculations and several experimental
methods are used with this aim in mind. The core of this PhD Thesis consisted of the
development and benchmarking of an MC-based computation engine for a treatment planning
system devoted to MRT within the framework of the preparation of forthcoming MRT
clinical trials. Additional achievements were the definition of safe MRT irradiation protocols,
the assessment of scatter factors in MRT, the further improvement of the MRT therapeutic
index by injecting a contrast agent into the tumour and the definition of a dosimetry protocol
for preclinical trials in MBRT.
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Multi-Electron Coincidence Studies of Atoms and MoleculesAndersson, Egil January 2010 (has links)
This thesis concerns multi-ionization coincidence measurements of atoms and small molecules using a magnetic bottle time-of-flight (TOF) spectrometer designed for multi-electron coincidence studies. Also, a time-of-flight mass spectrometer has been used together with the TOF electron spectrometer for electron-ion coincidence measurements. The multi-ionization processes have been studied by employing a pulsed discharge lamp in the vacuum ultraviolet spectral region and synchrotron radiation in the soft X-ray region. The designs of the spectrometers are described in some detail, and several timing schemes suitable for the light sources mentioned above are presented. Studies have been performed on krypton, molecular oxygen, carbon disulfide and a series of alcohol molecules. For the latter, double ionization spectra have been recorded and new information has been obtained on the dicationic states. A recently found rule-of-thumb and quantum chemical calculations have been used to quantify the effective distance of the two vacancies in the dications of these molecules. For Kr, O2, and CS2, single-photon core-valence spectra have been obtained at the synchrotron radiation facility BESSY II in Berlin and interpreted on the basis of quantum chemical calculations. These spectra show a remarkable similarity to conventional valence photoelectron spectra. Spectra of triply charged ions were recorded, also at BESSY II, for Kr and CS2 by measuring, in coincidence, all three electrons ejected. The complex transition channels leading to tricationic states were mapped in substantial detail for Kr. It was found that for 3d-ionized krypton, the tricationic states are dominantly populated by cascade Auger decays via distinct intermediate states whose energies have been determined. The triple ionization spectra of CS2 from the direct double Auger effect via S2p, S2s and C1s hole states contain several resolved features and show selectivity based on the initial charge localisation and on the identity of the initial state.
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X-ray studies of magnetism and electronic order in Fe-based materialsHamann Borrero, Jorge Enrique 07 February 2011 (has links) (PDF)
The structure and magnetism of selected compounds of the pnictides iron based superconductors with chemical formula LnO{1-x}FeAsFx (Ln = La,Sm and Ce), commonly known as 1111, and of rare earth iron borates RFe3(BO3)4 (R = Tb, Gd, Nd and Y), were studied by means of hard x-ray diffraction.
For the 1111 pnictides compounds, Rietveld refinement of powder x-ray diffraction measurements at room temperature reveals, that the ionic substitution of O by F has no effect on the structure of the FeAs layers of tetrahedra, whereas the major changes takes place in the LnO layer. These changes are reflected as a shrinkage of the crystal lattice, specially in the c direction. Additionally, a study of the temperature dependent structure of the Sm and Ce-1111 compounds was performed and an estimation of the the structural transition temperature was obtained. The results of the structural measurements, combined with electrical resistivity and µSR, were used to construct the Sm and Ce-1111 phase diagrams. These phase diagrams are characterized by two regions, consisting of a spin density wave (SDW) state and a superconducting state, which are sharply separated upon doping. Considering the different Ln ion, upon F doping the transition temperatures are more efficiently suppressed in Ce-1111 as compared to Sm-1111. More intriguingly, for the Ce case, a coexistence region between static magnetism and superconductivity without an orthorhombic distortion has been observed. Further analysis of the width of the Bragg peaks reveals strong lattice fluctuations towards phase transitions, which are reflected in magnetic and transport properties. Moreover, a strong damping of the lattice fluctuations is observed at Tc for superconducting Sm-1111 samples, giving experimental evidence of competing orders towards phase transitions in the iron pnictides.
Regarding the iron borates, non-resonant x-ray scattering studies have shown several new diffraction features, from the appearance of additional reflections that violate the reflection conditions for the low temperature crystal structure, to the emerging of commensurate superlattice peaks that appear below TN. A detailed analysis of the structure factors and q dependencies of the earlier reflections, demonstrate their magnetic nature. Additional resonant x-ray magnetic scattering experiments on NdFe3(BO3)4 were performed at the Nd L2,3 and Fe K edges. The results show that the magnetization behavior is different for the Nd and for the Fe sublattices. Moreover, we find that the magnetization of the Nd sublattice is induced by the Fe magnetization. The temperature dependent measurements also show a commensurate to incommensurate transition where the magnetic structure changes from a commensurate collinear structure, where both Nd and Fe moments align in the hexagonal basal plane, to an incommensurate spin helix structure that propagates along c. When a magnetic field is applied, the spin helix is destroyed and a collinear structure is formed where the moments align in a direction perpendicular to the applied magnetic field. Moreover, the critical field at which the spin helix is destroyed is the same field at which the magnetic induced electric polarization is maximum, thus, showing that the spin helix is not at the origin of the electric polarization.
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Monte Carlo προσομοίωση μαστογραφικής απεικόνισης με ακτινοβολία συγχρότρου / Monte Carlo simulation of synchrotron radiation mammographyΦυτούση, Νίκη 10 June 2014 (has links)
In the framework of this thesis, a simulation model, based on Monte Carlo techniques, was developed for the study of breast imaging using Synchrotron Radiation (SR). The basic core of the model was developed in previous dissertations of our Department for conventional mammography. The existing model was expanded to include SR physical and geometrical characteristics and test the potential of SR for further optimization in breast imaging. The SR model was validated against experimental data from SYRMEP beamline of the Elettra Synchrotron Light Facility.
The alterations of the new model comparing to the one for conventional mammography mostly concerned the geometry used (source-to-slit distance 22m), the narrow gaussian almost monoenergetic beam, and the scanning of the region of interest by a uniform movement of the phantom and the detector.
Besides the generation of an image, the model was enriched with dose parameters (incident air kerma, backscatter radiation, entrance surface air kerma-Ke), in order to evaluate SR for both image quality and dose.
The validation showed excellent results for 16-28 keV, for both image quality (subject contrast-SC) and dose (incident air kerma and corresponding number of photons) indices. In the case of SC, Pearson's correlation R was calculated 0.996, while in the case of dose validation, R was equal to 1. Regarding the backscatter, the validation was based on published data and the deviation did not exceed 2% for 20 keV.
The performance of SR was then evaluated with mathematical phantoms designed to simulate difficult imaging tasks; the first experiment concerned a 4cm-thick phantom made of adipose tissue with embedded spheres of PMMA, glandular tissue and water of increasing diameter; the second one concerned a step wedge of 0-75% glandularity in a 5cm-thick background of adipose tissue and small calcifications in each step.
The first experiment was used to compare SR energies (16-25 keV) to conventional mammographic spectra (Mo/Mo, Mo/Rh, Rh/Rh, W/Mo, W/Rh, W/Nb and W/Pd at 28 kVp) in terms of SC and CNR (Contrast-to-Noise Ratio). The results demonstrate that there is an energy range where CNR maximized (18-21 keV). The image quality indices are highly affected by the size and composition of the lesion, with PMMA showing a slightly degraded CNR compared to the same size glandular tissue inhomogeneity. SR energies between 18-21 keV demonstrate improved imaging performance compared to conventional spectra.
For the second experiment, a Figure of Merit (FOM=CNR^2/Ke), was used as an index of the overall perfomance. The energy on the detector was kept constant at 7μGy for SR energies 19-25 keV (for 20 keV, the corresponding Ke was 1.5mGy). The results showed that the best performance (highest FOM), is observed in higher energies. However, taking into consideration the contrast-detail visibility, the best performance was observed at 21-22 keV.
Synchrotron Radiation seems promising for breast imaging, since it shows better performance in cases where conventional mammography faces limitations. However, further exhaustive performance studies, in terms of resolution and dose, are necessary in order to consider it as a reliable alternative for mammographic applications. / Στα πλαίσια της διατριβής αυτής, αναπτύχθηκε ένα μοντέλο προσομοίωσης με βάση τις τεχνικές Monte Carlo για την υπολογιστική μελέτη της εφαρμογής της Ακτινοβολίας Συγχρότρου (ΑΣ) στην απεικόνιση μαστού. Μια βάση για το σχεδιασμό του μοντέλου είχε διαμορφωθεί στο Εργαστήριο Ιατρικής Φυσικής για κλασική μαστογραφία. Το νέο μοντέλο σχεδιάστηκε και πιστοποιήθηκε ως προς την ακρίβεια των αποτελεσμάτων του, με βάση πειραματικές μετρήσεις που πραγματοποιήθηκαν με τη δέσμη SYRMEP του Elettra Synchrotron Light Facility στην Τεργέστη.
Οι διαφορές του μοντέλου για ΑΣ σε σχέση με το προηγούμενο που είχε αναπτυχθεί για κλασική μαστογραφία παρατηρήθηκαν κυρίως στη διάταξη (απόσταση πηγής-σχισμής 22m), στη στενή gaussian μορφή της σχεδόν μονοενεργειακής δέσμης, αλλά και στην σάρωση της περιοχής ενδιαφέροντος από τη δέσμη, που πραγματοποιείται στην πράξη με την ομοιόμορφη κίνηση του συστήματος ομοίωμα-ανιχνευτής.
Εκτός από τη δημιουργία εικόνας, στο μοντέλο προστέθηκαν και παράμετροι για τον υπολογισμό δοσιμετρικών στοιχείων (προσπίπτον kerma στην επιφάνεια του ομοιώματος, οπισθοσκεδαζόμενη ακτινοβολία, kerma εισόδου στην επιφάνεια του μαστού-Ke), για τη συνολική εκτίμηση της απόδοσης της ΑΣ στην απεικόνιση μαστού.
Η πιστοποίηση του μοντέλου ως προς την ακρίβεια των παραγόμενων αποτελεσμάτων είχε εξαιρετικά αποτελέσματα, τόσο για την ποιότητα εικόνας (αντίθεση υποκειμένου-subject contrast), όσο και για τη δόση (προσπίπτον kerma και αντίστοιχος αριθμός φωτονίων). Ο συντελεστής συσχέτισης του Pearson, R, μεταξύ των δεικτών ποιότητας πειραματικής και προσομοιωμένης εικόνας, βρέθηκε 0.996, ενώ στην περίπτωση της επαλήθευσης της δόσης, ο συντελεστής R άγγιξε το 1. Για την οπισθοσκεδαζόμενη ακτινοβολία, η επαλήθευση πραγματοποιήθηκε με βάση βιβλιογραφικά στοιχεία και τα αποτελέσματα έδωσαν απόκλιση μικρότερη του 2% για 20 keV.
Στη συνέχεια, πραγματοποιήθηκαν πειράματα προσομοίωσης για την αξιολόγηση της ΑΣ με χρήση μαθηματικών ομοιωμάτων; στο πρώτο πείραμα σχεδιάστηκε ομοίωμα πάχους 4cm από λιπώδη ιστό με σφαιρικές ανομοιογένειες τριών διαφορετικών διαμέτρων και τριών διαφορετικών πυκνοτήτων (PMMA, αδενώδης ιστός και νερό); το δεύτερο πείραμα αφορά σε ομοίωμα αδενώδους ιστού αυξανόμενου πάχους (step wedge) 0-75% glandularity μέσα σε λιπώδη ιστό πάχους 5cm και με ενσωματωμένες αποτιτάνωσεις σε κάθε βήμα.
Στο πρώτο πείραμα, συγκρίθηκαν ενέργειες ΑΣ (16-25 keV) με τα συνήθη μαστογραφικά φάσματα (Mo/Mo, Mo/Rh, Rh/Rh, W/Mo, W/Rh, W/Nb and W/Pd) στα 28 kVp ως προς το Subject Contrast (SC) και το Contrast-to-Noise Ratio (CNR). Τα αποτελέσματα έδειξαν ότι υπάρχει ένα εύρος ενεργειών (18-21 keV) όπου το CNR γίνεται βέλτιστο. Οι δείκτες ποιότητας εικόνας εξαρτώνται σημαντικά από το μέγεθος και τη σύνθεση της ανομοιογένειας με το PMMA να εμφανίζει ελαφρώς υποβαθμισμένο CNR σε σχέση με το αντίστοιχο μέγεθος ανομοιογένειας από αδενώδη ιστό. Οι ενέργειες ΑΣ στο εύρος 18-21 keV παρουσίασαν καλύτερη απόδοση από τα συμβατικά φάσματα.
Για το δεύτερο πείραμα, χρησιμοποιήθηκε ένας δείκτης συνολικής απόδοσης (Figure of Merit - FOM=CNR^2/Ke). Για εύρος ενεργειών 19-25 keV, διατηρήθηκε σταθερή η ενέργεια στον ανιχνευτή (7 μGy), που αντιστοιχεί σε Ke=1.5mGy για 20 keV. Τα αποτελέσματα έδειξαν ότι την καλύτερη απόδοση (υψηλότερο FOM) παρουσίασαν οι υψηλότερες ενέργειες ΑΣ. Λαμβάνοντας όμως υπόψη και την ανιχνευσιμότητα των αποτιτανώσεων, η καλύτερη απόδοση παρατηρήθηκε στα 21-22 keV.
Η Ακτινοβολία Συγχρότρου φαίνεται εξαιρετικά υποσχόμενη στην απεικόνιση μαστού, καθώς έχει καλύτερη απόδοση σε περιπτώσεις όπου η συμβατική μαστογραφία παρουσιάζει περιορισμούς. Εντούτοις, πρέπει να υποβληθεί σε περισσότερες μελέτες απόδοσης, ώστε να θεωρηθεί ως αξιόπιστη εναλλακτική για τις μαστογραφικές εφαρμογές.
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Studies on K-shell photoionization of nitrogen ions and on valence photoionization of atomic and small molecular ionsAlshorman, Mohammad 25 February 2014 (has links) (PDF)
In this thesis work, the K-shell photoionization of multi-charged ions has been studied as well as the valence photoionization of atomic and small molecular ions. The K-shell photoionization cross sections were measured for nitrogen iso-nuclear series, from N+ to N4+ ions using the ion-photon merged beam technique and the valence photoionization cross sections for Xe+ and Kr+ ions and the small molecular ions CO_2^+ and N_2^+ using both the merged beam and ion trap techniques at the SOLEIL synchrotron radiation facility in Saint-Aubin, France. Combination of the two techniques allows for the measurement of the pure ground state ionization cross section on an absolute scale.The experimental K-shell photoionization cross sections are compared with theoretical results obtained from the multi-configuration Dirac-Fock (MCDF), R-matrix and the Screening Constant by Unit Nuclear Charge (SCUNC) methods. The interplay between experiment and theory enables the identification and characterization of the strong 1s→2p and 1s→3p resonances observed in the spectra. The experimental valence photoionization cross sections for Xe+ and Kr+ ions are compared with MCDF calculations results obtained for the direct photoionization process. The quality of the absolute cross section measurements using the merged beam techniques is strongly dependent on the performance of Electron Cyclotron Resonance Ion Source (ECRIS). In order to improve the current of ions in the interaction region, the ions extraction system and transport was simulated by using IGUN program and ECRopt.
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Magnetoelectric Coupling Mechanisms in YMn2-xFexO5 and NdFe3(BO3)4 Revealed by Resonant X-ray DiffractionPartzsch, Sven 31 March 2014 (has links) (PDF)
Multiferroic materials with a coupled ordering of electric and magnetic moments could be used to build energy-efficient, magnetic computer memory that is written with an electrical field. To understand the interaction between the magnetic and electric ordering in such materials, two examples, namely yttrium manganate YMn2O5 and neodymium iron borate NdFe3(BO3)4, are studied by means of resonant x-ray diffraction.
The important role of a pure electronic contribution to the ferroelectric polarization is shown in YMn2O5. Furthermore, substitution of Fe can change the magnetic order of YMn2O5 from antiferromagnetic into ferrimagnetic, allowing the storage of easily readable magnetic information. Therefore the change of the magnetic structure upon small Fe substitution is studied. Although most of the magnetic structure of the parent compound is kept, the Fe moments have larger components along the c-direction.
In NdFe3(BO3)4 the microscopic origin of the magnetoelectric coupling is addressed as the consequence of the frustration of the Fe and Nd magnetic sublattices. The application of an electrical field shifts the balance from the helical to the collinear magnetic domains, revealing again the strong magnetoelectric coupling. / Multiferroische Materialien mit einer starken magnetoelektrischen Kopplung können als energieeffizienter, magnetischer Speicher benutzt werden, welcher mit einem elektrischen Feld geschrieben wird. Um die Wechselwirkung der elektrischen mit der magnetischen Ordnung in solchen Materialien zu verstehen, werden hier zwei Beispiele, nämlich Yttriummanganat YMn2O5 und Neodymeisenborat NdFe3(BO3)4, mit resonanter Röntgenbeugung untersucht.
In YMn2O5 wird die wichtige Rolle eines rein elektronischen Beitrags zur ferroelektrischen Polarisation gezeigt. Um die magnetische Struktur von YMn2O5 von antiferromagnetisch zu ferrimagnetisch zu verändern, kann Fe substituiert werden. Dies ermöglicht es, leicht zu lesende, magnetische Informationen zu speichern. Daher wurde die Änderung der magnetischen Struktur bei leichter Fe Substituierung untersucht. Auch wenn die magnetische Struktur von Fe im wesentlichen der magnetischen Struktur von Mn folgt, haben die Fe Momente größere Komponenten entlang der c-Richtung.
In NdFe3(BO3)4 wird der Ursprung der starken magnetischen Kopplung als Folge der Frustration des Nd und Fe Untergitters erklärt. Das Anlegen eines elektrischen Feldes führt zur Verschiebung des Gleichgewichts von den helikalen zu den kollinearen magnetischen Domänen, welches wieder die starke magnetoelektrische Kopplung veranschaulicht.
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Rascherstarrte nanokristalline Magnesiumlegierungen für die WasserstoffspeicherungKalinichenka, Siarhei 06 December 2011 (has links) (PDF)
Im Rahmen der vorliegenden Arbeit sind die Struktur und die Wasserstoffsorptionseigenschaften neuer nanokristalliner, hydridbildender magnesiumbasierter Legierungen, die mittels Rascherstarrung (Melt-Spinning Verfahren) hergestellt wurden, untersucht worden. Der Schwerpunkt der Arbeit bestand in der Erforschung der Vorgänge während der Aktivierung und der zyklischen Hydrierung/Dehydrierung der rascherstarrten Mg-Legierungen. Zusätzlich wurde das Gefüge, das sich nach der Kristallisation, Aktivierung bzw. Hydrierung einstellt, seine Erhaltung und Auswirkung auf das H2-Speicherverhalten (Struktur-Eigenschafts-Beziehungen) untersucht.
Die für die Verbesserung der Kinetik des H2-Speicherverhaltens angestrebte Nanostruktur konnte nach der Hydrierung der rascherstarrten Legierungen erreicht werden. Die REM-, TEM- sowie EFTEM (EELS)-Untersuchungen zeigten, dass ein Y-Zusatz zu Mg-basierten Legierungen zu einer sehr feinen (ca. 50 nm) und homogenen Verteilung von Y-Hydriden im Gefüge der rascherstarrten Bänder führt. Mg2Ni-Hydride bilden dagegen größere Körner im Größenbereich von 2-3 µm. Bei den Cu-haltigen Legierungen wurde eine Koexistenz von Mg2NiH4 und MgCu2 in direkter Nachbarschaft nachgewiesen.
Detaillierte Untersuchungen der Wasserstoffabsorption haben gezeigt, dass die Chemisorption während des linearen Anfangsbereiches des Hydrierungsverlaufes geschwindigkeitsbestimmend ist. Nach dem linearen Hydrierungsverlauf ist die Hydrierungskinetik von der Wasserstoffdiffusion durch eine geschlossene Hydridschicht beeinflusst.
Mit dem breiten Spektrum der Untersuchungen (REM, EELS, TEM, HP-TGA, DSC, in situ-Synchrotron-XRD) als auch durch gezielte Variation der Zusammensetzungen wurden neue und grundlegende Erkenntnisse zum H2-Speicherverhalten der rascherstarrten Mg-basierten Legierungssysteme gewonnen. Besondere Beachtung verdient die Mg90Ni8Y1,6SE0,4-Legierung. Durch die Möglichkeit einer einfachen Herstellung, ihre schnelle Reaktionskinetik, ihren hohen Wasserstoffgehalt (bis zu 5,6 Gew.%) und ihre gute Zyklenstabilität eignet sich diese Legierung zur sicheren, volumeneffizienten sowie leichtgewichtigen Speicherung von Wasserstoff. Damit kann Wasserstoff gespeichert, transportiert und als CO2-freier Sekundärenergieträger in stationären und mobilen Anwendungen eingesetzt werden.
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Diffraction Measurements of Residual Macrostress and Microstress Using X-Rays, Synchrotron and NeutronsTANAKA, Keisuke, AKINIWA, Yoshiaki 07 1900 (has links)
No description available.
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Avaliação da concentração de Cl, K e Ca na urina, hemolinfa e túbulos de Malpighi de Rhodnius prolixus usando a técnica de fluorescência de raios X por reflexão total por radiação síncrotron (SR-TXRF) / Evaluation of Cl, K and Ca concentration in urine, hemolymph and Malpighian tubules of Rhodnius prolixus using total reflection X-Ray fluorescence by synchrotron radiation (SR-TXRF)Andrea Mantuano Coelho da Silva 05 September 2012 (has links)
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior / Neste trabalho utilizou-se a técnica fluorescência de raios X usando radiação síncrotron (SR-TXRF) para estudar, quantitativamente, o transporte de cloro, potássio e cálcio na hemolinfa, urina e túbulos de Malpighi (TM) em ninfas de quinto estágio do Rhodnius prolixus (R. prolixus), considerando a excreção destes elementos em diferentes dias após o repasto sanguíneo. R. prolixus é um dos
principais vetores do Trypanosoma cruzi, agente causador da doença de Chagas. R. prolixus fornece um sistema modelo particularmente útil porque seus TMs tanto secretam quanto reabsorvem íons a taxas elevadas. Os TMs filtram a hemolinfa e secretam um líquido que é muitas vezes comparado com a urina primária em
vertebrados. Os resultados obtidos mostram que a concentração de potássio na urina é substancialmente maior do que na hemolinfa. A concentração de cloro na
hemolinfa é menor do que na urina, mas a diferença não é tão marcada como no caso do potássio. No caso do Rhodnius é razoável interpretar a elevada concentração de potássio na urina como adaptativo para o problema de excreção imediato do inseto. A concentração de cálcio nos TMs é substancialmente maior em comparação com os valores encontrados na hemolinfa e urina. Este resultado
mostra que o cálcio é retido no corpo do R. prolixus e pouco eliminado. Os resultados obtidos estão coerentes com a literatura. Avaliou-se também o efeito no transporte de Cl, K e Ca após um repasto de sangue de coelho contaminado com HgCl2 de modo a avaliar o efeito da presença deste metal tóxico no balanço iônico
nos fluidos de excreção urina e hemolinfa e também pelo principal órgão de transporte, os túbulos de Malpighi. As excreções de Cl e K pela urina são afetadas pela ingestão. Este resultado é esperado levando-se em consideração a ingestão de excesso de Cl através do HgCl2. O transporte de Cl, K e Ca na hemolinfa do Rhodnius prolixus não é afetada pela ingestão de HgCl2. Nos túbulos de Malpighi,
as altas concentrações de Ca obtidas foram comparáveis àquelas encontradas nos insetos controle. Pode-se concluir que SR-TXRF é um método muito promissor para
análises diretas, rápidas e confiáveis para a quantificação simultânea de elementos envolvidos na regulação do transporte e em todo o sistema excretor de insetos.
Além disso, o estudo do transporte e a excreção de elementos no inseto Rhodnius prolixus abrem oportunidade para a maior compreensão de efeitos da poluição em espécies de invertebrados. / In this work, we investigated changes in the concentrations of Cl, K and Ca, in 5th instar using total reflection X-ray fluorescence Rhodnius prolixus with synchrotron radiation (SR-TXRF). The elements were quantified using urine, hemolymph and Malpighian tubules samples collected on different days after a blood meal. Rhodnius prolixus is one of the most important vectors of the Trypanosoma cruzi, causative agent of Chagas? disease. R. prolixus provides a particularly useful model system because its MTs both secrete and reabsorb ions at high rates. The TMs filter hemolymph and secrete a liquid that is often compared with the primary urine in
vertebrates. The experimental results showed that the concentration of potassium in the urine is substantially greater than in the hemolymph. The concentration of
chlorine in the hemolymph is generally less than in the urine, but the difference is not so marked as in the case of potassium. In the case of Rhodnius, it is reasonable to
interpret the high concentration of potassium in the urine as adaptive to the animals? immediate excretory problem. The concentration of calcium in the TMs is substantially greater than in both the hemolymph and the urine. This result shows that that calcium is retained in the body and not eliminated. These results are in accordance with the literature. We also investigated whether dietary mercury
contamination may influence the transport of Cl, K and Ca by the hemolymph, urine and Malpighian tubules of R. prolixus fed on blood containing HgCl2. The results
suggested that dietary Hg contamination may influence the Cl and K contents during excretion of the urine. It was expected considering the large amounts of chlorine ingested by Rhodnius prolixus in its meals of blood containing HgCl2. Statistical analysis showed no significant variation in all elements contents for hemolymph
samples. The main conclusion which can be drawn from the results is that in all the insects studied calcium is deposited in Malpighian tubules. These observations point
out that the analytical approach of the SR-TXRF method can be efficiently used to measure elements involved in the transport regulation into insect Malpighian tubules
and also provides useful data concerning the biological effects of pollution on invertebrate species.
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