100 resultados para Solution techniques

em Université de Lausanne, Switzerland


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The aim of this study is to perform a thorough comparison of quantitative susceptibility mapping (QSM) techniques and their dependence on the assumptions made. The compared methodologies were: two iterative single orientation methodologies minimizing the l2, l1TV norm of the prior knowledge of the edges of the object, one over-determined multiple orientation method (COSMOS) and anewly proposed modulated closed-form solution (MCF). The performance of these methods was compared using a numerical phantom and in-vivo high resolution (0.65mm isotropic) brain data acquired at 7T using a new coil combination method. For all QSM methods, the relevant regularization and prior-knowledge parameters were systematically changed in order to evaluate the optimal reconstruction in the presence and absence of a ground truth. Additionally, the QSM contrast was compared to conventional gradient recalled echo (GRE) magnitude and R2* maps obtained from the same dataset. The QSM reconstruction results of the single orientation methods show comparable performance. The MCF method has the highest correlation (corrMCF=0.95, r(2)MCF =0.97) with the state of the art method (COSMOS) with additional advantage of extreme fast computation time. The l-curve method gave the visually most satisfactory balance between reduction of streaking artifacts and over-regularization with the latter being overemphasized when the using the COSMOS susceptibility maps as ground-truth. R2* and susceptibility maps, when calculated from the same datasets, although based on distinct features of the data, have a comparable ability to distinguish deep gray matter structures.

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A new and original reagent based on the use of highly fluorescent cadmium telluride (CdTe) quantum dots (QDs) in aqueous solution is proposed to detect weak fingermarks in blood on non-porous surfaces. To assess the efficiency of this approach, comparisons were performed with one of the most efficient blood reagents on non-porous surfaces, Acid Yellow 7 (AY7). To this end, four non-porous surfaces were studied, i.e. glass, transparent polypropylene, black polyethylene, and aluminium foil. To evaluate the sensitivity of both reagents, sets of depleted fingermarks were prepared, using the same finger, initially soaked with blood, which was then successively applied on the same surface without recharging it with blood or latent secretions. The successive marks were then cut in halves and the halves treated separately with each reagent. The results showed that QDs were equally efficient to AY7 on glass, polyethylene and polypropylene surfaces, and were superior to AY7 on aluminium. The use of QDs in new, sensitive and highly efficient latent and blood mark detection techniques appears highly promising. Health and safety issues related to the use of cadmium are also discussed. It is suggested that applying QDs in aqueous solution (and not as a dry dusting powder) considerably lowers the toxicity risks.

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A generic optical biosensing strategy was developed that relies on the absorbance enhancement phenomenon occurring in a multiple scattering matrix. Experimentally, inserts made of glass fiber membrane were placed into microplate wells in order to significantly lengthen the trajectory of the incident light through the sample and therefore increase the corresponding absorbance. Enhancement factor was calculated by comparing the absorbance values measured for a given amount of dye with and without the absorbance-enhancing inserts in the wells. Moreover, the dilution of dye in solutions with different refractive indices (RI) clearly revealed that the enhancement factor increased with the ΔRI between the membrane and the surrounding medium, reaching a maximum value (EF>25) when the membranes were dried. On this basis, two H2O2-biosensing systems were developed based on the biofunctionalization of the glass fiber inserts either with cytochrome c or horseradish peroxidase (HRP) and the analytical performances were systematically compared with the corresponding bioassay in solution. The efficiency of the absorbance-enhancement approach was particularly clear in the case of the cytochrome c-based biosensor with a sensitivity gain of 40 folds and wider dynamic range. Therefore, the developed strategy represents a promising way to convert standard colorimetric bioassays into optical biosensors with improved sensitivity.

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As part of a project to use the long-lived (T(1/2)=1200a) (166m)Ho as reference source in its reference ionisation chamber, IRA standardised a commercially acquired solution of this nuclide using the 4pibeta-gamma coincidence and 4pigamma (NaI) methods. The (166m)Ho solution supplied by Isotope Product Laboratories was measured to have about 5% Europium impurities (3% (154)Eu, 0.94% (152)Eu and 0.9% (155)Eu). Holmium had therefore to be separated from europium, and this was carried out by means of ion-exchange chromatography. The holmium fractions were collected without europium contamination: 162h long HPGe gamma measurements indicated no europium impurity (detection limits of 0.01% for (152)Eu and (154)Eu, and 0.03% for (155)Eu). The primary measurement of the purified (166m)Ho solution with the 4pi (PC) beta-gamma coincidence technique was carried out at three gamma energy settings: a window around the 184.4keV peak and gamma thresholds at 121.8 and 637.3keV. The results show very good self-consistency, and the activity concentration of the solution was evaluated to be 45.640+/-0.098kBq/g (0.21% with k=1). The activity concentration of this solution was also measured by integral counting with a well-type 5''x5'' NaI(Tl) detector and efficiencies computed by Monte Carlo simulations using the GEANT code. These measurements were mutually consistent, while the resulting weighted average of the 4pi NaI(Tl) method was found to agree within 0.15% with the result of the 4pibeta-gamma coincidence technique. An ampoule of this solution and the measured value of the concentration were submitted to the BIPM as a contribution to the Système International de Référence.

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Reconstructive surgery takes an important place in breast cancer treatment. Immediate breast reconstruction is performed during the same operation as mastectomy. It is contraindicated following radiotherapy. Reconstruction performed after mastectomy is called differed breast reconstruction. It is completed 6 months after chemotherapy and 1 year after radiotherapy. Prosthetic breast reconstruction is indicated when tissues are of good qualities and breast are small. Autologous reconstruction is performed in case of radiotherapy or large breast. After breast reconstruction, imperfections can be corrected with autologous fat injection.

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Forensic scientists have long detected the presence of drugs and their metabolites in biological materials using body fluids such as urine, blood and/or other biological liquids or tissues. For doping analysis, only urine has so far been collected. In recent years, remarkable advances in sensitive analytical techniques have encouraged the analysis of drugs in unconventional biological samples such as hair, saliva and sweat. These samples are easily collected, although drug levels are often lower than the corresponding levels in urine or blood. This chapter reviews recent studies in the detection of doping agents in hair, saliva and sweat. Sampling, analytical procedures and interpretation of the results are discussed in comparison with those obtained from urine and blood samples.

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http://resfranco.cochrane.org/sites/resfranco.cochrane.org/files/uploads/Arrettabac2009.pdf

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Le travail policier et l'enquête judiciaire nécessitent de prendre de nombreuses décisions : choisir quelle trace analyser, mettre sous surveillance ou en détention un suspect, sont autant de décisions qui sont prises quotidiennement par les acteurs du système judiciaire. Ces décisions font l'objet de pesées d'intérêts qui se fondent sur l'analyse de l'information accessible. C'est le rôle de l'analyse criminelle de mettre en perspective l'information colligée pour la rendre intelligible aux décideurs compétents. L'usage de représentations graphiques est notamment recommandé pour soutenir l'analyse et la communication de ces informations.Des techniques de visualisation relationnelle sont notamment exploitées dans les enquêtes judiciaires afin de faciliter le traitement d'affaires d'envergure. Les éléments pertinents de l'enquête sont représentés sous la forme de schémas décrivant les relations entre les événements et les entités d'intérêts (tel que des personnes, des objets et des traces). Les exploitations classiques de ces techniques qui s'apparentent à des graphes, sont par exemple : la représentation de réseaux criminels, de trafics de marchandises, de chronologies d'événements, ainsi que la visualisation de relations téléphoniques et financières. Dans ce contexte, la visualisation soutient un nombre importants d'objectifs, tels qu'analyser les traces et les informations collectées, évaluer a posteriori une investigation, aider à qualifier les infractions, faciliter l'appréhension d'un dossier, voire soutenir une argumentation lors du procès.La pratique intègre des outils logiciels simples qui produisent des graphiques élégants et souvent percutants. Leur utilisation semble néanmoins soulever des difficultés. Cette recherche tend à montrer qu'il existe des disparités étonnantes lors de l'exploitation de ces techniques. Des biais de raisonnement et de perception peuvent être induits, allant jusqu'à provoquer des décisions aux conséquences parfois désastreuses. Ce constat révèle la nécessité de consolider les méthodes pratiquées.Pour mettre en évidence ces difficultés, des évaluations ont été effectuées avec des praticiens et des étudiants. Elles ont permis d'établir une image empirique de l'étendue des variations de conception et d'interprétation des représentations, ainsi que de leurs impacts sur la prise de décision. La nature et la diversité des concepts à représenter, l'absence d'un consensus émergeant sur la manière de représenter les données, la diversité des solutions visuelles envisageables, les contraintes imposées par les outils exploités et l'absence d'une formalisation claire du langage, sont autant de causes supposées des difficultés.Au cours des vingt dernières années, plusieurs axes de développement ont été proposés pour traiter les difficultés observées, tels que l'amélioration des automatismes facilitant la conception d'une représentation, l'exploitation des techniques de réseaux sociaux, l'automatisation de l'identification et de l'extraction des entités dans du texte non-structuré et la définition de langages formels. Cette recherche propose une approche parallèle fondée sur une exploitation adaptée de structures de graphe et de propriétés visuelles pour optimiser la représentation en fonction des objectifs définis et de la nature des informations à représenter.Des solutions ont été recherchées selon plusieurs axes. Des recommandations générales, issues de diverses communautés de recherche liées à la visualisation, ont été recherchées afin de proposer une démarche générale de conception des schémas relationnels. Par ailleurs, le développement d'un catalogue de bonnes pratiques formalisées sous la forme de patterns de visualisation a été amorcé. Chaque pattern décrit une solution particulière pour un problème d'analyse récurrent, tel que l'analyse d'une série de cambriolages. Finalement, l'impact sur les outils de la méthodologie proposée est discuté en regard des limites qu'ils imposent. Un prototype de visualisation multidimensionnel a été élaboré.Cette recherche met en évidence les difficultés rencontrées lors de l'exploitation de représentations graphiques pour soutenir le processus de l'enquête judiciaire et propose des éléments de méthode et des innovations techniques utiles tant pour l'enseignement de la discipline que pour sa pratique.