999 resultados para Amplification Techniques


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Computed tomography (CT) is a modality of choice for the study of the musculoskeletal system for various indications including the study of bone, calcifications, internal derangements of joints (with CT arthrography), as well as periprosthetic complications. However, CT remains intrinsically limited by the fact that it exposes patients to ionizing radiation. Scanning protocols need to be optimized to achieve diagnostic image quality at the lowest radiation dose possible. In this optimization process, the radiologist needs to be familiar with the parameters used to quantify radiation dose and image quality. CT imaging of the musculoskeletal system has certain specificities including the focus on high-contrast objects (i.e., in CT of bone or CT arthrography). These characteristics need to be taken into account when defining a strategy to optimize dose and when choosing the best combination of scanning parameters. In the first part of this review, we present the parameters used for the evaluation and quantification of radiation dose and image quality. In the second part, we discuss different strategies to optimize radiation dose and image quality at CT, with a focus on the musculoskeletal system and the use of novel iterative reconstruction techniques.

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A photonic system has been developed that enables sensitive quantitative determination of reactive oxygen species (ROS) - mainly hydrogen peroxide (H2O2) - in aerosol samples such as airborne nanoparticles and exhaled air from patients. The detection principle relies on the amplification of the absorbance under multiple scattering conditions due to optical path lengthening [1] and [2]. In this study, the presence of cellulose membrane that acts as random medium into the glass optical cell considerably improved the sensitivity of the detection based on colorimetric FOX assay (FeII/orange xylenol). Despite the loss of assay volume (cellulose occupies 75% of cell volume) the limit of detection is enhanced by one order of magnitude reaching the value of 9 nM (H2O2 equivalents). Spectral analysis is performed automatically with a periodicity of 5 to 15 s, giving rise to real-time ROS measurements. Moreover, the elution of air sample into the collection chamber via a micro-diffuser (impinger) enables quantitative determination of ROS contained in or generated from airborne samples. As proof-of-concept the photonic ROS detection system was used in the determination of both ROS generated from traffic pollution and ROS contained in the exhaled breath as lung inflammation biomarkers.

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Dixon techniques are part of the methods used to suppress the signal of fat in MRI. They present many advantages compared with other fat suppression techniques including (1) the robustness of fat signal suppression, (2) the possibility to combine these techniques with all types of sequences (gradient echo, spin echo) and different weightings (T1-, T2-, proton density-, intermediate-weighted sequences), and (3) the availability of images both with and without fat suppression from one single acquisition. These advantages have opened many applications in musculoskeletal imaging. We first review the technical aspects of Dixon techniques including their advantages and disadvantages. We then illustrate their applications for the imaging of different body parts, as well as for tumors, neuromuscular disorders, and the imaging of metallic hardware.

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Computed tomography (CT) is a modality of choice for the study of the musculoskeletal system for various indications including the study of bone, calcifications, internal derangements of joints (with CT arthrography), as well as periprosthetic complications. However, CT remains intrinsically limited by the fact that it exposes patients to ionizing radiation. Scanning protocols need to be optimized to achieve diagnostic image quality at the lowest radiation dose possible. In this optimization process, the radiologist needs to be familiar with the parameters used to quantify radiation dose and image quality. CT imaging of the musculoskeletal system has certain specificities including the focus on high-contrast objects (i.e., in CT of bone or CT arthrography). These characteristics need to be taken into account when defining a strategy to optimize dose and when choosing the best combination of scanning parameters. In the first part of this review, we present the parameters used for the evaluation and quantification of radiation dose and image quality. In the second part, we discuss different strategies to optimize radiation dose and image quality of CT, with a focus on the musculoskeletal system and the use of novel iterative reconstruction techniques.

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Chromogenic immunohistochemistry (IHC) is omnipresent in cancer diagnosis, but has also been criticized for its technical limit in quantifying the level of protein expression on tissue sections, thus potentially masking clinically relevant data. Shifting from qualitative to quantitative, immunofluorescence (IF) has recently gained attention, yet the question of how precisely IF can quantify antigen expression remains unanswered, regarding in particular its technical limitations and applicability to multiple markers. Here we introduce microfluidic precision IF, which accurately quantifies the target expression level in a continuous scale based on microfluidic IF staining of standard tissue sections and low-complexity automated image analysis. We show that the level of HER2 protein expression, as continuously quantified using microfluidic precision IF in 25 breast cancer cases, including several cases with equivocal IHC result, can predict the number of HER2 gene copies as assessed by fluorescence in situ hybridization (FISH). Finally, we demonstrate that the working principle of this technology is not restricted to HER2 but can be extended to other biomarkers. We anticipate that our method has the potential of providing automated, fast and high-quality quantitative in situ biomarker data using low-cost immunofluorescence assays, as increasingly required in the era of individually tailored cancer therapy.

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L’aprenentatge de la llengua anglesa com a llengua estrangera és una oportunitat que cada vegada més escoles de Catalunya presenten a l’etapa d’educació Infantil. La metodologia utilitzada per introduir aquesta llengua és variada en cada cas. Aquesta recerca es centra en l’estudi de l’ús de tècniques dramàtiques com a metodologia per ensenyar anglès a infantil. A partir d’un qüestionari contestat per 129 professors d’anglès de Catalunya s’ha analitzat la percepció que tenen sobre les tècniques dramàtiques i la seva utilització. Els resultats mostren una manca de coneixement general sobre la metodologia.

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Objective The present study was aimed at describing a case series where a preoperative diagnosis of intestinal complications secondary to accidentally ingested dietary foreign bodies was made by multidetector-row computed tomography (MDCT), with emphasis on complementary findings yielded by volume rendering techniques (VRT) and curved multiplanar reconstructions (MPR). Materials and Methods The authors retrospectively assessed five patients with surgically confirmed intestinal complications (perforation and /or obstruction) secondary to unsuspected ingested dietary foreign bodies, consecutively assisted in their institution between 2010 and 2012. Demographic, clinical, laboratory and radiological data were analyzed. VRT and curved MPR were subsequently performed. Results Preoperative diagnosis of intestinal complications was originally performed in all cases. In one case the presence of a foreign body was not initially identified as the causal factor, and the use of complementary techniques facilitated its retrospective identification. In all cases these tools allowed a better depiction of the entire foreign bodies on a single image section, contributing to the assessment of their morphology. Conclusion Although the use of complementary techniques has not had a direct impact on diagnostic performance in most cases of this series, they may provide a better depiction of foreign bodies' morphology on a single image section.

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Contexte: Présent sous forme physiologique chez environ 60% des nourrissons normaux de moins de quatre mois, le reflux gastro-oesophagien (RGO) n'est symptomatique que chez 10% d'entre eux. Il est également plus fréquent chez les enfants atteints de troubles neurologiques quelque soit leur âge. Non traité, il peut avoir des conséquences graves (oesophagite, sténose peptique, endobrachyoesophage (Barrett) puis adénocarcinome de l'oesophage). Il s'agit donc d'un problème qu'il faut savoir détecter et traiter précocement. Les signes et symptômes du RGO sont multiples et varient en fonction de l'âge. Ils ne se limitent pas au seul vomissement. Le traitement initial du RGO chez l'enfant est médical. En cas d'échec de celui-ci ou dans certaines indications (comme les RGO récidivants, les malformations congénitales, les anomalies morphologiques ou les pathologies neurologiques) un traitement chirurgical est nécessaire. L'évolution des traitements conservateurs et des techniques chirurgicales lors de ces dernières années en font un bon sujet pour une étude rétrospective. Objectif: Le but de cette étude est de mettre en évidence dans une population d'enfants ayant bénéficié d'une cure chirurgicale anti-reflux la fréquence relative des symptômes selon la pathologie initiale de l'enfant, puis de préciser le choix de traitement et sa durée. Nous analyserons également les risques d'échec qui s'y rapportent. Ces conclusions devraient nous permettre de proposer un algorithme décisionnel de prise en charge du RGO de l'enfant en pré et post-opératoire. Méthodologie: Étude rétrospective sur 9 ans se basant sur les dossiers médicaux-chirurgicaux de 132 enfants opérés d'un reflux gastro-oesophagien dans le Service de Chirurgie Pédiatrique du Centre Hospitalier Universitaire Vaudois (CHUV) par le Professeur Olivier Reinberg et son équipe entre le 1er janvier 2003 et le 31 décembre 2012. Résultats: Sur les 132 enfants, 93 ont bénéficié d'une fundoplicature selon Toupet, 34 selon Nissen et 5 selon Dor. 57% des enfants présentant un déficit neurologique ont été opérés selon la technique de Nissen contre 7% des enfants "sains". Les taux de démontage et de récidive sont respectivement 5.4% et 3.5 % pour la technique selon Toupet et 2.9% et 0% pour la technique de Nissen. Le taux de démontage global de la fundoplicature est de 4.6% (N=6) Conclusions: La fundoplicature est une méthode de choix pour les enfants chez qui tous les autres traitements ont échoué ou chez qui la présence concomitante du RGO et des comorbidités est délétère à une croissance harmonieuse. Grâce à la chirurgie, la qualité de vie d'au moins 95% des enfants est grandement améliorée après la disparition de symptômes quotidiens et qui peuvent donner lieu à des complications graves.