59 resultados para Hyperdynamic circulation


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Au coeur même du premier paquet de sept accords bilatéraux conclu entre la Suisse et la Communauté européenne le 21 juin 1999, l'Accord sur la libre circulation des personnes (ALCP) vise à garantir la libre circulation et à faciliter la prestation de services sur le territoire des parties contractantes. Or la réalisation de ces objectifs dépend avant tout de la mise en oeuvre effective de l'interdiction de discrimination en raison de la nationalité consacrée par l'ALCP, véritable clé de voûte de l'Accord. Le présent ouvrage s'attache, dans un premier temps, à l'analyse du principe de libre circulation et à l'examen du fonctionnement de l'ALCP - examen portant notamment sur le rôle joué par la jurisprudence de la Cour de justice des Communautés européennes dans le cadre de l'interprétation de cet Accord (Partie I). Dans un second temps, cet ouvrage se penche sur la question centrale de l'interdiction de discrimination en raison de la nationalité (Partie II). Pour ce faire, il propose tout d'abord une définition de la notion de discrimination elle-même et détermine ensuite le champ d'application matériel et personnel des principales dispositions de l'ALCP interdisant les discriminations. Dans ce cadre, une attention toute particulière est accordée à la question de la potentielle portée horizontale de ces dispositions. Ensuite, l'ouvrage procède à une analyse complète des principes et dispositions susceptibles de limiter la portée de cette interdiction,avant de conclure par un examen détaillé des conséquences administratives et civiles induites par la présence d'un cas de discrimination effectif.

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AIM: The prediction of return of spontaneous circulation (ROSC) during resuscitation of patients suffering of cardiac arrest (CA) is particularly challenging. Regional cerebral oxygen saturation (rSO2) monitoring through near-infrared spectrometry is feasible during CA and could provide guidance during resuscitation. METHODS: We conducted a systematic review and meta-analysis on the value of rSO2 in predicting ROSC both after in-hospital (IH) or out-of-hospital (OH) CA. Our search included MEDLINE (PubMed) and EMBASE, from inception until April 4th, 2015. We included studies reporting values of rSO2 at the beginning of and/or during resuscitation, according to the achievement of ROSC. RESULTS: A total of nine studies with 315 patients (119 achieving ROSC, 37.7%) were included in the meta-analysis. The majority of those patients had an OHCA (n=225, 71.5%; IHCA: n=90, 28.5%). There was a significant association between higher values of rSO2 and ROSC, both in the overall calculation (standardized mean difference, SMD -1.03; 95%CI -1.39,-0.67; p<0.001), and in the subgroups analyses (rSO2 at the beginning of resuscitation: SMD -0.79; 95%CI -1.29,-0.30; p=0.002; averaged rSO2 value during resuscitation: SMD -1.28; 95%CI -1.74,-0.83; p<0.001). CONCLUSIONS: Higher initial and average regional cerebral oxygen saturation values are both associated with greater chances of achieving ROSC in patients suffering of CA. A note of caution should be made in interpreting these results due to the small number of patients and the heterogeneity in study design: larger studies are needed to clinically validate cut-offs for guiding cardiopulmonary resuscitation.

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Hypoxia, a condition of insufficient oxygen availability to support metabolism, occurs when the vascular supply is interrupted, as in stroke. The identification of the hypoxic and viable tissue in stroke as compared with irreversible lesions (necrosis) has relevant implications for the treatment of ischemic stroke. Traditionally, imaging by positron emission tomography (PET), using 15O-based radiotracers, allowed the measurement of perfusion and oxygen extraction in stroke, providing important insights in its pathophysiology. However, these multitracer evaluations are of limited applicability in clinical settings. More recently, specific tracers have been developed, which accumulate with an inverse relationship to oxygen concentration and thus allow visualizing the hypoxic tissue non invasively. These belong to two main groups: nitroimidazoles, and among these the 18F-Fluoroimidazole (18F-FMISO) is the most widely used, and the copper-based tracers, represented mainly by Cu-ATSM. While these tracers have been at first developed and tested in order to image hypoxia in tumors, they have also shown promising results in stroke models and preliminary clinical studies in patients with cardiovascular disorders, allowing the detection of hypoxic tissue and the prediction of the extent of subsequent ischemia and clinical outcome. These tracers have therefore the potential to select an appropriate subgroup of patients who could benefit from a hypoxia-directed treatment and provide prognosis relevant imaging. The molecular imaging of hypoxia made important progress over the last decade and has a potential for integration into the diagnostic and therapeutic workup of patients with ischemic stroke.