4,741 research outputs found

    Inner Containment and Delinquency

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    Inner Containment and Delinquency

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    Relation Between Gender, Etiology and Survival in Patients With Symptomatic Heart Failure

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    OBJECTIVES: This study investigated the relation between gender, etiology and survival in patients with symptomatic heart failure. BACKGROUND: Previous work provides conflicting results concerning the relation between gender, clinical characteristics and survival in patients with heart failure. METHODS: We examined the relation of these factors in 557 patients (380 men, 177 women) who had symptomatic heart failure, predominantly nonischemic in origin (68%) and typically associated with severe left ventricular dysfunction. RESULTS: Follow-up data were available in 99% of patients (mean follow-up period 2.4 years, range 1 day to 10 years) after study entry, and 201 patients reached the primary study end point of all-cause mortality. By life-table analysis, women were significantly less likely to reach this primary end point than men (p < 0.001). A significant association was found between female gender and better survival (p < 0.001), which depended on the primary etiology of heart failure (p = 0.008 for the gender-etiology interaction) but not on baseline ventricular function. Women survived longer than men when heart failure was due to nonischemic causes (men vs. women: relative risk [RR] 2.36, 95% confidence interval [CI] 1.59 to 3.51, p < 0.001). In contrast, outcome appeared similar when heart failure was due to ischemic heart disease (men vs. women: RR 0.85, 95% CI 0.45 to 1.61, p = 0.651). CONCLUSIONS: Women with heart failure due to nonischemic causes had significantly better survival than men with or without coronary disease as their primary cause of heart failure

    A Helicity-Based Method to Infer the CME Magnetic Field Magnitude in Sun and Geospace: Generalization and Extension to Sun-Like and M-Dwarf Stars and Implications for Exoplanet Habitability

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    Patsourakos et al. (Astrophys. J. 817, 14, 2016) and Patsourakos and Georgoulis (Astron. Astrophys. 595, A121, 2016) introduced a method to infer the axial magnetic field in flux-rope coronal mass ejections (CMEs) in the solar corona and farther away in the interplanetary medium. The method, based on the conservation principle of magnetic helicity, uses the relative magnetic helicity of the solar source region as input estimates, along with the radius and length of the corresponding CME flux rope. The method was initially applied to cylindrical force-free flux ropes, with encouraging results. We hereby extend our framework along two distinct lines. First, we generalize our formalism to several possible flux-rope configurations (linear and nonlinear force-free, non-force-free, spheromak, and torus) to investigate the dependence of the resulting CME axial magnetic field on input parameters and the employed flux-rope configuration. Second, we generalize our framework to both Sun-like and active M-dwarf stars hosting superflares. In a qualitative sense, we find that Earth may not experience severe atmosphere-eroding magnetospheric compression even for eruptive solar superflares with energies ~ 10^4 times higher than those of the largest Geostationary Operational Environmental Satellite (GOES) X-class flares currently observed. In addition, the two recently discovered exoplanets with the highest Earth-similarity index, Kepler 438b and Proxima b, seem to lie in the prohibitive zone of atmospheric erosion due to interplanetary CMEs (ICMEs), except when they possess planetary magnetic fields that are much higher than that of Earth.Comment: http://adsabs.harvard.edu/abs/2017SoPh..292...89
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