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Biodiversity continues to decline in the face of increasing anthropogenic pressures such as habitat destruction, exploitation, pollution and introduction of alien species. Existing global databases of species’ threat status or population time series are dominated by charismatic species. The collation of datasets with broad taxonomic and biogeographic extents, and that support computation of a range of biodiversity indicators, is necessary to enable better understanding of historical declines and to project – and avert – future declines. We describe and assess a new database of more than 1.6 million samples from 78 countries representing over 28,000 species, collated from existing spatial comparisons of local-scale biodiversity exposed to different intensities and types of anthropogenic pressures, from terrestrial sites around the world. The database contains measurements taken in 208 (of 814) ecoregions, 13 (of 14) biomes, 25 (of 35) biodiversity hotspots and 16 (of 17) megadiverse countries. The database contains more than 1% of the total number of all species described, and more than 1% of the described species within many taxonomic groups – including flowering plants, gymnosperms, birds, mammals, reptiles, amphibians, beetles, lepidopterans and hymenopterans. The dataset, which is still being added to, is therefore already considerably larger and more representative than those used by previous quantitative models of biodiversity trends and responses. The database is being assembled as part of the PREDICTS project (Projecting Responses of Ecological Diversity In Changing Terrestrial Systems – www.predicts.org.uk). We make site-level summary data available alongside this article. The full database will be publicly available in 2015.
EUSOBI and 30 national breast radiology bodies support mammography for population-based screening, demonstrated to reduce breast cancer (BC) mortality and treatment impact. According to the International Agency for Research on Cancer, the reduction in mortality is 40 % for women aged 50–69 years taking up the invitation while the probability of false-positive needle biopsy is <1 % per round and overdiagnosis is only 1–10 % for a 20-year screening. Mortality reduction was also observed for the age groups 40–49 years and 70–74 years, although with “limited evidence”. Thus, we firstly recommend biennial screening mammography for average-risk women aged 50–69 years; extension up to 73 or 75 years, biennially, is a second priority, from 40–45 to 49 years, annually, a third priority. Screening with thermography or other optical tools as alternatives to mammography is discouraged. Preference should be given to population screening programmes on a territorial basis, with double reading. Adoption of digital mammography (not film-screen or phosphor-plate computer radiography) is a priority, which also improves sensitivity in dense breasts. Radiologists qualified as screening readers should be involved in programmes. Digital breast tomosynthesis is also set to become “routine mammography” in the screening setting in the next future. Dedicated pathways for high-risk women offering breast MRI according to national or international guidelines and recommendations are encouraged.
Kurzfassung Vortrag: Fächerübergreifende Lehre und verpflichtende Fortbildung (CME) für Ärzte erfordern innovative Lernmethoden. Eine Lösung wird teilweise in der Nutzung elektronischer Medien gesehen. Unklar ist jedoch, wie konkret eine Umsetzung in der Aus-, Fort- und Weiterbildung im Fach Allgemeinmedizin bisher erfolgte, welche Chancen und Möglichkeiten es gibt und wie die weitere Entwicklung aussehen kann. Um einen Überblick über die aktuellen E-Learning-Aktivitäten zu erhalten, formierte sich eine universitäts- und bundesländerübergreifende Initiative. In drei Phasen soll die Grundlage für die Entwicklung einer Strategie für die effektive Nutzung elektronischer Lehr- und Lernmedien für das Fach Allgemeinmedizin geschaffen werden: Phase 1 - Nationales Expertentreffen (Juli 2005 in Frankfurt): Diskussion von Erfahrungen, Problemen und Möglichkeiten des Einsatzes elektronischer Medien in der Allgemeinmedizin. Phase 2 - Gründung eines Netzwerks: Zusammenarbeit, Koordination und gegenseitige Unterstützung bei der Entwicklung von E-Learning-Modulen. Phase 3 - Evaluation von E-Learning in der Allgemeinmedizin: systematische qualitative und quantitative Untersuchungen. Im Rahmen eines Workshops sollen die Erfahrungen aus dem Expertentreffen mit Lehrenden und Fortbildenden aus anderen Fachbereichen diskutiert werden. Kooperationen über die Allgemeinmedizin hinaus können weitere Synergien schaffen. Der Workshop dient dem Austausch über Chancen und Limitationen entsprechender Angebote.