1,721,237 research outputs found
Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps
Fischer, Barbara M., Schatz, Heinrich (2013): Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps. Zootaxa 3626 (4): 429-454, DOI: 10.11646/zootaxa.3626.4.
FIGURE 7 in Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps
FIGURE 7. Mycobates sp. Dorsal aspect.Published as part of Fischer, Barbara M. & Schatz, Heinrich, 2013, Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps, pp. 429-454 in Zootaxa 3626 (4) on page 449, DOI: 10.11646/zootaxa.3626.4.2, http://zenodo.org/record/21633
Peloppiidae Balogh 1943
Peloppiidae Balogh, 1943 Ceratoppia bipilis (Hermann, 1804) Distribution: Holarctic, Central America Habitat: preferably in forest soils, also arboricolous Obergurgl area: pine forest at 2050 m (Zirbenwald)Published as part of Fischer, Barbara M. & Schatz, Heinrich, 2013, Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps, pp. 429-454 in Zootaxa 3626 (4) on page 438, DOI: 10.11646/zootaxa.3626.4.2, http://zenodo.org/record/21633
Quadroppiidae Balogh 1983
Quadroppiidae Balogh, 1983 Quadroppia quadricarinata (Michael, 1885) Distribution: Holarctic, Oriental region, Madagascar Habitat: forest soils, also arboricolous Obergurgl area: pine forest at 2050 m (Zirbenwald); previous studies: 1980 m (hay meadow), pine forest at 2050 m (Zirbenwald)Published as part of Fischer, Barbara M. & Schatz, Heinrich, 2013, Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps, pp. 429-454 in Zootaxa 3626 (4) on page 441, DOI: 10.11646/zootaxa.3626.4.2, http://zenodo.org/record/21633
FIGURE 1 in Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps
FIGURE 1. Species richness, abundance and Shannon diversity-index (H'). LR (Liebener Rippe, Androsacetum alpinae, 2900 m a.s.l.), HM (Hohe Mut, Caricetum curvulae, 2600 m a.s.l.), SK (Schönwieskopf, Nardetum, 2300 m a.s.l.), ZW (Zirbenwald, pine forest, 2050 m a.s.l.).Published as part of Fischer, Barbara M. & Schatz, Heinrich, 2013, Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps, pp. 429-454 in Zootaxa 3626 (4) on page 433, DOI: 10.11646/zootaxa.3626.4.2, http://zenodo.org/record/21633
Caleremaeidae Grandjean 1965
Caleremaeidae Grandjean, 1965 Caleremaeus monilipes (Michael, 1882) Distribution: Europe, North Africa, Makaronesia, Caucasia Habitat: forest soils, also arboricolous Obergurgl area: pine forest at 2050 m (Zirbenwald), Nardetum at 2300 m (Schönwieskopf); previous studies: pine forest at 2050 m (Zirbenwald), 2100–2190 m (dwarf shrub community), 2250–2340 m (alpine meadows with lichen communities), 2500 m (scree slope)Published as part of Fischer, Barbara M. & Schatz, Heinrich, 2013, Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps, pp. 429-454 in Zootaxa 3626 (4) on page 437, DOI: 10.11646/zootaxa.3626.4.2, http://zenodo.org/record/21633
Hermanniidae Sellnick 1928
Hermanniidae Sellnick, 1928 Hermannia gibba (C.L. Koch, 1839) Distribution: Holarctic Habitat: common in forest litter, moss and bogs Obergurgl area: pine forest at 2050 m (Zirbenwald); previous studies: 1960–1980 m (hay meadow), pine forest at 2050 m (Zirbenwald), 2100 m (dwarf shrub community), 2250 m (alpine meadows with lichen communities)Published as part of Fischer, Barbara M. & Schatz, Heinrich, 2013, Biodiversity of oribatid mites (Acari: Oribatida) along an altitudinal gradient in the Central Alps, pp. 429-454 in Zootaxa 3626 (4) on page 436, DOI: 10.11646/zootaxa.3626.4.2, http://zenodo.org/record/21633
Die Gemeinsame Normdatei (GND) - The Integrated Authority File in Text+ as semantic link to DARIAH-EU
Die Gemeinsame Normdatei (GND) - The Integrated Authority File in Text+ as semantic link to DARIAH-EU.
Among other goals, the German national research data infrastructure (NFDI) aims to provide an overarching knowledge graph across the domains and subjects. In the field of humanities, arts and culture the two consortia NFDI4Culture and Text+ have chosen the Integrated Authority File (GND) as an initial backbone structure. Within Text+, the NFDI consortium for the language- and text-based research data, a major task is devoted to initiate a GND- Agency revolving around the Integrated Authority File. Inevitably, this task takes interoperability into account, for instance towards Wikidata or VIAF or other approaches in use within DARIAH-EU or EOSC. Abstract. The paper introduces the GND and the related work in Text+ and the community (Kett et al. 2022). Addressing both its character as a data hub to a controlled vocabulary and as a governance structure granting the reliability of its data quality. It will also provide a short overview of how the NFDI consortium Text+, query the needs and requests of their specific communities on the GND, transfer these into workflows and plan to become active contributors to the GND (Fischer, Buddenbohm 2022). The GND community is best described as a community-driven effort, with the German National Library (DNB) as primus inter pares, taking care of the integrity of the GND and providing substantial resources in terms of infrastructure, teaching material, and coordination (Fischer et al. 2021 and Fischer 2021). This community-driven approach also applies for the Text+ approach towards the Integrated Authority File, which moves the cooperation with other NFDI consortia - such as NFDI4Culture, NFDI4Memory, NFDI4Objects - and other agencies into the centre (Buddenbohm et al. 2022). Coordination is a best practice for the requirements dialogue with the community and the teaching and education efforts. Regarding authority files: Scientists will describe their world or topic in structured categories. These categories are shared by a smaller or bigger community. They are more or less regulated. Classification is the second step in any scientific workflow after the first step of description. The commonly shared entity groups lay the base to construct a network of reference knots. Knots that link diverse information from different sources and allow the flow of knowledge to..
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