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Figure 8 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 8. Late Albian to Turonian agglutinated foraminifers from the Lower Saxonian Cretaceous; scale bars are 100 µm. (a) Tritaxia gaultina, Wunstorf Wu2010/1, 19.05 m. (b) Tritaxia tricarinata, Wunstorf Wu2010/1, 19.05 m. (c) Tritaxia macfadyeni, Wunstorf Wu2010/1, 34.10 m. (d–e) Eggerellina brevis, Baddeckenstedt section, 19.30 m. (f) Eggerellina mariae, Wunstorf Wu2010/3, 30.15 m. (g) Flourensina intermedia, Wunstorf Wu2010/1, 54.80 m. (h) Gaudryina sp. 1, Baddeckenstedt section, 39.00 m. (i) Verneuilinoides sp., Wunstorf Wu2010/4, 48.95 m. (j) Vialovella frankei, Wunstorf Wu2010/1, 15.20 m. (k) Arenobulimina bochumensis, Baddeckenstedt section, 9.00 m. (l) Arenobulimina preslii, Wunstorf Wu2010/4, 43.30 m. (m) Arenobulimina truncata, Wunstorf Wu2010/4, 43.30 m. (n–o) Ataxophragmium depressum, Wunstorf Wu2010/4, 58.60 m. (p) Hagenowella elevata, Wunstorf Wu2010/4, 58.60 m. (q) Voloshinoides advenus, Wunstorf Wu2010/1, 29.25 m. (r) Voloshinoides anglicus, Baddeckenstedt section, 7.00 m. (s) Pseudotextulariella cretosa, Wunstorf Wu2010/1, 19.05 m. (t) Kadriayina gradata, Wunstorf Wu2010/3, 66.05 m. (u) Marssonella ozawai, Wunstorf Wu2010/1, 15.20 m.

opencc-by-4.0Dec 2021View details →
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Figure 3 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 3. Schematic locality details of the study area of Wunstorf and position of the cores: green (Voigt et al., 2008b), blue (Erbacher et al., 2020), and red (this study). Modified from Seibertz (2013: Fig. 5).

opencc-by-4.0Dec 2021View details →
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Figure 9 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 9. Columnar section of the Albian to Cenomanian part of the Wunstorf core Wu 2010/1 with agglutinated foraminiferal morphogroups, Fisher alpha index, species richness, and foraminiferal events (acmes) indicated by arrows. For log legend, see Fig. 3.

opencc-by-4.0Dec 2021View details →
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Figure 1 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 1. Paleogeographical map of Europe and the study area. (A) Paleogeography of Europe during the Cenomanian, modified after Philip and Floquet (2000). (B) Paleogeography of southern Lower Saxony during the early Cenomanian, modified from Wilmsen et al. (2021), base map from Hiss (1995).

opencc-by-4.0Dec 2021View details →
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Figure 7 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 7. Late Albian to Turonian agglutinated foraminifers from the Lower Saxonian Cretaceous; scale bars are 100 µm. (a) Reophax subfusiformis, Wunstorf Wu2010/1, 54.00 m. (b) Pseudonodosinella nodulosa, Wunstorf Wu2010/4, 48.20 m. (c) Pseudonodosinella parvula, Wunstorf Wu2010/4, 48.20 m. (d) Pseudonodosinella troyeri, Baddeckenstedt section, 39.00 m. (e) Haplophragmoides suborbicularis, Wunstorf Wu2010/3, 70.50 m. (f) Haplophragmoides walteri, Wunstorf Wu2010/4, 48.95 m. (g) Ammobaculites agglutinans, Söhlde section, 31.00 m. (h) Ammobaculites wenonahae, Wunstorf Wu2010/1, 19.05 m. (i) Bulbobaculites problematicus, Wunstorf Wu2010/1, 24.75 m. (j) Spiroplectammina navarroana, Wunstorf Wu2010/4, 48.20 m. (k) Spiroplectinella cretosa, Baddeckenstedt section, 2.00 m. (l) Bicazammina lagenaria, Söhlde section, 24.00 m. (m) Parvigenerina sp. 3, Wunstorf Wu2010/4, 48.95 m. (n) Eobigenerina kuhnti, Söhlde section, 9.50 m. (o) Eobigenerina variabilis, Söhlde section, 1.50 m. (p) Rectogerochammina eugubina, Wunstorf Wu2010/4, 48.95 m. (q) Gerochammina stanislawi, Wunstorf Wu2010/4, 53.15 m. (r) Plectina cenomana, Wunstorf Wu2010/3, 45.00 m. (s) Plectina mariae, Wunstorf Wu2010/3, 84.00 m.

opencc-by-4.0Dec 2021View details →
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Figure 4 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 4. Correlated columnar sections of the Wunstorf cores Wu 2010/1 and Wu 2010/3 and their carbon isotope patterns. On the right correlation to the carbon isotopes of the Wunstorf Wu2011/8 core of Erbacher et al. (2020: Fig. 3) and to the Anderten-1 core of Bornemann et al. (2017: Fig. 3). Brown bar: correlation of a sequence boundary based on the isotopic pattern; green bar: correlation based on a bio-event; grey bar: correlation based on a lithoevent.

opencc-by-4.0Dec 2021View details →
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Figure 2 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 2. Chronostratigraphy, selected events, and depositional sequences as well as interpreted sea level curve of the Lower Saxony Cretaceous. Depositional sequences, associated sequence boundaries, and sea level curve are from Janetschke et al. (2015). Age of stage boundaries are from Gradstein et al. (2020).

opencc-by-4.0Dec 2021View details →
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Figure 13 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 13. Columnar section of the Cenomanian–Turonian boundary and the Lower to Upper Turonian part of the Söhlde–Loges quarry with agglutinated foraminiferal morphogroups, Fisher alpha index, species richness, and foraminiferal events (acmes) indicated by arrows. For log legend, see Fig. 4; log redrawn after Wiese (2009: Fig. 6).

opencc-by-4.0Dec 2021View details →
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Figure 10 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 10. Columnar section of the Lower Cenomanian part of the Wunstorf core Wu 2010/3 with agglutinated foraminiferal morphogroups, Fisher alpha index, species richness, and foraminiferal events (acmes) indicated by arrows. For log legend, see Fig. 3.

opencc-by-4.0Dec 2021View details →
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Figure 14 in Albian to Turonian agglutinated foraminiferal assemblages of the Lower Saxony Cretaceous sub-basins - implications for sequence stratigraphy and paleoenvironmental interpretation

Figure 14. Albian, Cenomanian, and Turonian FOs and LOs (first – and last occurrences) of selected agglutinated foraminifers from Lower Saxony (Wunstorf, Baddeckenstedt, Söhlde), the Münsterland (Frieg and Kemper, 1989) and the English Chalk (Hart et al., 1989), and the DWAF (deep-water agglutinated foraminifera) zonation of the western Tethys (Coccioni et al., 1995; Kaminski et al., 2011).

opencc-by-4.0Dec 2021View details →
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Text-fig. 5. a – Quercus lonchitis UNGER, No. Sf. 8253, nat. size; b – Betula alboides ENGELHARDT emend., holotype, Sf. 8264, (re-illustrated from Engelhardt 1870, pl. 3, fig. 23); c–e – Carpinus roscheri WALTHER et KVAČEK sp. n., c – Sf 1630, d – holotype, Sf. 8408 (re-illustrated from Walther 1964, as Carpinus grandis UNGER), e – Sf. 4740:1, all nat. size. in Early Oligocene Flora Of Seifhennersdorf (Saxony)

Text-fig. 5. a – Quercus lonchitis UNGER, No. Sf. 8253, nat. size; b – Betula alboides ENGELHARDT emend., holotype, Sf. 8264, (re-illustrated from Engelhardt 1870, pl. 3, fig. 23); c–e – Carpinus roscheri WALTHER et KVAČEK sp. n., c – Sf 1630, d – holotype, Sf. 8408 (re-illustrated from Walther 1964, as Carpinus grandis UNGER), e – Sf. 4740:1, all nat. size.

opencc-by-4.0Dec 2007View details →
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Text-fig. 1. Geographical position of the locality Seifhennersdorf and other sites discussed in comparison. in Early Oligocene Flora Of Seifhennersdorf (Saxony)

Text-fig. 1. Geographical position of the locality Seifhennersdorf and other sites discussed in comparison.

opencc-by-4.0Dec 2007View details →
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Text-fig. 3. a – l: Ulmus fischeri HEER, a – Sf. 7296, b – Sf. 8338, c – Sf. 7219, d – Sf. 7202, e – Sf. 7227, f – Sf. 7244, g – Sf. 8409, h – Sf. 7221, i – Sf. 7212, j – Sf. 7252, k – Sf. 7258, l – Sf. 7261. in Early Oligocene Flora Of Seifhennersdorf (Saxony)

Text-fig. 3. a – l: Ulmus fischeri HEER, a – Sf. 7296, b – Sf. 8338, c – Sf. 7219, d – Sf. 7202, e – Sf. 7227, f – Sf. 7244, g – Sf. 8409, h – Sf. 7221, i – Sf. 7212, j – Sf. 7252, k – Sf. 7258, l – Sf. 7261.

opencc-by-4.0Dec 2007View details →
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Text-fig. 11. Apocynophyllum neriifolium HEER (re-illustrated from Engelhardt 1870, pl. 5, fig. 2, as Ficus multinervis HEER), Sf. 8277, nat. size. in Early Oligocene Flora Of Seifhennersdorf (Saxony)

Text-fig. 11. Apocynophyllum neriifolium HEER (re-illustrated from Engelhardt 1870, pl. 5, fig. 2, as Ficus multinervis HEER), Sf. 8277, nat. size.

opencc-by-4.0Dec 2007View details →
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Text-fig. 9. a – Acer angustilobum HEER, Sf. 4404, nat. size; b – Acer cf. dasycarpoides HEER, Sf. 4599, nat. size; c – Acer cf. dasycarpoides HEER, Sf. 8247, nat. size; d – Acer cf. tricuspidatum BRONN, Sf. 3015:2, nat. size. in Early Oligocene Flora Of Seifhennersdorf (Saxony)

Text-fig. 9. a – Acer angustilobum HEER, Sf. 4404, nat. size; b – Acer cf. dasycarpoides HEER, Sf. 4599, nat. size; c – Acer cf. dasycarpoides HEER, Sf. 8247, nat. size; d – Acer cf. tricuspidatum BRONN, Sf. 3015:2, nat. size.

opencc-by-4.0Dec 2007View details →
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Linked collectors and determiners for: Ceraphron krogmanni (Hymenoptera: Ceraphronidae), a new species from Lower Saxony with unusual male genitalia.

Natural history specimen data linked to collectors and determiners held within, "Ceraphron krogmanni (Hymenoptera: Ceraphronidae), a new species from Lower Saxony with unusual male genitalia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/d6c2d094-4369-429f-833c-9d3cb0261023">https://bionomia.net/dataset/d6c2d094-4369-429f-833c-9d3cb0261023</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/d6c2d094-4369-429f-833c-9d3cb0261023">https://gbif.org/dataset/d6c2d094-4369-429f-833c-9d3cb0261023</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
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Abb. 1 in Die Fruchtfliegen Niedersachsens und Bremens (Diptera, Drosophilidae) The Fruit Flies (Diptera, Drosophilidae) of Lower Saxony and

Abb. 1: Originalbeschreibung der ersten aus Niedersachsen nachgewiesenen Fruchtfliege (Musca erythrophthalma PANZER, 1794), die von Christian Ludwig Hellwig in Braunschweig gesammelt wurde und von Georg Wolfgang Franz Panzer anschliessend beschrieben wurde (PANZER 1794). Die Art wird aktuell als nomen nudum betrachtet, es könnte sich um Drosophila funebris (FABRICIUS, 1787) handeln.

opencc-by-4.0Jul 2020View details →
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Abb. 3 in Die Fruchtfliegen Niedersachsens und Bremens (Diptera, Drosophilidae) The Fruit Flies (Diptera, Drosophilidae) of Lower Saxony and

Abb. 3: Jahreszeitliche Verteilung der Artenzahl (Punkte) und der Gesamtzahl (Säulen) der datierten Belege von Drosophilidae in Niedersachsen in Bremen.

opencc-by-4.0Jul 2020View details →
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Spatial distribution of Mesozoic deposits and their temperature ranges within the Weser-Wiehengebirge Syncline of the inverted Lower Saxony Basin, Minden area, Germany

<p>This repository contains the supplementary material for the publication &quot;Spatial distribution of Mesozoic deposits and their temperature ranges within the Weser-Wiehengebirge Syncline of the inverted Lower Saxony Basin, Minden area, Germany&quot; by&nbsp;Alexander J&uuml;stel, Olga Knaub, Frank Strozyk, Gregor Bussmann, Florian Wellmann, Peter Kukla.&nbsp;<br> &nbsp;</p>

opencc-by-4.0Dec 2022View details →
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Fig. 1 in Species distribution and assemblages of centipedes (Chilopoda) in open xeric sites of Saxony-Anhalt (Germany)

Fig. 1. Locations of study sites. Abbr.: xeric meadows (XM) – FW, Fscha, KK 1, AA, AT, Bi 1, CH 2, EP, SH, BH, Ha 5; mesoxeric meadows (SMM) – Bi 2, Zy, Ha 1, ha 2, ha 3, MTha, ZHei, SBe, SoTr 2, Rü 1, Rü 2, Rü 3, Kö 3, UF 2, UF 3, UF 4, NG, NBG, SBG, TT 1, TT 2; grasslands contaminated by heavy metal (HMG) – Eck 1, Eck 2, Wi, Wo; draw shrub heaths (DSH) – FK 2, FK 3, KB, CH 1, Ha 6, Kö 1, Kö 2, UF 1; advanced succession sites (ASS) – SoGZ 1, SoGO 3, SoGU 4, SoVW 5, Ha 4.

opencc-by-4.0Aug 2003View details →

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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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OpenNeuro

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Last verified 2026-04-29Open record