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11 results for “subterranean traps”
Map 1 in On Quedius coloratus FAUVEL, 1875 and allied species, with an appendix on Quedius species collected in Greece with subterranean pitfall traps, and a new synonymy (Coleoptera: Staphylinidae: Staphylininae)
Map 1: Distributions of Quedius hellenicus (black diamonds), Q. sp. 2 (white stars), Q. carpathius (black stars), Q. spiculatus (white triangles), Q. hebes (white circles), and Q. coloratus (black circles) in the East Mediterranean.
Fig. 58 in On Quedius coloratus FAUVEL, 1875 and allied species, with an appendix on Quedius species collected in Greece with subterranean pitfall traps, and a new synonymy (Coleoptera: Staphylinidae: Staphylininae)
Fig. 58: Length of median lobe of aedeagus in relation to body size, given as an approximation of the combined area of head and pronotum, in Quedius coloratus and allied species.
Map 2 in On Quedius coloratus FAUVEL, 1875 and allied species, with an appendix on Quedius species collected in Greece with subterranean pitfall traps, and a new synonymy (Coleoptera: Staphylinidae: Staphylininae)
Map 2: Distributions of Quedius endogeus (black circles) and Q. bernhaueri (white triangles).
Ant abundance in pitfall traps, subterranean traps, arboreal traps, and Winkler samples at the Territory Wildlife Park experiment
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Supplementary material 1 from: Premate E, Fišer Ž, Kuralt Ž, Pekolj A, Trajbarič T, Milavc E, Hanc Ž, Kostanjšek R (2022) Behavioral observations of the olm (Proteus anguinus) in a karst spring via direct observations and camera trapping. Subterranean Biology 44: 69-83. https://doi.org/10.3897/subtbiol.44.87295
Figure S1
Figure 6 from: Halse S, Pearson G (2014) Troglofauna in the vadose zone: comparison of scraping and trapping results and sampling adequacy. Subterranean Biology 13: 17-34. https://doi.org/10.3897/subtbiol.13.6991
Figure 6 - Cumulative numbers of species collected by different trapping protocols in three different areas in the Pilbara (see Fig. 3 for locations). A sample consists of one scraping event, one trapping event (with one or two traps), or the combined results of one scraping and one trapping event in the same hole.
Figure 5 from: Halse S, Pearson G (2014) Troglofauna in the vadose zone: comparison of scraping and trapping results and sampling adequacy. Subterranean Biology 13: 17-34. https://doi.org/10.3897/subtbiol.13.6991
Figure 5 - Bias in capture of different orders of troglofauna in the Pilbara using scraping and trapping.
Figure 3 from: Halse S, Pearson G (2014) Troglofauna in the vadose zone: comparison of scraping and trapping results and sampling adequacy. Subterranean Biology 13: 17-34. https://doi.org/10.3897/subtbiol.13.6991
Figure 3 - Pilbara and Yilgarn regions of Western Australia, showing some towns in the Pilbara and Areas 1, 2 and 3 where species accumulation curves were calculated.
Figure 1 from: Halse S, Pearson G (2014) Troglofauna in the vadose zone: comparison of scraping and trapping results and sampling adequacy. Subterranean Biology 13: 17-34. https://doi.org/10.3897/subtbiol.13.6991
Figure 1 - Diamond drilled geological core showing structure of the subterranean habitat from surface to 40 m depth.
Figure 2 from: Halse S, Pearson G (2014) Troglofauna in the vadose zone: comparison of scraping and trapping results and sampling adequacy. Subterranean Biology 13: 17-34. https://doi.org/10.3897/subtbiol.13.6991
Figure 2 - Troglofauna sampling equipment. A net for scraping and trap: i, net assembled; ii, collar, catch tube and protective brass case disassembled; iii, trap B scraping a drill hole in the Pilbara.
Figure 4 from: Halse S, Pearson G (2014) Troglofauna in the vadose zone: comparison of scraping and trapping results and sampling adequacy. Subterranean Biology 13: 17-34. https://doi.org/10.3897/subtbiol.13.6991
Figure 4 - Taxonomic composition of troglofauna in the Pilbara and Yilgarn. Orders in legend are shown clockwise from the top of the pie chart.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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