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72 results for “soil fauna”

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Figure 1 in The nematode fauna from the top soil to the vadose zone in a forested groundwater recharge area

Figure 1. Population density of nematodes (ind./10 g DW soil ± SD) at Hintere Stellimatten (HST) and Verbindungsweg (VW). The decline in density was significant at both sites (Kruskall-Wallis rank sum test), but showed no significant differences after Dunn's post hoc test.

opencc-by-4.0Mar 2021View details →
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Figure 2 in Know your campus: salient research potential of prostigmatic soil mite fauna (Acariformes: Prostigmata, Endeostigmata) within university campus area

Figure 2 Representatives of Prostigmata found in Morasko Campus: A – Cunaxidae:Armascirus bakerilarva; B – Eupodidae:Caleupodes reticulatus adult female; C – Tydeidae:Lorryia reticuloinsigniaadult female; D – Erythraeidae:Abrolophus rudaensislarva; E – Eupalopselli- dae: Eupalopsellus trudisadult female; F – Stigmaeidae:Agistemus gratusadult female. Scale bars are 100 μm.

opencc-by-4.0Sep 2021View details →
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Fig. 2. Mesostigmatid mites from the Korean Peninsula II in New records to the Korean soil dwelling Mesostigmata fauna (Acari)

Fig. 2. Mesostigmatid mites from the Korean Peninsula II (a. ventral view of Parholaspulus bregetovaae. b. ventral view of Parholaspulus paradichaetes. c. ornamentation of sternal shield. d. ventral view of Parholaspulus excentricus. e. ventral view of Neparholaspis arcuatus. f. ventral view of Neparholaspus simplex. g. ventral view of Gamasholapis asiaticus).

opencc-by-4.0Feb 2015View details →
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Fig. 1. Mesostigmatid mites from the Korean Peninsula I in New records to the Korean soil dwelling Mesostigmata fauna (Acari)

Fig. 1. Mesostigmatid mites from the Korean Peninsula I (a. Lasioseius furcisetus, dorsal view. b. Cheiroseius nepalensis, ventral view. c. Cheiroseius curtipes, dorsal view. d. Hypoaspis imitatus ventral view. e. Hypoaspis presternalis, ventral view. f. Pseudoparasitus placentulus, ventral view. g. latera- and h. ventral view of Gamasiphis novipulchellus).

opencc-by-4.0Feb 2015View details →
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Fig. 3 in New records to the Korean soil dwelling Mesostigmata fauna (Acari)

Fig. 3. Mesostigmatid mites from the Korean Peninsula III (a. dorsal view of Trigonuropoda sanguinea. b. ventral view of Iphidinychus kakumeiensis. c. ventral view of Neogamasus insignis. d. intercoxal area of Leptogamasus bicorniger. e. dorsal view of Veigaia anmashanensis. f. epistome. g. dorsal view of Veigaia carpillaris. h. epistome).

opencc-by-4.0Feb 2015View details →
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Fig. 5 in New records to the Korean soil dwelling Mesostigmata fauna (Acari)

Fig. 5. Occurrence of Mesostigmatid mites in the Korean Peninsula and in the Palearctic II (a. Parholaspulus excentricus. b. Veigaia carpillaris and Veigaia anmashanensis. c. Leptogamasus bicorniger. d. Neogamasus insignis. e. Iphidinychus kakumeiensis. f. Trigonuropoda sanguinea).

opencc-by-4.0Feb 2015View details →
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Fig. 4 in New records to the Korean soil dwelling Mesostigmata fauna (Acari)

Fig. 4. Occurrence of Mesostigmatid mites in the Korean Peninsula and in the Palearctic I (a. Lasioseius furcisetus. b. Cheiroseius nepalensis. c. Cheiroseius curtipes. d. Hypoaspis imitates. e. Hypoaspis presternalis. f. Pseudoparasitus placentulus. g. Gamasiphis novipulchellus. h. Parholaspulus bregetovaae. i. Parholaspulus paradichaetes. j. Neparholaspis arcuatus. k. Neparholaspus simplex. l. Gamasholapis asiaticus).

opencc-by-4.0Feb 2015View details →
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Figure 2 in A call for collaboration to create the European Atlas of Soil Fauna

Figure 2. Example map created from the data stored in the Edaphobase data warehouse. The yellow triangles depict the distribution of the Diplopod genera Glomeris (A) and Geoglomeris (B). Please note that the absence of points does not necessarily mean that the genus is absent, but rather means that the genus has either not been recorded (yet) or it has been recorded but relevant data have not been included in the Edaphobase data warehouse.

opencc-by-4.0Nov 2022View details →
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Figure 1 in A call for collaboration to create the European Atlas of Soil Fauna

Figure 1. Map depicting study sites of Earthworms found in Ecoregions of Central, and Central West Europe from the literature review by Tsiafouli et al. (in prep.). The data of these sites are those we aim to collect for constructing the maps of the Atlas. Please note that the list of Earthworm study sites located up to now is not exclusive.

opencc-by-4.0Nov 2022View details →
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Figure 7 in Deep soil floatation in Chile reveals diverse and mainly nameless fauna of endogean beetles (Coleoptera)

Figure 7. Maximum Likelihood DNA barcode tree of 102 endogean rove beetles (Staphylinidae) of Chile. Subfamilies are colour coded. Terminal names consist of the specimen number, the most detailed current taxonomic identification (species, genus, tribe, or subfamily), sample number, length of the DNA barcode fragment [with the number of ambiguously read bases in angle brackets], BIN number [if applicable, also denoted on the tree with black dots], and GenBank accession number. Digits at internodes are rapid bootstrap values of 50 % and above.

opencc-by-4.0Jul 2024View details →
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Figure 2 in Soil fauna contribution to winter decomposition in subalpine grasslands

Figure 2. Litter mass loss of Patzkea paniculata, Dactylis glomerata and the mixture in small mesh (white bars) and large mesh (grey bars) and litterbags, for each location (pots and field), after winter decomposition. The results of the 6 pairwise tests are shown for each location and litter type (ns: p> 0.3, **: p <0.01, ***: p <0.001).

opencc-by-4.0Nov 2019View details →
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Figure 4 in Composition and structure of soil fauna community in the Dexing Copper Mine tailings pool after revegetation

Figure 4. One-way ANOVA of Shannon–Wiener diversity index (H'), Pielou index (Js), and Margalef index (D) across the different samples (mean ± SE). Means with different letters are significantly different as assessed by LSD test, α = 0.05.

opencc-by-4.0Jan 2018View details →
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Figure 3 in Composition and structure of soil fauna community in the Dexing Copper Mine tailings pool after revegetation

Figure 3. One-way ANOVA of the functional groups across the different samples (mean ± SE). Means with different letters are significantly different as assessed by LSD test, α = 0.05.

opencc-by-4.0Jan 2018View details →
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Figure 5 in Composition and structure of soil fauna community in the Dexing Copper Mine tailings pool after revegetation

Figure 5. Results of the principal components analysis (PCA) of the soil fauna data. The values are means (n = 3) with bidirectional error bars of axis 1 and 2. For all the PCA plots, the values on the x- and y-axes represent the percent variation explained by axis 1 and axis 2, respectively. I, II, III, and IV refer to the sample I, sample II, sample III, and sample IV, respectively.

opencc-by-4.0Jan 2018View details →
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Figure 2 in Composition and structure of soil fauna community in the Dexing Copper Mine tailings pool after revegetation

Figure 2. One-way ANOVA of the abundance (A) and taxonomic richness (B) across different samples (mean ± SE). Means with different letters are significantly different as assessed by LSD test, α = 0.05.

opencc-by-4.0Jan 2018View details →
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Figure 4 in Structural characteristics of the soil fauna community in beach wetlands of the Poyang Lake region

Figure 4. Shannon–Weiner index (H') and Pielou index (Js) of soil fauna community at different sampling sites in the Poyang Lake region.

opencc-by-4.0May 2019View details →
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Figure 1 in Structural characteristics of the soil fauna community in beach wetlands of the Poyang Lake region

Figure 1. Schematic diagram of soil fauna sampling locations in Poyang Lake beach wetlands. 1: Henghu Reclamation Farm, Xinjian district, Nanchang city (HH); 2: Nanji township, Xinjian district, Nanchang city (Nanji Wetland National Natural Reserve) (NJ); 3: Lianhu township, Poyang county, Shangrao city (LH).

opencc-by-4.0May 2019View details →
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Soil biota (earthworm, nematode and soil surface fauna) data of organic, permaculture and conventional horticultural farms of Central Hungary

<p>This dataset has been produced from the PhD research of Alfr&eacute;d Szil&aacute;gyi supervised by Csaba Centeri and Eszter Kov&aacute;cs Torm&aacute;n&eacute;. The study compared permaculture, organic and conventional farming systems regarding their ecosystem-service provision potential and sustainability. Multiple ecological indicators were measured in the field during the field study in 2020, and the basic datasets (soil test results; photo gallery of the studied farms with soil core sample; soil resistance and moisture; decomposition; earthworms; nematodes; soil surface fauna; pollinators; agrobiodiversity and habitat types) are uploaded in Zenodo separately to provide scientific data on permaculture systems. In this way, we hope to contribute to international efforts to evaluate the performance of agroecological agriculture alternatives. These publications also serve as supplements to the PhD thesis. For the sake of further usability of the datasets short description of the used methods is described. For further information please contact the authors.</p>

opencc-by-4.0Aug 2024View details →
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Linked collectors and determiners for: Size Spectra of the edaphic fauna of Argiudol typical soils of the rolling Pampa region, Argentina.

Natural history specimen data linked to collectors and determiners held within, "Size Spectra of the edaphic fauna of Argiudol typical soils of the rolling Pampa region, Argentina". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/6c685c4f-021a-40e2-a8a0-ac0ffc84c215">https://bionomia.net/dataset/6c685c4f-021a-40e2-a8a0-ac0ffc84c215</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/6c685c4f-021a-40e2-a8a0-ac0ffc84c215">https://gbif.org/dataset/6c685c4f-021a-40e2-a8a0-ac0ffc84c215</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
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Text-fig. 4. Stratigraphic correlation of the five major fossil-bearing localities in the Mikhailovka quarry near Zheleznogorsk. 1 – loesses and soils, 2 – unlaminated loams, 3 – laminated loams, 4 – clays, 5 – sands, 6 – gravels, 7 – carbonate concretions, 8 – mollusk shells, 9 – small mammal remains, 10 – insect remains, 11 – plant macroremains. in Late Pleistocene (Eemian) Mollusk And Small Mammal Fauna From Mikhailovka-5 (Kursk Oblast, Central Russia)

Text-fig. 4. Stratigraphic correlation of the five major fossil-bearing localities in the Mikhailovka quarry near Zheleznogorsk. 1 – loesses and soils, 2 – unlaminated loams, 3 – laminated loams, 4 – clays, 5 – sands, 6 – gravels, 7 – carbonate concretions, 8 – mollusk shells, 9 – small mammal remains, 10 – insect remains, 11 – plant macroremains.

opencc-by-4.0Nov 2020View 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