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237 results for “true bug”
Figs 1−4 in Catalogue of type specimens of true bugs (Hemiptera: Heteroptera) deposited in the National Museum, Prague, Czech Republic
Figs 1−4. Type labels of Ludvík Hoberlandt. 1−2 – Velia rhadamantha Hoberlandt, 1941, holotypus, characteristic style of labels in the 1940s; 3−4 – Sigara samani Hoberlandt, 1952, characteristic labels for the 1950s and later period. (Photos: L. Macháčková).
Fig. 2 in Ecological And Faunistic Review Of The True Bugs Of Infraorder Cimicomorpha (Heteroptera) Of Urban Cenoses Of Kharkiv City (Ukraine)
Fig. 2. Ratio between main trophic groups of true bugs in terms of number of species and relative abundance (% out of the total number of true bugs). Names of groups in acronyms are the same as in the table 1.
Fig. 3 in Ecological And Faunistic Review Of The True Bugs Of Infraorder Cimicomorpha (Heteroptera) Of Urban Cenoses Of Kharkiv City (Ukraine)
Fig. 3. Ratio between hygropreference of main groups of true bugs in terms of number of species and relative abundance (% out of the total number of true bugs). Names of groups in acronyms are the same as in the table 1.
Fig. 1 in Ecological And Faunistic Review Of The True Bugs Of Infraorder Cimicomorpha (Heteroptera) Of Urban Cenoses Of Kharkiv City (Ukraine)
Fig. 1. Ratio between main biotopic groups of true bugs in terms of number of species and relative abundance (% out of the total number of true bugs). Names of groups in acronyms are the same as in the table 1.
Fig. 4 in Fine Scale Pattern Of True Bug Assemblages (Heteroptera) Across Two Natural Edges
Fig. 4. The significant relations between the abundance of true bug species and the distance from the edge. At site one: E.cil (r2 = 0.42, F = 8.085, p = 0.0159); Ae.atr (r2 = 0.92, F = 124.20, p <1,11 1,11 0.0001); X.qua (r2 = 0.37, F = 6.339, p = 0.0286); P.opa (r2 = 0.76, F = 34.83, p = 0.0001); A.gra 1,11 1,11 (r2 = 0.54, F = 12.85, p = 0.0043); site two: E.cil (r2 = 0.78, F = 38.55, p <0.0001); Ae.atr (r2 = 1,11 1,11 0.66, F = 21.06, p = 0.0008); X.qua (r2 = 0.37, F = 6.339, p = 0.0286); Ch.gra (r2 = 0.45, F = 1,11 1,11 1,11 9.17, p = 0.0114); N.tip (r2 = 0.39, F = 6.971, p = 0.0229); The error bands show the 95% confi1,11 dence for the fitted line. The abbreviations of the species: A.gra = Acalypta gracilis, Ae.atr = Aellopus atratus, Ch.gra = Chorosoma gracile, E.cil = Emblethis ciliatus, N.tip = Neides tipularius,
Fig. 3 in Fine Scale Pattern Of True Bug Assemblages (Heteroptera) Across Two Natural Edges
Fig. 3. The scatterplot of NMDS based on Bray-Curtis similarity shows the natural grouping of samples and the relevant species. The numbers mark the samples and mean their ditance from the edge (in meters). Positive numbers mark the samples of grasslands, negative numbers mark the samples of forests. Numbers in italic mark the samples at site one and numbers in bold mark the samples at site two. The arrows symbolise the effects of the habitat variables (plant species richness, percentage cover of monocotyledonous plants, dicotyledonous plants, mosses and lichens, leaf litter, bare soil surface). The variables were fitted passively onto the ordination diagram to visualise their effects. The abbreviations of the characteristic species: A.gra = Acalypta gracilis, Ae.atr = Aellopus atratus, C.col = Ceratocombus coleoptratus, C.ker = Coranus kerzhneri, Ch.gra = Chorosoma gracile, D.rot = Dictyla rotundata, E.cil = Emblethis ciliatus, M.are = Menaccarus arenicola, P.opa = Pionosomus opa-
Fig. 2 in Fine Scale Pattern Of True Bug Assemblages (Heteroptera) Across Two Natural Edges
Fig. 2. The figures show the changes in the assemblage structure of true bugs according to the complement of Morisita-Horn (black circles) and the Chao's Jaccard-type (empty circles) indices as dis-
Fig. 1 in Fine Scale Pattern Of True Bug Assemblages (Heteroptera) Across Two Natural Edges
Fig. 1. The scheme of the sampling design. The black circles symbolise the pitfall traps. The groups of traps are surrounded by boxes. Twenty groups of traps containing 5 pitfall traps were placed parallel to the edge. The distance between the traps was two meters; the distance between the groups of traps was one meter. Every second group of traps was shifted by one meter. The data belonging to a
Рис. 2. Место обитания Solenoxyphus lepidus, Dictyonota sareptana и Crypsinus angustatus в окр. Δ. НовоаΛексанΔровка, соΛонец с куртинами Lepidium ruderale Fig. 2. Habitat of Solenoxyphus lepidus, Dictyonota sareptana and Crypsinus angustatus in the vicinity of the village of Novoalexandrovka, salt lick with Lepidium ruderale in New data on the fauna of true bugs (Heteroptera) of the Tyumen Region, Russia. Part 3
Рис. 2. Место обитания Solenoxyphus lepidus, Dictyonota sareptana и Crypsinus angustatus в окр. Δ. НовоаΛексанΔровка, соΛонец с куртинами Lepidium ruderale Fig. 2. Habitat of Solenoxyphus lepidus, Dictyonota sareptana and Crypsinus angustatus in the vicinity of the village of Novoalexandrovka, salt lick with Lepidium ruderale
Рис. 1. Карта-схема точек сбора поΛужесткокрыΛых насекомых в национаΛьном парке «Тункинский». Цифрами обозначены точки сбора насекомых автором, пояснения в тексте in Data on the fauna of true bugs (Heteroptera) of the Tunkinsky National Park, Buryatia, Russia
Рис. 1. Карта-схема точек сбора поΛужесткокрыΛых насекомых в национаΛьном парке «Тункинский». Цифрами обозначены точки сбора насекомых автором, пояснения в тексте
Рис. 1. Некоторые виΔы кΛопов, впервые указываемые ΔΛя Тюменской обΛасти, общий виΔ и парамер: A — Salda muelleri; B — Hoplomachus thunbergii; C — Sacculifer rufinervis; D — Dictyonota sareptana; E — Lasiacantha hermani; F — Microplax interrupta; G — Spathocera obscura; H — Crypsinus angustatus; I — Sternodontus binodulus; J — парамер S. binodulus in New data on the fauna of true bugs (Heteroptera) of the Tyumen Region, Russia. Part 3
Рис. 1. Некоторые виΔы кΛопов, впервые указываемые ΔΛя Тюменской обΛасти, общий виΔ и парамер: A — Salda muelleri; B — Hoplomachus thunbergii; C — Sacculifer rufinervis; D — Dictyonota sareptana; E — Lasiacantha hermani; F — Microplax interrupta; G — Spathocera obscura; H — Crypsinus angustatus; I — Sternodontus binodulus; J — парамер S. binodulus
Linked collectors and determiners for: Nine true bugs (Heteroptera) newly-discovered in Illinois.
Natural history specimen data linked to collectors and determiners held within, "Nine true bugs (Heteroptera) newly-discovered in Illinois". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="http://bionomia.net/dataset/6fcd11fa-9e65-49eb-887f-eff390757adf">https://bionomia.net/dataset/6fcd11fa-9e65-49eb-887f-eff390757adf</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/6fcd11fa-9e65-49eb-887f-eff390757adf">https://gbif.org/dataset/6fcd11fa-9e65-49eb-887f-eff390757adf</a>. Formatted as a Frictionless Data package.
Figure 11 in True bugs (Hemiptera: Heteroptera) from the taiga zone of the mountainous Altai of Russia: the first records and new data on rare species
Figure 11. Habitat of Gampsocoris culicinus Seidenstücker at the environs of Lake Teletskoye, Altai Republic (Photo by V.A. Soboleva).
Figure 10 in True bugs (Hemiptera: Heteroptera) from the taiga zone of the mountainous Altai of Russia: the first records and new data on rare species
Figure 10. Habitat of Bryocoris pteridis (Fallén) in taiga at the environs of Lake Teletskoye, Altai Republic (Photo by N.V. Golub).
Figures 4–9 in True bugs (Hemiptera: Heteroptera) from the taiga zone of the mountainous Altai of Russia: the first records and new data on rare species
Figures 4–9. Adult specimens and paramere of Heteroptera. 4, 5. Nabis (Dolichonabis) americolimbatus (Carayon) (4 – dorsal view, 5 – paramere, arrow indicates lamellar carina at its base), 6. Xylocoris cursitans (Fallén), 7. Bryocoris pteridis (Fallén), 8. Phytocoris longipennis Flor, 9. Gampsocoris culicinus Seidenstücker (Photo by V.A. Soboleva).
Figure 3 in True bugs (Hemiptera: Heteroptera) from the taiga zone of the mountainous Altai of Russia: the first records and new data on rare species
Figure 3. One of habitats of Nabis (Dolichonabis) americolimbatus (Carayon) on the taiga edge near of Artybash village (Photo by E.V. Aksenenko).
Figure 2 in True bugs (Hemiptera: Heteroptera) from the taiga zone of the mountainous Altai of Russia: the first records and new data on rare species
Figure 2. Habitat of Pachycoleus pusillimus (J. Sahlberg, 1870) and Saldula orthochila (Fieber, 1859) in the environs of village Artybash, Altai Republic (Photo by V.A. Soboleva).
Figure 1 in True bugs (Hemiptera: Heteroptera) from the taiga zone of the mountainous Altai of Russia: the first records and new data on rare species
Figure 1. Taiga on the slopes of the Altai mountains at northern part of the Lake Teletskoye (Photo by V.A. Soboleva).
Linked collectors and determiners for: Danish True Bugs.
Natural history specimen data linked to collectors and determiners held within, "Danish True Bugs". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/c5aa1143-4b20-450e-8f4c-c5940d8e2f81">https://bionomia.net/dataset/c5aa1143-4b20-450e-8f4c-c5940d8e2f81</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/c5aa1143-4b20-450e-8f4c-c5940d8e2f81">https://gbif.org/dataset/c5aa1143-4b20-450e-8f4c-c5940d8e2f81</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Diversity of true bugs from Iguazú National Park, Argentina.
Natural history specimen data linked to collectors and determiners held within, "Diversity of true bugs from Iguazú National Park, Argentina". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/243064a9-76d7-48c8-b378-31b5aacf9ad7">https://bionomia.net/dataset/243064a9-76d7-48c8-b378-31b5aacf9ad7</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/243064a9-76d7-48c8-b378-31b5aacf9ad7">https://gbif.org/dataset/243064a9-76d7-48c8-b378-31b5aacf9ad7</a>. Formatted as a Frictionless Data package.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.