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FIGURE 5. Male hind basitarsus, outer surface. A in New species of Augochlora (Oxystoglossella) Eickwort (Hymenoptera; Apoidea) from Northeastern Brazil with an identification key for the region
FIGURE 5. Male hind basitarsus, outer surface. A) A. modica sp. nov., B) A. aurinasis. Scale bar: 0.2 mm.
FIGURE 4 in New species of Augochlora (Oxystoglossella) Eickwort (Hymenoptera; Apoidea) from Northeastern Brazil with an identification key for the region
FIGURE 4. Female mesoscutum in detail. A) Augochlora morrae; B) Augochlora bipunctata sp. nov. Scale bar: 0.2 mm.
FIGURE 7 in New species of Augochlora (Oxystoglossella) Eickwort (Hymenoptera; Apoidea) from Northeastern Brazil with an identification key for the region
FIGURE 7. Male of Augochlora aurinasis: A) habitus, B) frontal view of head, C) dorsal view of mesosoma, D) dorsal view of metasoma. Scale bar: 1.0 mm, all at same scale.
FIGURE206–219 in Key to the world species of Ernogamasus Athias-Henriot, 1971 (Parasitiformes Parasitidae)
FIGURE206–219. Males. Ernogamasus leruthi: 206 presternal plates and the genital lamina; 207 chelicera, antiaxially; 208 Fe II, Ge II and Ti II, ventrally, arrow at the anterolateral side (Juvara-Bals 1974); 209, 210 leg II (Fe, Ge, Ti), anterolaterally (209 Juvara-Bals 1974, 210 Bhattacharyya 1963). Ernogamasus cuneoliger: 211 gnathotectum; 212 corniculus; 213 presternal plate and the anterior margin of the sternum; 214 genital lamina; 215 Fe II, Ge II and Ti II, ventrally, arrow at the anterolateral side; 216 Fe II, Ge II and Ti II, anterolaterally (211, 213, 216 Witaliński 1979, 212, 214, 215 Witaliński, original). Ernogamasus oxalis: 217 chelicera, adaxially; 218 Fe II, Ge II and Ti II, ventrally, arrow at the anterolateral side; 219 Tr II, Fe II, Ge II and Ti II, posterolaterally.
FIGURE192–205 in Key to the world species of Ernogamasus Athias-Henriot, 1971 (Parasitiformes Parasitidae)
FIGURE192–205. Males. Ernogamasus obesus: 192 gnathotectum; 193 chelicera, antiaxially; 194 hypostome with corniculi; 195 leg II (Tr, Fe, Ge and Ti), posterolaterally. Ernogamasus deminipes: 196 genital lamina; 197 chelicera, antiaxially; 198, 199, 200 Fe II, Ge II and Ti II, anterolaterally. Ernogamasus bicorniger: 201 chelicera, adaxially; 202 leg II (Fe, Ge and Ti), anterolaterally. Ernogamasus byxus: 203, 204, 205 Fe II, Ge II and Ti II, anterolaterally.
FIGURE126–145 in Key to the world species of Ernogamasus Athias-Henriot, 1971 (Parasitiformes Parasitidae)
FIGURE126–145. Females. Ernogamasus perfibrosus: 126 gnathotectum; 127 paragynium; 128 paragynium metagynial sclerite; 129 epigynium; 130 denticles on the internal epigynium surface; 131 endogynium; 132 Tr IV. Ernogamasus pannonicus: 133 gnathotectum; 134 paragynium, internally; 135 epigynium; 136 endogynium (133–136 Athias-Henriot 1967). Ernogamasus mussus: 137 gnathotectum; 138 presternal plate at the sternum margin; 139 paragynium metagynial sclerite; 140 epigynium; 141 endogynium. Ernogamasus simusculus: 142 gnathotectum; 143 paragynium, internally; 144 epigynium; 145 endogynium.
FIGURE93–109 in Key to the world species of Ernogamasus Athias-Henriot, 1971 (Parasitiformes Parasitidae)
FIGURE93–109. Females. Ernogamasus leruthi: 93 chelicera, antiaxially; 94 fixed digit of chelicera, another aspect; 95 sternum anterior margin and presternal plates; 96 paragynium, external (left) and internal (right) view; 97 epigynium; 98 endogynium; 99 stipule another shape. Ernogamasus lobatus: 100 gnathotectum; 101 chelicera, antiaxially; 102 paragynium metagynial sclerite; 103 epigynium; 104 endogynium, two aspects. Ernogamasus pertelicrus: 105 gnathotectum; 106 chelicera, adaxially; 107 paragynium, internally; 108 epigynium; 109 endogynium.
FIGURE3–8 in Key to the world species of Ernogamasus Athias-Henriot, 1971 (Parasitiformes Parasitidae)
FIGURE3–8. Females. Ernogamasus spp.: 3 ventral side of the idiosoma; 4 presternal plates, sternal shield and paragynia; 5 epigynium; 6 paragynium; 7 endogynium; 8 endogynium in situ. 3 E. echinatus, 4,5,7 E. papilio, 6,8 E. aliitectatus (Witaliński & Fend'a 2020).
FIGURE28–43 in Key to the world species of Ernogamasus Athias-Henriot, 1971 (Parasitiformes Parasitidae)
FIGURE28–43. Females. Ernogamasus simplex: 28 gnathotectum; 29 presternal plates and anterior part of the sternum; 30 epigynium; 31 endogynium. Ernogamasus flabelliformis: 32 gnathotectum; 33 epigynium; 34 endogynium. Ernogamasus bicorniger: 35 gnathotectum; 36 paragynium; 37 epigynium; 38 endogynium; 39 another aspect of the teeth on the endogynium flanking triangular stipule (Witaliński, original). Ernogamasus decui: 40 gnathotectum; 41 epigynium; 42 endogynium; 43 endogynial stipule another aspect.
FIGURE 6 in Four new species of the genus Anillinus Casey (Coleoptera, Carabidae, Anillini) from Alabama, U.S.A., with a revised key to the Alabama species
FIGURE 6. Species distribution of Anillinus in the eastern USA and factors shaping the genus diversity. A—total species number and number of endemics per state in the territory to the east of the Mississippi River (only described species included in Bousquet 2012, Sokolov 2012, 2014). Here and elsewhere state abbreviations follow Federal Information Processing Standards (https://www.nlsinfo.org/content/ cohorts/nlsy79/other-documentation/codebook-supplement/nlsy79-attachment-102-federal); B—species compositions in accordance with their habitat preferences in the three most speciose states of the E USA; C—biplot graph with clusters of states grouped on the basis of state species compositions using PCA analysis (explanation in the text). Green lines—projections of loadings of the following variables: ComEnd—number of common endogean species, ComLitnumber of common litter species, EndEnd—number of endemic endogean species, EndLit—number of endemic litter species, EndTrogl—number of endemic troglobitic species.
FIGURE 4 in Four new species of the genus Anillinus Casey (Coleoptera, Carabidae, Anillini) from Alabama, U.S.A., with a revised key to the Alabama species
FIGURE 4. Line drawings of male genitalia of Anillinus species. A. clinei (Stewart Cave, Jackson County, Alabama): A—median lobe, right lateral aspect, B—left paramere, left lateral aspect, C—right paramere, right lateral aspect. A. folkertsioides (Creek Cave, Marshall County, Alabama): D—median lobe, right lateral aspect, E—left paramere, left lateral aspect, F—right paramere, right lateral aspect. A. hildebrandti (Cave Spring Cave, Morgan County, Alabama): G—median lobe, right lateral aspect, H—left paramere, left lateral aspect, I—right paramere, right lateral aspect. A. humicolus (Mountain Brook, Jefferson County, Alabama): J—median lobe, right lateral aspect, K—left paramere, left lateral aspect, L—right paramere, right lateral aspect. Scale bar 0.1mm.
Data from Jenkinson et al. 2020: Biogeographical variation in the distribution, abundance, and interactions among key species on rocky reefs of the northeast Pacific
<p>See Metadata tab for full description of transect survey data.</p>
FIGURE 7 in Comparative morphology of myrmecophilous immature stages of European Microdon species (Diptera: Syrphidae): updated identification key and new diagnostic characters
FIGURE 7. Dorsal reticulation of third instar larvae of M. myrmicae (A, B), M. analis (C, D) and M. devius (E, F); left, general view; right, detail of single reticulation processes. A = 400 µm; B = 50 µm; C, E = 500 µm; D = 100 µm; F = 200 µm.
FIGURE 6. Selymbria guianensis n in The cicada genus Selymbria Stål, 1861 (Hemiptera: Cicadidae: Tibicininae: Selymbrini): redescription including ten new species and a key to the genus
FIGURE 6. Selymbria guianensis n. sp.: A, holotype male and paratype female habitus; B, holotype male dorsum; C, holotype male timbal cover; D, paratype male operculum; E, paratype female operculum; F, holotype male lateral view of genitalia; G, holotype male posterior view of genitalia; H, paratype female lateral view of genitalia; I, paratype female ventral view of genitalia. Scale bar: A, 2 cm; B, 5 mm; C–E, 2 mm; F–G, 1 mm; H–I, 2 mm.
Supplementary material 5 from: Brassard F, Leong C-M, Chan H-H, Guénard B (2020) A new subterranean species and an updated checklist of Strumigenys (Hymenoptera, Formicidae) from Macao SAR, China, with a key to species of the Greater Bay Area. ZooKeys 970: 63-116. https://doi.org/10.3897/zookeys.970.54958
Table S5. List of the sampling sites visited in 2019, with their associated number, name and geolocation
Data from: Trophic rewilding establishes a landscape of fear: Tasmanian devil introduction increases risk-sensitive foraging in a key prey species
Global declines of large carnivores have reduced the 'landscape of fear' that constrains the behaviour of other species. In recent years, active and passive trophic rewilding have potentially begun restoring these lost top-down controls. The Tasmanian devil (Sarcophilus harrisii) has declined severely due to a novel transmissible cancer. In response to extinction fears, devils were introduced to the devil-free Maria Island, where their abundance rapidly increased. We tested how this introduction influenced risk-sensitive foraging in the common brushtail possum (Trichosurus vulpecula), a major prey species for devils, using giving-up densities (GUDs). Before the introduction of devils, possum GUDs on Maria Island were indistinguishable from the long-diseased region of Tasmania, where devils have been rare since ~2000. Three years after devil introduction, GUDs were 64% higher on Maria Island than the control region, demonstrating that after an initial period of high mortality, possums quickly adopted risk-sensitive foraging behaviours. Devil activity across Maria Island was variable, leading to a heterogeneous landscape of fear and highlighting that top predators must be at functional densities to elicit behavioural responses from prey. Our study provides strong evidence that top predators modify the behaviour of prey by instilling fear, causing rapid ecological change following recoveries.
FIGURES 19–21 in A new species of Boethella Bennett, 2003 (Hymenoptera: Ichneumonidae Tryphoninae) from Brazil, redescription of the genus and a key to world species
FIGURES 19–21. Boethella jatai sp. nov., male paratypes. 19: Propodeum, dorsoposterior. 20: Fore wing. 21: Hind wing.
FIGURES 2–5 in A new species of Boethella Bennett, 2003 (Hymenoptera: Ichneumonidae Tryphoninae) from Brazil, redescription of the genus and a key to world species
FIGURES 2–5. Boethella canilae, non-type male (CNCI). 2: Lateral habitus. 3: Head, anterior. 4: Head and mesopleuron, anterolateral. 5: Propodeum, dorsoposterior.
FIGURE 6 in Species of the Maera-clade collected from Japan. Part 4: addenda to genera Maera Leach, 1814 and Quadrimaera Krapp-Schickel & Ruffo, 2000, with revised keys to Japanese species of the clade (Crustacea: Amphipoda: Maeridae)
FIGURE 6. Maera denticoxa sp. nov. Holotype, male, 14.7 mm (OMNH-Ar-11724). Live specimen, photograph by M. Kodama.
FIGURE 5 in Species of the Maera-clade collected from Japan. Part 4: addenda to genera Maera Leach, 1814 and Quadrimaera Krapp-Schickel & Ruffo, 2000, with revised keys to Japanese species of the clade (Crustacea: Amphipoda: Maeridae)
FIGURE 5. Maera denticoxa sp. nov. All but F, holotype, male, 14.7 mm (OMNH-Ar-11724); F, paratype, female, 15.6 mm (OMNH-Ar-11725). Scales: 0.2 mm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.