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1,287 results for “species identity”
FIGURES 12–13 in On the identity of Conisania leuconephra Draudt, 1950 with a description of a new species from Xizang, China (Lepidoptera: Noctuidae: Noctuinae)
FIGURES 12–13. Conisania spp.: female genitalia. Depositories of the specimens dissected: 12 in TAAHU; 13 in HNHM.
FIGURES 8–11 in On the identity of Conisania leuconephra Draudt, 1950 with a description of a new species from Xizang, China (Lepidoptera: Noctuidae: Noctuinae)
FIGURES 8–11. Conisania spp.: male genitalia. Depositories of the specimens dissected: 8 and 9 in TAAHU; 10 in ZFMK (photo by S.-Y. Huang); 11 in HNHM.
FIGURE 2. a, b in The identity of Anopheles (Anopheles) barbirostris species A3 of the Barbirostris Complex (Diptera: Culicidae)
FIGURE 2. a, b, Wings of (a) An. hodgkini female with three apical fringe spots (arrow) and (b) An. dissidens with two apical fringe spots, without pale fringe spot at tip of vein R2 (arrow). c, d, Abdominal sterna of (c) An. hodgkini female with one pale and (d) An. dissidens female with two short lines of pale scales on sterna III and IV (arrows).
FIGURE 1. a, b in The identity of Anopheles (Anopheles) barbirostris species A3 of the Barbirostris Complex (Diptera: Culicidae)
FIGURE 1. a, b, Pupal trumpets of (a) An. hodgkini male showing the absence of a secondary cleft (arrow) and (b) An. dissidens showing the secondary cleft (arrow). c, d, Pupal seta 9-VII of (c) An. hodgkini, darkly pigmented, and (d) An. dissidens, lightly pigmented. e, f, Larval palmate seta 1–II of (e) An. hodgkini, unpigmented, and (f) An. dissidens, pigmented.
FIGURE 3 in The identity of Anopheles (Anopheles) barbirostris species A3 of the Barbirostris Complex (Diptera: Culicidae)
FIGURE 3. Maximum Likelihood tree of ITS2 sequences from specimens of An. barbirostris species A3 and other species of the Barbirostris Subgroup (which includes the Barbirostris Complex), with An. (Ano.) barbumbrosus Strickland & Chowdhury, 1927 and An. (Ano.) pullus Yamada, 1937 as outgroup taxa. Bootstrap values are shown at each node. All ambiguous positions were removed for each sequence pair (pairwise deletion option). The final dataset included 1,913 positions. The best-fit model was GTR+G. Evolution analyses were conducted in MEGA11.
FIGURE 7 in On the identity of Pardosa consimilis Nosek, 1905 with a first description of the male and notes on two related species (Araneae: Lycosidae)
FIGURE 7. Distribution records of Pardosa consimilis Nosek, 1905: published records (black dots) and newly discovered localities (red triangles). AL—Albania, BG—Bulgaria, IR—Iran, GE—Georgia, NM—North Macedonia, TR—Turkey.
FIGURE 5. Pardosa consimilis Nosek, 1905 in On the identity of Pardosa consimilis Nosek, 1905 with a first description of the male and notes on two related species (Araneae: Lycosidae)
FIGURE 5. Pardosa consimilis Nosek, 1905; left male palp (A, D, G), P. albatula (Roewer, 1951) (B, E, H) and P. blanda (C. L. Koch, 1833) (C, F, I); retrolateral (A–C), ventral (D–F) and prolateral (G–I) views. Arrows indicate the distal white setae (WS) in each view; Es—erected setae.
FIGURE 4. Pardosa consimilis Nosek, 1905 in On the identity of Pardosa consimilis Nosek, 1905 with a first description of the male and notes on two related species (Araneae: Lycosidae)
FIGURE 4. Pardosa consimilis Nosek, 1905; male (A, D, G), P. albatula (Roewer, 1951) (B, E, H) and P. blanda (C. L. Koch, 1833) (C, F, I); habitus dorsal (A–C), right leg I, prolateral (D–F) and left male palp dorsal (G–I) views. Arrows indicate the distal white setae (WS).
FIGURE 6 in On the identity of Pardosa consimilis Nosek, 1905 with a first description of the male and notes on two related species (Araneae: Lycosidae)
FIGURE 6. Pardosa sp., left palp: ventral (A–C) and retro–ventral (D–I) view; terminal apophysis (G–I). P. consimilis Nosek, 1905 (A, D, G), P. albatula (Roewer, 1951) (B, E, H), P. blanda (C. L. Koch, 1833) (C, F, I). TgA—tegular apophysis, TlT— tooth of terminal apophysis.
FIGURE 2. Pardosa consimilis Nosek, 1905 in On the identity of Pardosa consimilis Nosek, 1905 with a first description of the male and notes on two related species (Araneae: Lycosidae)
FIGURE 2. Pardosa consimilis Nosek, 1905; variation in the septum of the intact epigyne, ventral view: holotype from Turkey (A), from Bulgaria: Sashtinska Sredna Gora Mts (B, C), Slavyanka Mts (D–H) and from Iran, courtesy of Alireza Zamani (I). Scales: 0.6 mm.
FIGURE 1. Pardosa consimilis Nosek, 1905 in On the identity of Pardosa consimilis Nosek, 1905 with a first description of the male and notes on two related species (Araneae: Lycosidae)
FIGURE 1. Pardosa consimilis Nosek, 1905; copulatory organs: male palp, ventral (A), epigyne, ventral (B) and dorsal (C). Abbreviations: AP—anterior pocket, BS—base of septum, CD—copulatory duct, Co—conductor, Cy—cymbium, Em— embolus, ES—erect setae, L—medial lumen of epigyne, LA—lateral angle, MD—median depression, Pa—palea, PH—pocket hood, S—spermatheca (receptacle), Stg—subtegulum, Tg—tegulum, TgA—tegular apophysis, Ti—tibia, TlT—tooth of terminal apophysis, WS—white setae.
FIGURE 3. Pardosa consimilis Nosek, 1905 in On the identity of Pardosa consimilis Nosek, 1905 with a first description of the male and notes on two related species (Araneae: Lycosidae)
FIGURE 3. Pardosa consimilis Nosek, 1905; female (A, D, G, J), P. albatula (Roewer, 1951) (B, E, H, K) and P. blanda (C. L. Koch, 1833) (C, F, I, L); habitus dorsal (A–C) (scales 2.0 mm), macerated epigyne ventral (D–F) and vulva dorsal (G–L) views. Scales: 2.0 mm (A–C) and 0.5 mm (D–I). Arrows indicate the lumen of median septum.
Data from: Functional identity and diversity of animals predict ecosystem functioning better than species-based indices
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Data from: Movement ecology of Afrotropical birds: Functional traits provide complementary insights to species identity
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Data from: Life stage and species identity affect whether habitat subsidies enhance or simply redistribute consumer biomass
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Data from: Species identity and depth predict bleaching severity in reef building corals: shall the deep inherit the reef?
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Data from: Contrasting effects of host identity, plant community, and local species pool on the composition and colonisation levels of arbuscular mycorrhizal fungal community in a temperate grassland
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Data from: Maintenance of genetic and morphological identity in two sibling Syrrhopodon species (Calymperaceae, Bryopsida) despite extensive introgression
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Data from: The importance of species identity and interactions on multifunctionality depends on how ecosystem functions are valued
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Data from: Integrating morphological characters, molecular markers, and distribution patterns to assess the identity of Blepharis species from Jordan
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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.