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1,226 results for “Pseudoscorpiones”
Fig. 5 in Los lepidópteros heteróceros de la rambla del Puente de la Quebrada y Cueva del Meadero (Almería, España) y algunos casos de foresia detectados sobre Agrotis boetica (Boisduval, [1837]), Agrotis lasserrei (Bugnion, 1837) y Eremochlaena orana (Lucas, 1894) por el pseudoescorpión Diplotemnus insolitus Chamberlin, 1933. (Lepidoptera: Noctuidae. Pseudoscorpiones: Atemnidae).
Fig. 5.- Biotopo de la zona 2 en la Cueva del Meadero.
Figure 4 in Description of two new cave-dwelling Bisetocreagris species (Pseudoscorpiones, Neobisiidae) from China
Figure 4. Bisetocreagris gracilenta Gao & Zhang, sp. nov., female holotype, dorsal view.
Figure 1. Microcreagris gigas, a in Notes on two species of the genus Microcreagris Balzan, 1892 (Pseudoscorpiones: Neobisiidae) from China
Figure 1. Microcreagris gigas, a. male, dorsal view; b, female, dorsal view.
Figure 1 in Description of a new species of the genus Anatemnus Beier, 1932 (Pseudoscorpiones: Atemnidae) from China
Figure 1. Anatemnus reni sp. nov., holotype male: habitus, dorsal view.
Image 1 in Notes on two species of the genus Atemnus Canestrini (Pseudoscorpiones: Atemnidae) from China
Image 1. Atemnus politus: female habitus, dorsal view.
Image 2 in Notes on two species of the genus Atemnus Canestrini (Pseudoscorpiones: Atemnidae) from China
Image 2. Atemnus limuensis sp. nov.: male habitus, dorsal view.
Volker Mahnert in the pseudoscorpion collection of the MHNG (photo P. Schwendinger). in Volker Mahnert 3 December 1943 – 23 November 2018
Volker Mahnert in the pseudoscorpion collection of the MHNG (photo P. Schwendinger).
Fig. 1 in A new species of Sphaerowithius (Pseudoscorpiones, Withiidae) from Namibia
Fig. 1. Sphaerowithius ansieae sp. n., holotype male: (A) dorsal; (B) ventral.
Figure 9. Neobisium radjai n in Neobisium radjai n. sp. (Neobisiidae: Pseudoscorpiones), a new cave-dwelling pseudoscorpion from Bosnia and Herzegovina
Figure 9. Neobisium radjai n. sp., holotype female, habitus. Scale: 5.00 mm.
Data from: A multivariate study of differentiating characters between three European species of the genus Lasiochernes Beier, 1932 (Pseudoscorpiones, Chernetidae)
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Taxonomic sampling and rare genomic changes overcome long-branch attraction in the phylogenetic placement of pseudoscorpions
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FIGURE 1 in Checklist of the false scorpions (Arachnida: Pseudoscorpiones) of Colombia, with new records and a key to the identification of the families
FIGURE 1. Dorsal habitus of the new records and range extension of false-scorpions from Colombia. A. Beierolpium venezuelense. B. Geogarypus amazonicus. C. Paratemnoides nidificator. D. Parachernes melonopygus. E. Sathrochthonius venezuelanus. F. Semeiochernes armiger. Scale bars = 500 µm.
FIGURES 13‒17 in Spelaeobochica mahnerti, a new cave-dwelling pseudoscorpion from Brazil (Arachnida: Pseudoscorpiones: Bochicidae), with comments on the troglomorphism of the Brazilian bochicid species
FIGURES 13‒17. Type locality and habitat of Spelaeobochica mahnerti sp. n. 13, topographical map of Brazil, with Minas Gerais state highlighted, showing placement of the Bambuí Group (in blue); 14, topographical map of Minas Gerais state, with municipality of Monjolos indicated in red; 15, external landscape, showing region of the cave entrance (arrow); 16, map of Gruta Velha Nova, showing distribution of the specimens (red stars) observed during sampling; 17, inner portion of cave, the site where one of the specimens of S. mahnerti sp. n. was found (arrow).
FIGURES 5‒9 in Spelaeobochica mahnerti, a new cave-dwelling pseudoscorpion from Brazil (Arachnida: Pseudoscorpiones: Bochicidae), with comments on the troglomorphism of the Brazilian bochicid species
FIGURES 5‒9. Spelaeobochica mahnerti sp. n. 5, left chela of paratype, showing trichobothrial pattern, nodus ramosus, with some teeth amplified (holotype), antiaxial view, scale bar 1 mm; 6, distal marginal teeth of the fixed finger amplified, scale bar 0.1875 mm; 7, distal marginal teeth of the movable finger amplified, scale bar 0.1875 mm; 8, marginal and antiaxial accessory teeth at the proximal region of the fixed finger amplified, scale bar 0.1875 mm; 9, left palp, minus chela, of holotype, dorsal view, scale bar 1 mm.
FIGURE 18 in Spelaeobochica mahnerti, a new cave-dwelling pseudoscorpion from Brazil (Arachnida: Pseudoscorpiones: Bochicidae), with comments on the troglomorphism of the Brazilian bochicid species
FIGURE 18. Spelaeobochica mahnerti sp. n. and troglomorphisms in Spelaeobochica species. On the left, the male specimen (paratype) of S. mahnerti sp. n.; in the middle, a map of Brazil showing the different speleological units (red stars represent the locality of each species); on the right, from top to bottom, S. allodentatus, S. iuiu, S. goliath and S. muchmorei, respectively. Observe the increment in the degree of troglomorphism shown by Spelaeobochica species (greater appendage elongation) from northern to southern regions.
FIGURE 5 in The first fossil pycnocheiridiine pseudoscorpion (Pseudoscorpiones: Cheiridiidae Procheiridium gen. nov.) from Cretaceous Burmese amber
FIGURE 5: Procheiridium judsoni n. gen. et n. sp., holotype (MLP 36246): A. Right leg I, ventral view; B. Right tarsus III; C. Right tarsus II distal portion; D. Right chelicera and detail of the galea; E. Left chelicera, ventral view, showing rallum (arrow); F. Same, detail of rallum (arrow). Scale bars: A, 0.2 mm; B–D, 0.05 mm; E, 0.1 mm; F, 0.05 mm.
FIGURE 3 in The first fossil pycnocheiridiine pseudoscorpion (Pseudoscorpiones: Cheiridiidae Procheiridium gen. nov.) from Cretaceous Burmese amber
FIGURE 3: Procheiridium judsoni n. sp., holotype (MLP 36246): A. Carapax; B. Right chelicera; C. Rallum; D. Right Coxae, E. Right leg I; legs not belonging to the holotype in the same amber sample: F. Right leg III; G. Right leg IV. Scale bars: A–B, 0.2 mm; C, 0.01 mm; D–G, 0.2 mm.
FIGURE 2 in The first fossil pycnocheiridiine pseudoscorpion (Pseudoscorpiones: Cheiridiidae Procheiridium gen. nov.) from Cretaceous Burmese amber
FIGURE 2: Procheiridium judsoni n. gen. et n. sp., holotype (MLP 36246): A. Habitus, ventral; B. Right coxae; C. Manducatory process; D. Anal plate and last sternites; E. Left leg IV, junction between femur and patella. Scale bars: A, 0.5 mm; B, 0.2 mm; C, 0.05 mm; D–E, 0.1 mm.
FIGURES 29–34 in Zaragozachthonius (Pseudoscorpiones, Chthoniidae), a new genus with species in Italy and the Balkan peninsula
FIGURES 29–34. Zaragozachthonius karamanianus (Hadži, 1937), Fabriano, Abbazia San Salvatore. 29, Detail of fingers at the chelal tip of ♂, antiaxial view. 30, Detail of fingers at level of trichobothria est-it and st-t of ♂, antiaxial view. 31, Detail of fingers at level of trichobothrium sb of ♂, antiaxial view. 32, Right chela of ♀: detail of chelal condylar complex, antiaxial view. 33, Id., detail of chelal movable finger condylar complex, paraxial view. 34, Id., detail of chelal condylar complex, ventral view.
FIGURES 27–28 in Zaragozachthonius (Pseudoscorpiones, Chthoniidae), a new genus with species in Italy and the Balkan peninsula
FIGURES 27–28. Zaragozachthonius karamanianus (Hadži, 1937), Fabriano, Abbazia San Salvatore. 27–28, Right chela of ♀ (27) and ♂ (28), antiaxial view.
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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.