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FIGURE 2 in A taxonomic revision of the seed-harvester ant genus Pogonomyrmex (Hymenoptera: Formicidae) on Hispaniola
FIGURE 2. Photograph of Pogonomyrmex "darlingtoni" Wheeler lectotype worker: (A) frontal view of head, (B) lateral view of body, and (C) dorsal view of body (CASENT0217241). Photographs by Erin Prado from www.antweb.org.
FIGURE 7 in A taxonomic revision of the seed-harvester ant genus Pogonomyrmex (Hymenoptera: Formicidae) on Hispaniola
FIGURE 7. Photograph of Pogonomyrmex saucius Wheeler & Mann alate queen: (A) frontal view of head, (B) lateral view of body, and (C) dorsal view of body (MCZ-ENT00511553). Photographs by Michele Esposito from www.antweb.org.
FIGURE 6 in A taxonomic revision of the seed-harvester ant genus Pogonomyrmex (Hymenoptera: Formicidae) on Hispaniola
FIGURE 6. Photograph of Pogonomyrmex saucius Wheeler & Mann worker: (A) frontal view of head, (B) lateral view of body, and (C) dorsal view of body (MCZ-ENT00511548). Photographs by Michele Esposito from www.antweb.org.
FIGURE 4 in A taxonomic revision of the seed-harvester ant genus Pogonomyrmex (Hymenoptera: Formicidae) on Hispaniola
FIGURE 4. Bivariate plots for workers and queens of Pogonomyrmex aterrimus, Pogonomyrmex "darlingtoni", and Pogonomyrmex schmitti: (A) head width versus head length, (B) head width versus maximum length of hind femur, and (C) head width versus the ratio of maximal petiolar node width/maximal postpetiole width. Sample size for each caste is in parentheses.
FIGURE 1 in A taxonomic revision of the seed-harvester ant genus Pogonomyrmex (Hymenoptera: Formicidae) on Hispaniola
FIGURE 1. Photograph of Pogonomyrmex aterrimus Wheeler lectotype worker: (A) frontal view of head, (B) lateral view of body, and (C) dorsal view of body (CASENT0217240). Photographs by Erin Prado from www.antweb.org.
FIGURE 3 in A taxonomic revision of the seed-harvester ant genus Pogonomyrmex (Hymenoptera: Formicidae) on Hispaniola
FIGURE 3. Photograph of Pogonomyrmex aterrimus Wheeler dealate queen: (A) frontal view of head, (B) lateral view of body, and (C) dorsal view of body (CASENT0217248). Photographs by Erin Prado from www.antweb.org.
FIGURE 10 in A taxonomic revision of the seed-harvester ant genus Pogonomyrmex (Hymenoptera: Formicidae) on Hispaniola
FIGURE 10. Photograph of Pogonomyrmex schmitti Forel alate queen: (A) frontal view of head, (B) lateral view of body, and (C) dorsal view of body (CASENT0217246). Photographs by Erin Prado from www.antweb.org.
FIGURE 4 in A taxonomic revision of order Pilisuctorida (Ciliophora, Apostomatia) with keys to the subordinate taxa
FIGURE 4. Conidophryid ciliates found in Ukraine and Mexico. A—individual of Conidophrys fucatum at the seta of Gammarus balcanicus (Ukraine; ×640); B—division individual of C. fucatum at the seta of G. aequicauda (Ukraine; ×640); C—individual of C. fucatum at the short seta of Gammarus balcanicus (Ukraine; ×640); D—individual of C. fucatum at the seta of Hyalella azteca (Mexico; ×400); E—C. enkystotrophos at short seta of Echinogammarus olivii (Ukraine, ×640); F—C. pіtelkae at the seta of Litopenaeus setiferus (Mexico; ×400).
FIGURE 3 in A taxonomic revision of order Pilisuctorida (Ciliophora, Apostomatia) with keys to the subordinate taxa
FIGURE 3. The life cycles of ciliates from genera Conidophrys and Ascophrys after different authors. A—trophont of Conidophrys with two tomites; B—emerged tomite of Conidophrys; C—Conidophrys' tomite attached to seta; D—lacrymoid stage of Conidophrys' trophont development; E—spheroid stage of Conidophrys; F, G—cucurbitoid stages of Conidophrys; H—frontal view of Ascophrys rodor zenithal tomite; I—frontal view of nadiral tomite (m—macronucleus; o. f.—adhesive organelle); J—phoront stage in circular cyst; K—the early stage of trophont development; L—trophont stage; M—the development of trophont to tomont (propagative trophont) stage; N—tomitogenesis; O—the hatching of tomites; P—the field of trophont primordial ciliature; Q—the primary anlage of infraciliature in young tomont; R—multiplication of infraciliature anlages before tomitogenesis (stage M); S and T—two sequential phases of tomite infraciliature morphogenesis (a—"narrowed field; b—"ampliate field). (A–G—modified from Chatton and Lwoff 1936; H–T—modified from Campillo and Deroux 1974).
FIGURE 2 in A taxonomic revision of order Pilisuctorida (Ciliophora, Apostomatia) with keys to the subordinate taxa
FIGURE 2. Ciliates of genera Askoella and Ascophrys described by different authors. A—ventral side of Askoella janssoni; B—dorsal side of A. janssoni (scale bar 10 µm); C—macronucleus morphology of A. janssoni; D—A. heliostoma; E—trophont of Ascophrys rodor: F—phoront of Ascophrys rodor (A–C—modified from Fenchel, 1965; D—modified from Jankowski 1967b; E-F—modified from Deroux, Campillo and Bradbury, 1975).
FIGURE 1 in A taxonomic revision of order Pilisuctorida (Ciliophora, Apostomatia) with keys to the subordinate taxa
FIGURE 1. Ciliates of genus Conidophrys described by different authors. A—Mycodinium fucatum; B—trophont of Conidophrys pilisuctor; C—tomite of C. pilisuctor (lateral view); D—individual at the short seta of Jassa falcata; Eindividual of C. guttipotor at the short seta of Sphaeroma serratum; F—individual at the host non-secretory seta; G—trophont of Conidophrys sp. from Jaera albifrons with developing tomites (Mac—macronucleus; Mic—micronucleus; Cytcytopharynx): H—cucurbitoid stage of developing trophont from J. albifrons; I—the stalk and its base; J—Conidophrys enkystotrophos; K—trophont of C. pіtelkae, left lateral view; L—trophont of C. pіtelkae, right lateral view; M—young trophont of C. pіtelkae; N—ventral view of C. pіtelkae tomite (X—tube; Cy—cytostome). (A—modified from Averinzeff 1916: B-F—modified from Chatton and Lwoff 1936; G-I—modified from Jones and Khan 1970; J—modified from Jankowski 1972; K-N—modified from Bradbury 1975).
FIGURE 112 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURE 112. Distribution map of the known species of the genus Mayazomus, showing the type localities of the five new species: M. tzotzil, M. aluxe, M. kaamuul, M. yaax and M. loobil
FIGURES 106–111 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURES 106–111. Mayazomus loobil new species. Male holotype. Flagellum (106–108): 106, dorsal view. 107, ventral view. 108, lateral view. Female. Flagellum (109–111): 109, dorsal view. 110, ventral view. 111, lateral view. Scale bars = 0.2mm.
FIGURES 101–105 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURES 101–105. Mayazomus loobil new species. Heteromorphic male. Pedipalp: 101, ectal view. 102, mesal view. Homeomorphic male. Pedipalp: 103, ectal view. Intermediate homeomorphic male. Pedipalp: 104, ectal view. Female. Pedipalp: 105, ectal view. Scale bars = 0.5 mm.
FIGURES 95, 96 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURES 95, 96. Mayazomus loobil new species. Male holotype. Habitus: 95. Dorsal view. Female paratype. Habitus: 96. Dorsal view. Scale bar = 2 mm.
FIGURES 97–100 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURES 97–100. Mayazomus loobil new species. Male. Chelicera (97–99): 97, mesal view. 98, fixed finger. 99, movable finger. Female. Spermathecae: 100, dorsal view. Scale bar (Fig. 100) = 0.05 mm.
FIGURES 89–94 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURES 89–94. Mayazomus yaax new species. Male holotype. Flagellum (89–91): 89, dorsal view. 90, ventral view. 91, lateral view. Female. Flagellum (92–94): 92, dorsal view. 93, ventral view. 94, lateral view. Scale bars = 0.2 mm.
FIGURES 81–84 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURES 81–84. Mayazomus yaax new species. Male. Chelicera (81–83): 81, mesal view. 82, fixed finger. 83, movable finger. Female. Spermathecae: 84, dorsal view. Scale bar (Fig. 84) = 0.05 mm.
FIGURES 79, 80 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURES 79, 80. Mayazomus yaax new species. Male holotype. Habitus: 79. Dorsal view. Female paratype. Habitus: 80. Dorsal view. Scale bar = 2 mm.
FIGURES 85–88 in Taxonomic revision of the genus Mayazomus Reddell & Cokendolpher, 1995 (Schizomida: Hubbardiidae), with description of five new species from Chiapas, Mexico
FIGURES 85–88. Mayazomus yaax new species. Heteromorphic male. Pedipalp: 85, ectal view. 86, mesal view. Homeomorphic male. Pedipalp: 87, ectal view. Female. Pedipalp: 88, ectal view. Scale bars = 0.5 mm.
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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.