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Fig. 2 in Figs. 18-21 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 2. Juveniles of cobaltcap silverside Hypoatherina tsurugae and yellowfin seabream Acanthopagrus latus infested with Mothocya parvostis. Arrows indicate M. parvostis. Scale bars = 5 mm.
Fig. 1 in Figs. 18-21 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 1. Diagram of cymothoid life cycles including optional intermediate and final hosts. Solid lines indicate migration by freeswimming and broken lines indicate development of cymothoids.
Fig. 1 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 1. Maximum likelihood tree based on the partial sequence of Cytochrome c oxidase subunit I of Grammostola from South America and related Theraphosidae genus. Capital letters above nodes refer to lineages discussed in the text. Numbers close to nodes are the Bayesian posterior probabilities (PPs)/maximum likelihood bootstrap support (ML), respectively. Only nodal support above PP = 0.5 or ML = 50 is displayed ('*' indicates lower support values). Lineage assignments of distance-base (ASAP1 and ASAP2 means first and second best results of ASAP, respectively) and tree-based (bPTP) methods. Habitus photos of male and female of Grammostola pulchra. G. pulchra* means sensu Montes de Oca et al. 2016.
Figs. 14–17 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Figs. 14–17. Grammostola pulchra. Habitat in the municipality of Capão do Leão, State of Rio Grande do Sul, Brazil. (14) General view of native wetland area between groves of Eucalyptus spp.; (15) Burrows, arrows indicate the holes that compose entrances of different burrows; (16) Individual at the entrance of the burrow; (17) A female in natural habitat. Photographed by R. S. Pittella.
Fig. 13 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Fig. 13. Distribution map of Grammostola pulchra. Table 2. Length (mm) of legs and palpal segments of the male (MCTP 41831) of Grammostola pulchra
Figs. 9–12 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Figs. 9–12. Copulatory organs of Grammostola pulchra. (9–11): Male (MTCP 41831), (9) left palpal bulb retrolateral view, (10) left palpal bulb prolateral view, (11) embolus apex detail, arrow indicates the developed apical keel. (12) Female (MTCP 41833), spermathecae ventral view. Scale bars: 9, 10, 12 = 1 mm; 11 = 0.1 mm.
Figs. 2–8 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Figs. 2–8. Morphological characters of Grammostola pulchra. Male (MTCP 41831), (2) carapace and chelicerae; (3) sternum, maxillae, labium and coxae; (4) palpal tarsi, prolateral view, arrow indicate the small tuft of spiniform setae; (5) prolateral face of coxa I; (6–8) Right leg I tibial apophysis, (6) ventral view, (7) prolateral view, (8) small branch with spine on the inner side and group of subapical macrosetae. Scale bars: 2–3 = 5 mm; 4–8 = 1 mm.
Figs. 18–21 in Using the Integrative Approach to Update a Gap of One Century: Redescription and New Distribution Records of the South American Tarantulas (Araneae: Mygalomorphae: Theraphosidae).
Figs. 18–21. Material comparison of Grammostola pulchra. (18) First illustration of the species since their original description, from Bücherl (1951, p. 199); (19) Type specimen; (20) Male habitus; (21) Female habitus. Scale bars: 10 mm. Photographed by P. G. Bassa.
Fig. 4 in A new distribution record of Chrysosplenium grayanum Maxim. (Saxifragaceae) in Korea: Evidence from morphological and molecular data
Fig. 4. Phylogenetic relationships resulting from the maximum parsimony analysis of nrITS sequences from eight Chrysosplenium taxa and two outgroup taxa (C. flagelliferaum in ser. Flagellifera and C. japonicum in ser. Alternifolia). Numbers above the branches indicate bootstrap values (≧80) for maximum parsimony (left) and neighbor-joining (right) analysis.
Fig. 2 in A new distribution record of Chrysosplenium grayanum Maxim. (Saxifragaceae) in Korea: Evidence from morphological and molecular data
Fig. 2. Photos of Chrysosplenium grayanum Maxim. A. Plant habit during flowering; B. Leaves; C. Inflorescence with bracteal leaves; D. Close-up of sepals and stamens.
Fig. 3 in A new distribution record of Chrysosplenium grayanum Maxim. (Saxifragaceae) in Korea: Evidence from morphological and molecular data
Fig. 3. Scanning electron micrograph of seed of Chysosplenium grayanum Maxim. A. Seed; B. Close-up of seed surface, showing smooth surface with cylindrical papillose with roundish head at the tip.
Fig. 1 in A new distribution record of Chrysosplenium grayanum Maxim. (Saxifragaceae) in Korea: Evidence from morphological and molecular data
Fig. 1. Illustrations of Chrysosplenium grayanum Maxim. A. Flowering plant; B. Inflorescence; C. Sepals and stamens; D. Capsule with persistent sepals; E. Leaf arrangement. Illustrations of Chrysosplenium grayanum were drawn by Park Chan-Ae.
Fig. 1 in SHORT COMMUNICATION New distributional records of the Amazon River Frog Lithobates palmipes (Spix, 1824) in Peru
Fig. 1. Known distribution of Lithobates palmipes in South America and location of new records in Peru. White circles represent literature data and red circles indicate the new records in San Martin (http://www.inaturalist.org/observations/2384262), Madre de Dios (MUSA-3722, MUSA-3723) and Puno (MHNC-7864) regions.
Fig. 5 in New distribution record of northern lineage plant of Stellaria filicaulis (Caryophyllaceae) from South Korea
Fig. 5. The neighbor-joining phylogenetic tree of the Korean Stellaria species based on nuclear ribosomal internal transcribed spacer (rITS) sequences. The bootstrap values for each node are indicated in the tree. Voucher numbers corresponding to each species are shown next to scientific names.
Fig. 1 in New distribution record of northern lineage plant of Stellaria filicaulis (Caryophyllaceae) from South Korea
Fig. 1. Type specimen of Stellaria filicaulis Makino in National Museum of Nature and Science (TNS), Japan.
Fig. 2 in New distribution record of northern lineage plant of Stellaria filicaulis (Caryophyllaceae) from South Korea
Fig. 2. Voucher specimen of Stellaria filicaulis Makino in National Institute of Biological Resources (KB), South Korea.
Fig. 3 in Three new species of Anacharis Dalman, 1823 (Hymenoptera: Figitidae), with revised taxonomy and distribution records of Palaearctic and Indomalayan species
Fig. 3. Anacharis belizini sp. nov. A. Head in front view. B. Mesosoma in lateral view. C. Mesosoma in dorsal view. D. Propodeum.
Fig. 2. A–C in Three new species of Anacharis Dalman, 1823 (Hymenoptera: Figitidae), with revised taxonomy and distribution records of Palaearctic and Indomalayan species
Fig. 2. A–C. Mesosoma in dorsal view. A–B. Anacharis eucharoides (Dalman, 1818). C. A. immunis Walker, 1835. – D–F. Mesosoma in lateral view. D. A. eucharoides (Dalman, 1818). E–F. A. immunis Walker, 1835, F is detail of scutellum.
Fig. 4 in Three new species of Anacharis Dalman, 1823 (Hymenoptera: Figitidae), with revised taxonomy and distribution records of Palaearctic and Indomalayan species
Fig. 4. Anacharis fergussoni sp. nov. A. Mesosoma in dorsal view. B. Mesosoma in lateral view. C. Head in dorsal view. – Anacharis norvegica sp. nov. D. Mesosoma in dorsal view. E. Mesosoma in lateral view. F. Petiole.
Fig. 1. A–B. Anacharis antennata Belizin, 1951, mesosoma. A. Dorsal view. B. Lateral view. – C–D. A. parapsidalis Belizin, 1951, mesosoma. C. Dorsal view. D in Three new species of Anacharis Dalman, 1823 (Hymenoptera: Figitidae), with revised taxonomy and distribution records of Palaearctic and Indomalayan species
Fig. 1. A–B. Anacharis antennata Belizin, 1951, mesosoma. A. Dorsal view. B. Lateral view. – C–D. A. parapsidalis Belizin, 1951, mesosoma. C. Dorsal view. D. Lateral view.
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.