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130 results for “Boa”
Figure 15 in The complete larval development of the lobster shrimp Boasaxius princeps Boas, 1880 (Decapoda: Axiidea: Axiidae) obtained in the laboratory
Figure 15. Boasaxius princeps, megalopa. (A) Complete larva, dorsal view; (A′) rostrum, dorsal view; (B) same, lateral view; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla.
Figure 3 in The complete larval development of the lobster shrimp Boasaxius princeps Boas, 1880 (Decapoda: Axiidea: Axiidae) obtained in the laboratory
Figure 3. Boasaxius princeps, third zoea. (A) Complete larva, dorsal view; (B) same, lateral view; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla.
Figure 13 in The complete larval development of the lobster shrimp Boasaxius princeps Boas, 1880 (Decapoda: Axiidea: Axiidae) obtained in the laboratory
Figure 13. Boasaxius princeps, eighth zoea. (A) Complete larva, lateral view; (B) carapace, dorsral view; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla.
Figure 2 in The complete larval development of the lobster shrimp Boasaxius princeps Boas, 1880 (Decapoda: Axiidea: Axiidae) obtained in the laboratory
Figure 2. Boasaxius princeps, second zoea. (A) Complete larva, dorsal view; (A′) rostral spine; (B) complete larva, lateral view; (B′) anteroventral carapace margin; (C) antennule; (D) antenna; (E) mandibles; (F) maxillule; (G) maxilla; (H) first maxilliped; (I) second maxilliped; (J) third maxilliped; (K) pereiopods 1 and 2; (L) telson, dorsal view.
Survive and Thrive Boa Vista Early Childhood Program
ClinicalTrials.gov study NCT03386747. IPD Sharing: NO. Countries: 1. Publications: 1.
Data from: Ecological specialization and morphological diversification in Greater Antillean boas
Open the record for dataset details and reuse information.
Figure 2 in Aspects of natural history in a sand boa, Eryx muelleri (Erycidae) from arid savannahs in Burkina Faso, Togo, and Nigeria (West Africa)
Figure 2. Locality records of Eryx muelleri. Black dots indicate original localities from this study; white dots indicate historical records . Symbols: BF = Burkina Faso; RMM = Mali; RPB = Benin; TG = Togo; WAN = Nigeria; RN = Niger. Numbers refer to capture localities as given in Appendix 1.
Figure 4 in Aspects of natural history in a sand boa, Eryx muelleri (Erycidae) from arid savannahs in Burkina Faso, Togo, and Nigeria (West Africa)
Figure 4. Microhabitat use by Eryx muelleri. Sample size would indicate the number of captured specimens.
Figure 3 in A new dwarf boa (Serpentes, Booidea, 'Tropidophiidae') from the Early Oligocene of Belgium: a case of the isolation of Western European snake faunas
Figure 3. Cloacal and caudal vertebrae of Falseryx neervelpensis sp. nov. A–C, cloacal vertebra (IRSNB R 233), in left lateral (A), posterior (B) and dorsal (C) views; D–H, anterior caudal vertebra (IRSNB R 234), in left lateral (D), posterior (E), anterior (F), dorsal (G) and ventral (H) views; I and J, middle caudal vertebra (IRSNB R 235), in left lateral (I) and posterior (J) views; K and L, posterior caudal vertebra (IRSNB R 236), in left lateral (K) and posterior (L.) views. Abbreviations: ha, haemapophyses; h, hypapophysis; ls, lymphapophyses; pl, pleurapophyses.
Figure 1 from: Burridge AK, Janssen AW, Peijnenburg KTCA (2016) Revision of the genus Cuvierina Boas, 1886 based on integrative taxonomic data, including the description of a new species from the Pacific Ocean (Gastropoda, Thecosomata). ZooKeys 619: 1-12. https://doi.org/10.3897/zookeys.619.10043
Figure 1 - Holotype and paratypes of Cuvierina tsudai and holotype of Cuvierina pacifica. A Holotype (RMNH.5004167) and B–I paratypes (RMNH.5004168-72) of Cuvierina tsudai and J holotype of Cuvierina pacifica (RGM 458.690) photographed in a ventral view. Photographs of RMNH.5004169-72 from Burridge et al. (2015); RMNH.5004167-68 taken by R. van der Hulst and RGM 458.692 taken by E.F. de Vogel, this study. RMNH = Naturalis Biodiversity Center, mollusc collection and RGM = Naturalis Biodiversity Center, fossil planktonic mollusc collection, Leiden.
Figure 2 from: Burridge AK, Janssen AW, Peijnenburg KTCA (2016) Revision of the genus Cuvierina Boas, 1886 based on integrative taxonomic data, including the description of a new species from the Pacific Ocean (Gastropoda, Thecosomata). ZooKeys 619: 1-12. https://doi.org/10.3897/zookeys.619.10043
Figure 2 - Shape variation in Cuvierina tsudai and Cuvierina pacifica by means of Relative Warp (RW) data. Ordination of RW data of Cuvierina tsudai and Cuvierina pacifica for the first ventral and apertural RWs (N = 167 excluding 1 specimen with only one orientation). On the X-axis, RW1 depicts 78.26% of the total ventral shape variation. On the Y-axis, 69.43% of the apertural shape variation is explained by its RW1. Shape variations depicted by ventral and apertural RW1 (with subsequent RWs = 0) are shown.
Figure 3 in Histological data on bone and teeth in two dragonfishes (Stomiidae; Stomiiformes): Borostomias panamensis Regan & Trewavas, 1929 and Stomias boa Reinhardt, 1842
Figure 3. – Borostomias panamensis (Azan). A: Cross section of a caniniform tooth showing the dentine core (De) and the pulp cavity perfectly circular (pc). In the dentinous tissue, numerous sections of vascular canals are seen (arrowheads). B: Detail of figure 3A. The vascular canals are surrounded by numerous canalicles more or less ramified (arrows), and that housed odontoblastic processes. Scale bars: A = 50 μm; B = 20 μm.
Figure 15 in Revision of the cranial anatomy and phylogenetic relationships of the Eocene minute boas Messelophis variatus and Messelophis ermannorum (Serpentes, Booidea)
Figure 15. Three-dimensional reconstruction of quadrate and supratemporal of the paratype specimen of Messelophis ermannorum (HLMD-Me 7915), based on HRXCT data. Scale bar: 2 mm. Abbreviations: bo, basioccipital; cb, compound bone; cc, cephalic condyle; l, supratemporal lip that receives the quadrate; ot, otooccipital; p, parietal; pot, prootic; pt, pterygoid; q, quadrate; sh, stylohyal; so, supraoccipital; st, supratemporal.
Figure 10 in Revision of the cranial anatomy and phylogenetic relationships of the Eocene minute boas Messelophis variatus and Messelophis ermannorum (Serpentes, Booidea)
Figure 10. Three-dimensional reconstruction of the circumorbital bones of the paratype specimen of Messelophis ermannorum (HLMD-Me 7915) based on HRXCT data: A, right prefrontal in dorsal view; B, left prefrontal in lateral view, C, right postorbital in dorsolateral view. Scale bar: 2 mm. Abbreviations: dl, dorsal lamina of prefrontal; ec, ectopterygoid; fr, frontal; ld, lacrimal duct; lf, lateral foot process; ll, lateral lamina of prefrontal; mfp, medial foot process; mx, maxilla; n, nasal; nn, nasal notch; ol, outer orbital lobe; smx, septomaxilla.
Figure 2 in Revision of the cranial anatomy and phylogenetic relationships of the Eocene minute boas Messelophis variatus and Messelophis ermannorum (Serpentes, Booidea)
Figure 2. Lateral right view of the snout of Messelophis variatus (SMF ME 1828 a+b). Scale bar: 1 mm. Abbreviations: ap, ascending process of the premaxilla; mx, right maxilla; n, right nasal; np, nasal process of premaxilla; prf, prefrontal; pmx, premaxilla; smx, lateral vertical flange of septomaxilla; tp, transverse process of premaxilla.
Figure 1 in Revision of the cranial anatomy and phylogenetic relationships of the Eocene minute boas Messelophis variatus and Messelophis ermannorum (Serpentes, Booidea)
Figure 1. Most complete and informative preserved skulls of Messelophis variatus from the Middle Eocene Messel Formation, Germany: A, holotype specimen SMF ME 1828 a+b, in right lateral view; B, ventral view of the skull of paratype specimen SMF ME 2379, partially covered by mid-trunk vertebrae; C, dorsal view of the skull of a new undescribed specimen AMNH FARB 30650. Scale bar: 5 mm.
Figure 8 in Revision of the cranial anatomy and phylogenetic relationships of the Eocene minute boas Messelophis variatus and Messelophis ermannorum (Serpentes, Booidea)
Figure 8. Three-dimensional reconstruction of the skull of the paratype specimen of Messelophis ermannorum (HLMD- Me 7915) based on HRXCT data in dorsal (A), ventral (B), left dorsolateral (C), and right dorsolateral (D) views. Scale bar: 5 mm.
Fig. 8. X in A time relic: a new species of dwarf boa, Tropidophis Bibron, 1840 (Serpentes: Amerophidia), from the Upper Amazon Basin
Fig. 8. X-ray images of Tropidophis cacuangoae sp. nov. A. ♂, holotype (DHMECN 16725). B. ♀, paratype (DHMECN 15893). The red arrow shows the pelvic remnants of the male specimen, which are absent in the female.
Figure 3 from: Burridge AK, Janssen AW, Peijnenburg KTCA (2016) Revision of the genus Cuvierina Boas, 1886 based on integrative taxonomic data, including the description of a new species from the Pacific Ocean (Gastropoda, Thecosomata). ZooKeys 619: 1-12. https://doi.org/10.3897/zookeys.619.10043
Figure 3 - Typical specimens of six Cuvierina species.
Figure 6 in Reevaluation of the taxonomic status of sand boas of the genus Eryx (Daudin, 1803) (Serpentes: Boidae) in northeastern Iran
Figure 6. The general view of E. miliaris: a) dorsal and b) ventral 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.