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FIGURE 10 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 10. Minyaspis amylaneae sp. nov. Paratype CASIZ 110136; outline of whole specimen showing general arrangement of plates in relation to each other (A), plate details are not shown in this simple outline drawing, see SEMs in Fig. 9 for plate details. Paratype CASIZ 110132; Mandible (B), Maxilla 1 (C), Cirrus I (D). Holotype CASIZ 110160; whole specimen, with host tissues covering capitulum except where abraded away from handling (E).
FIGURE 8 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 8. Oxynaspis joandianae sp. nov. Paratype CASIZ 172661; outline of whole specimen showing general arrangement of plates in relation to each other (A), plate details are not shown in this simple outline drawing, see SEMs in Fig. 7 for plate details. Paratype CASIZ 104147; Mandible (B), Maxilla 1 (C), Cirrus I (D). Holotype CASIZ 104150; whole specimen,
FIGURE 12 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 12. Minyaspis opreskoi sp. nov. Paratype CASIZ 172660; outline of whole specimen showing general arrangement of plates in relation to each other (A), plate details are not shown in this simple outline drawing, see SEMs in Fig. 11 for plate details. Paratype CASIZ 110162, Mandible (B), Maxilla 1 (C), Cirrus I (D). Holotype CASIZ 110163; whole specimen, attached to branch of host, with host tissue covering capitulum (E).
FIGURE 1 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 1. Archoxynaspis eocenica (Withers, 1935), copy of Plate XVI from Withers, 1935. Wither's original caption follows: EXPLANATION OF PLATE XVI. Lepas eocenica, sp. n. Middle Eocene, Ledian, Upper Bracklesham Beds: Selsey Bill, Sussex.Figs. 1–3. Scuta. Holotype (fig.1), a. outer view; b, inner view. Figs. 4–11. Carina (incomplete). Figs. 4, 10, outer view of two plates showing basal plate; fig. 5, outer view of apical part; figs. 6,7, inner view of two basal parts, showing variation in outward curvature of basal plate; figs. 8,9, side view of two plates, fig. 8 showing cross-section; fig. 11, plate with basal plate broken away. Figs. 12–14. Terga, outer views. Fig. 15. Reconstruction. (Figs. 1–15, x 6 diam.)
FIGURE 4 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 4. Oxynaspis perekrestenkoi sp. nov. Paratype CASIZ 110191; outline of whole specimen showing general arrangement of plates in relation to each other (A), plate details are not shown in this simple outline drawing, see SEMs in Fig. 3 for plate details. Paratype CASIZ 113628; Mandible (B), Maxilla 1 (C), Cirrus I (D). Holotype CASIZ 110166; whole specimen, with host tissue and spines covering capitulum (E).
FIGURE 2 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 2. Pycnaspis connectens (Broch, 1931), copy of Figure 13 from Broch, 1931. Specimen in side view (a), first cirrus with basal filamentary appendage (b), mouthparts in side view (c), labrum seen from the ventral side (d), mandible (e), maxilla 1 (f).
FIGURE 3 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 3. Oxynaspis perekrestenkoi sp. nov. Paratype, CASIZ 113628. Carina, dorsal view (A), oblique view (B), side view (C). Tergum exterior (D), interior (E). Scutum exterior (F), interior (G). Scale bar equals 1 mm.
FIGURE 6 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 6. Oxynaspis joankovenae sp. nov. Holotype CASIZ 110147; outline of whole specimen showing general arrangement of plates in relation to each other (A), plate details are not shown in this simple outline drawing, see SEMs in Fig. 5 for plate details. Paratype CASIZ 110128: Mandible (B), Maxilla 1 (C), Cirrus I (D). Holotype CASIZ 110147; whole specimen, with host tissues removed from capitulum, golden-brown chitinous layer visible (E).
FIGURE 9 in Oxynaspididae (Crustacea, Cirripedia): phylogenetics and evolutionary ecology, with descriptions of three new genera and six new species
FIGURE 9. Minyaspis amylaneae sp. nov. Paratype, CASIZ 113621. Carina, dorsal view (A), side view (B). Tergum exterior (C), interior (D). Scutum exterior (E), interior (F). Scale bar equals 1.5 mm for A, B, C, D; 1 mm for E and F.
FIGURE 3. A–F in A new species of Mictyris Latreille, 1806 (Crustacea: Decapoda: Brachyura: Mictyridae) from the Andaman coast of Thailand, with notes on its ecology and behaviour
FIGURE 3. A–F, Mictyris thailandensis sp. nov., live colour patterns: A, B, adult colouring, Pakbara Beach, Satun Province, southern Andaman coast; C, sub-adult colouring, Ao Tang Khoen, Phuket; D, E, juvenile colouring, Bang Toei Pa Khlok, Thalang, Phuket; F, adult male, Pakbara Beach. G, H, Mictyris guinotae Davie, Shih & Chan, 2010, adult male from Funaura Bay, Iriomote I., Ryukyus (holotype, QM-W28919, CW 13.7 mm). I, Mictyris brevidactylus Stimpson, 1858, from Taiwan. (Photos A, B, F, Puntip Wisespongpand; C, Peter K.L. Ng; D, E, I, Hsi-Te Shih; G, H, Tohru Naruse).
FIGURE 4 in A new species of Mictyris Latreille, 1806 (Crustacea: Decapoda: Brachyura: Mictyridae) from the Andaman coast of Thailand, with notes on its ecology and behaviour
FIGURE 4. Mictyris thailandensis sp. nov., A, type locality, Pakbara Beach, Satun Province, southern Andaman Sea coast, Thailand; B, cork-screw burrowing behaviour; C, typical extensive sand "hummocks" covering the area following sub-surface feeding behaviour; D, crabs make vertical burrows, and at least at the type locality the sand becomes black and anoxic at about 10 cm from the surface; E, typical habitat at Bang Toei Pa Khlok, Thalang, Phuket; F, juvenile specimens found at Bang Toei Pa Khlok. (Photos A–D, Puntip Wisespongpand; E, F, Hsi-Te Shih).
FIGURE 2. A–C in A new species of Mictyris Latreille, 1806 (Crustacea: Decapoda: Brachyura: Mictyridae) from the Andaman coast of Thailand, with notes on its ecology and behaviour
FIGURE 2. A–C, Mictyris thailandensis sp. nov., A, left cheliped (holotype male); B, C, lateral and ventral views of distal portion of G1 (paratype male, QM-W29184, 13.3×14.4 mm). D, Mictyris brevidactylus Stimpson, 1858, from Taiwan (ZRC1998), ventral view of distal portion of G1. E, Mictyris guinotae Davie, Shih & Chan, 2010, from Amami Ohsima, Kagoshima Prefecture (QM-W28923), ventral view of distal portion of G1.
FIGURE 1 in A new species of Mictyris Latreille, 1806 (Crustacea: Decapoda: Brachyura: Mictyridae) from the Andaman coast of Thailand, with notes on its ecology and behaviour
FIGURE 1. Mictyris thailandensis sp. nov., paratype male (14.6×15.4 mm), from Pakbara beach, Satun Province, southern Andaman coast, Thailand (PMBC). A, dorsal view; B, frontal view; C, abdomen.
FIGURE 6 in Two new stygobiotic species of Elaphoidella (Crustacea: Copepoda: Harpacticoida) with comments on geographical distribution and ecology of harpacticoids from caves in Thailand
FIGURE 6. Elaphoidella jaesornensis sp. nov., female (holotype): A, habitus, dorsal view; B, genital double-somite, abdominal somites, and anal somite, dorsal view; C, genital double-somite, abdominal somites, and anal somite, ventral view; D, genital complex; E, anal somite and caudal ramus, lateral view; F, antennule; G, antenna; H, mandible; I, maxillule; J, maxilla; K, maxilliped. Scale bars = 100 µm.
FIGURE 4 in Two new stygobiotic species of Elaphoidella (Crustacea: Copepoda: Harpacticoida) with comments on geographical distribution and ecology of harpacticoids from caves in Thailand
FIGURE 4. Elaphoidella thailandensis sp. nov., male (allotype): A, habitus, dorsal view; B, antennule; C, genital somite, abdominal somites, and anal somite, ventral view; D, anal somite and caudal rami, dorsal view. Scale bars = 100 µm.
FIGURE 2 in Two new stygobiotic species of Elaphoidella (Crustacea: Copepoda: Harpacticoida) with comments on geographical distribution and ecology of harpacticoids from caves in Thailand
FIGURE 2. Elaphoidella thailandensis sp. nov., female (holotype): A, antennule; B, antenna; C, mandible; D, maxillule; E, maxilla; F, maxilliped. Scale bar = 100 µm.
FIGURE 1 in Two new stygobiotic species of Elaphoidella (Crustacea: Copepoda: Harpacticoida) with comments on geographical distribution and ecology of harpacticoids from caves in Thailand
FIGURE 1. Elaphoidella thailandensis sp. nov., female (holotype): A, habitus, dorsal view; B, genital double-somite, abdominal somites, and anal somite, ventral view; C, anal somite and caudal rami, dorsal view. Scale bars = 100 µm.
FIGURE 34 in Systematics, morphology, and ecological history of the Mascarene starlings (Aves: Sturnidae) with the description of a new genus and species from Mauritius
FIGURE 34. Author's scaled illustration showing the morphologies of the endemic Mascarene starlings. Fregilupus varius (above); Necropsar rodericanus (centre); Cryptopsar ischyrhynchus gen.nov. sp.nov. (below).
FIGURE 33 in Systematics, morphology, and ecological history of the Mascarene starlings (Aves: Sturnidae) with the description of a new genus and species from Mauritius
FIGURE 33. Skins of the two subspecies of Sturnia erythropygia, the Southeast Asian starling species that most closely resembles Fregilupus varius in colouration. From left to right, dorsal view, lateral view: Sturnia erythropygia erythropygia NHMUK 1898.4.28.38 ♂; NHMUK 1898.4.28.40 ♀; Sturnia erythropygia andamanensis NHMUK 1955.6.3.28 ♂; NHMUK 1955.6.3.27 ♀.
FIGURE 31 in Systematics, morphology, and ecological history of the Mascarene starlings (Aves: Sturnidae) with the description of a new genus and species from Mauritius
FIGURE 31. Comparison of rostra of Necropsar rodericanus showing possible sexual dimorphism. A–B, lateral view, C–D, dorsal view. A, D. NHMUK u/r; B, C. NHMUK A1468 u/s. Note the shorter, deeper and wider bill in A and D, and here interpreted as female. Scale bar = 10mm.
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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.