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Figure 7 from: Dayrat B, Goulding TC, Apte D, Bhave V, Comendador J, Ngô XQ, Tan SK, Tan SH (2016) Integrative taxonomy of the genus Onchidium Buchannan, 1800 (Mollusca, Gastropoda, Pulmonata, Onchidiidae). ZooKeys 636: 1-40. https://doi.org/10.3897/zookeys.636.8879
Figure 7 - Nervous and reproductive systems, Onchidium typhae. A Nervous system, Malaysia, Langkawi Island, scale bar 3.8 mm (USMMC 00002, #1) B Hermaphroditic (female), posterior parts, Singapore, scale bar 3.8 mm (ZRC.MOL.6397, #1) C Male, anterior, copulatory parts, Malaysia, Matang, scale bar 5 mm (USMMC 00005, #1) D Male, anterior, copulatory parts, Malaysia, Matang, scale bar 2.7 mm (USMMC 00005, #2). Abbreviations: agf, accessory gland flagellum; dd, deferent duct; fgm, female gland mass; hd, hermaphroditic duct; hg, hermaphroditic gland; lcg, left cerebral ganglion; lpg, left pedal ganglion; lplg, left pleural ganglion; ov, oviduct; ps, penial sheath; rcg, right cerebral ganglion; rm, retractor muscle; rpg, right pedal ganglion; rplg, right pleural ganglion; rs, receptaculum seminis; sp, spermatheca; spv, spermoviduct; v, vestibule; vg, visceral ganglion.
Figure 8 from: Dayrat B, Goulding TC, Apte D, Bhave V, Comendador J, Ngô XQ, Tan SK, Tan SH (2016) Integrative taxonomy of the genus Onchidium Buchannan, 1800 (Mollusca, Gastropoda, Pulmonata, Onchidiidae). ZooKeys 636: 1-40. https://doi.org/10.3897/zookeys.636.8879
Figure 8 - Male, anterior, copulatory parts, Onchidium typhae. A Penial hooks, Malaysia, Matang, scale bar 30 µm (USMMC 00005, #1) B Flat disc at distal end of flagellum of penial accessory gland, Malaysia, Langkawi Island, scale bar 100 µm (USMMC 00002, #1) C Tip of hollow spine, penial accessory gland, Singapore, scale bar 4 µm (ZRC.MOL.6397, #1) D Detail of B, scale bar 20 µm (USMMC 00002, #1) E Hollow spine, penial accessory gland, Singapore, scale bar 100 µm (ZRC.MOL.6397, #1) F Hollow spine, penial accessory gland, Malaysia, Langkawi Island, scale bar 100 µm (USMMC 00002, #1).
FIGURE 105. Distribution map for E in Electrogena brulini sp. nov. and E. vipavensis Zurwerra & Tomka, 1986 syn. nov. revealed by integrative taxonomy of E. gridellii (Grandi, 1953) (Ephemeroptera: Heptageniidae)
FIGURE 105. Distribution map for E. brulini (red) and E. gridellii (green).
Figure 4 from: Dayrat B, Goulding TC, Apte D, Bhave V, Comendador J, Ngô XQ, Tan SK, Tan SH (2016) Integrative taxonomy of the genus Onchidium Buchannan, 1800 (Mollusca, Gastropoda, Pulmonata, Onchidiidae). ZooKeys 636: 1-40. https://doi.org/10.3897/zookeys.636.8879
Figure 4 - Live specimens, Onchidium typhae. A Dorsal view, 45 mm long, India, West Bengal, station 48 (BNHS) B Dorsal view, 55 mm long, India, Andaman Islands, station 57 (BNHS) C Dorsal view, 40 mm long, Singapore (ZRC.MOL.6396) D Frontal view, 25 mm wide, India, Andaman Islands, station 57 (BNHS) E Ventral view, 50 mm long, India, Andaman Islands, station 59 (BNHS) F Ventral view, 40 mm long [DNA 1064], India, West Bengal, station 49 (BNHS) G Dorso-lateral view, 40 mm long, India, Andaman Islands, station 59 (BNHS) H Dorsal view, 42 mm long, Malaysia, Matang (USMMC 00005, #1).
Figure 5 from: Dayrat B, Goulding TC, Apte D, Bhave V, Comendador J, Ngô XQ, Tan SK, Tan SH (2016) Integrative taxonomy of the genus Onchidium Buchannan, 1800 (Mollusca, Gastropoda, Pulmonata, Onchidiidae). ZooKeys 636: 1-40. https://doi.org/10.3897/zookeys.636.8879
Figure 5 - External morphology and digestive system, Onchidium typhae. A Anterior region, ventral view, Singapore, scale bar 8 mm (ZRC.MOL.6396) B Posterior region, ventral view, Singapore, scale bar 7 mm (ZRC.MOL.6396) C Dorsal papillae (preserved), Singapore, station 8, scale bar 3.8 mm (ZRC.MOL.6396) D Buccal gland, Malaysia, Langkawi Island, scale bar 3 mm (USMMC 00002, #1) E Digestive system, dorsal view, Singapore, scale bar 5 mm (ZRC.MOL.6397, #1) F Digestive system, ventral view, Singapore, scale bar 5 mm (ZRC.MOL.6397, #1) G Stomach (digestive gland removed), ventral view, Singapore, scale bar 5 mm (ZRC.MOL.6397, #1). Abbreviations: ddg, dorsal lobe of digestive gland; e, esophagus; i, intestine; ldg, lateral lobe of the digestive gland; pdg, posterior lobe of the digestive gland; rg, rectal gland; st1, stomach chamber 1; st2, stomach chamber 2; st3, stomach chamber 3; st4, stomach chamber 4.
Figure 2 in Integrative taxonomy, distribution, and host associations of Geocenamus brevidens and Quinisulcius capitatus from southern Alberta, Canada
Figure 2: Light photomicrographs Quinisulcius capitatus. (A) Entire female, (B) Esophageal region, (C) Lip region, (D) Basal esophageal bulb, (E) Posterior region with complete reproductive system, (F) Posterior region with eggs, (G-J) Vulval region, (K) Lateral lines, (L-P) Female tails. Scale bars: (A) 100 μm, (B, C, F-J; L-P) 20 μm, (E) 50 μm, (D, K) 5 μm. Arrows point to (a) anus, (d) deirids, (exp) excretory pore, (ph) phasmid, and (v) vulva.
Figure 5 in Integrative taxonomy, distribution, and host associations of Geocenamus brevidens and Quinisulcius capitatus from southern Alberta, Canada
Figure 5: Phylogenetic relationships within selected genera of subfamily Telotylenchinae and subfamily Merliniinae as inferred from Bayesian analysis using the ITS of the rRNA gene sequence dataset with the GTR + I + G model (lnL = 10,413.7629; AIC = 21119.5049; freq A = 0.1932; freq C = 0.2202; freq G = 0.2725; freq T = 0.3141; R(a) = 0.8338; R(b) = 3.3701; R(c) = 1.6297; R(d) = 0.6490; R(e) = 3.3701; R(f) = 1.0000). Posterior probability of more than 70% is given for appropriate clades. Newly obtained sequences are indicated in bold. **previously unidentified.
FIGURE 6 in Integrative taxonomy study of brackish water crabs of the genus Ptychognathus Stimpson, 1858 (Crustacea: Brachyura: Varunidae) from Polynesia, with description of two new species
FIGURE 6. Distribution map of the species studied. Stars indicate type localities.
FIGURE 1 in Integrative taxonomy study of brackish water crabs of the genus Ptychognathus Stimpson, 1858 (Crustacea: Brachyura: Varunidae) from Polynesia, with description of two new species
FIGURE 1. Map of the Polynesian triangle and Polynesian sub-regions.
FIGURE 3 in Integrative taxonomy reveals a new species of pacu (Characiformes: Serrasalmidae: Myloplus) from the Brazilian Amazon
FIGURE 3 | Myloplus nigrolineatus, paratypes, INPA 23312, lago Mabi, São Gabriel da Cachoeira, Amazonas State, Brazil. A. 199.1 mm SL, male; B. 182.0 mm SL, female.
FIGURE 6 in Integrative taxonomy reveals a new species of pacu (Characiformes: Serrasalmidae: Myloplus) from the Brazilian Amazon
FIGURE 6 | Chronogram (maximum clade credibility consensus of 3,000 post burn-in posterior trees) of Myloplus and related genera constructed in BEAST using DNA barcode sequence data. Comprises 161 unique haplotypes (total 406 sequences), with the number of haplotypes represented by each tip in parentheses, followed by the drainages where these haplotypes were recovered. Species discovery congruence for four methods (localMinima, mPTP, bGMYC and GMYC) is presented in colored columns. Branch support (Bayesian posterior probability) of ≥95% is shown with an orange node label. Myloplus nigrolineatus is highlighted with a green box.
FIGURE 7 in Integrative taxonomy reveals a new species of pacu (Characiformes: Serrasalmidae: Myloplus) from the Brazilian Amazon
FIGURE 7 | Myleus asterias, paralectotypes, BMNH 1971.5.10.61-2, Essequibo River, Guyana. Photo: Kevin Webb. https://data.nhm.ac.uk/ object/7b7ff23f-df96-47e2-8f6b-dcf25ca45984/1572393600000
FIGURE 1 in An integrative taxonomy of some close related Palaearctic Macromia spp. (Anisoptera: Macromiidae)
FIGURE 1. Face color patterns of Macromia amphigena (a1–5) and M. manchurica (m1–3).
FIGURE 4 in An integrative taxonomy of some close related Palaearctic Macromia spp. (Anisoptera: Macromiidae)
FIGURE 4. Integrative taxonomy result of Macromia spp, the ML tree on the left based on ITS data.
FIGURE 5 in An integrative taxonomy of some close related Palaearctic Macromia spp. (Anisoptera: Macromiidae)
FIGURE 5. Male genital organs of Macromia amphigena (a), M. manchurica (b), and hybrid lxg0010 (c).
Fig. 5 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 5 Diaforobiotus islandicus (Richters, 1904): egg seen in SEM: A general view of the entire egg; B–E morphological details of egg surface and egg processes; F details of one pore. Filled flat arrowheads indicate rings of pores surrounding egg processes. Scale bars in μm
Fig. 9 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 9 Diaforobiotus svalbardicus sp. nov.: oral cavity seen in SEM: A, B dorsal and ventral views of the oral cavity armature seen from different angles, respectively. Filled flat arrowheads indicate the first band of teeth, empty flat arrowheads indicate the second band of teeth, filled indented arrowheads indicate the third band of teeth whereas empty indented arrowhead indicates the medial tooth in dorsal portion of the third band of teeth. Scale bars in μm
Fig. 11 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 11 Diaforobiotus svalbardicus sp. nov.: egg seen in SEM: A general view of the entire egg; B–F morphological details of egg surface and egg processes. Filled flat arrowheads indicate singular, isolated micropores in the egg surface between processes. Scale bars inμm
Fig. 3 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 3 Diaforobiotus islandicus (Richters, 1904): buccopharyngeal apparatus seen in PCM: A dorsal projection of the entire bucco-pharyngeal apparatus; B, C dorsal (B) and ventral (C) views of the oral cavity armature; D, E dorsal (D) and ventral (E) view of macroplacoids. Empty arrows indicate dorsal spikes, filled flat arrowheads indicate the first band of teeth, empty flat arrowheads indicate the second band of teeth, filled indented arrowheads indicate the third band of teeth, empty indented arrowhead indicates the medial tooth in dorsal portion of the third band of teeth whereas filled arrows indicate constrictions in macroplacoids. Scale bars in μm
Fig. 7 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 7 Diaforobiotus svalbardicus sp. nov.: claws seen in PCM (A, B) and SEM (C, D): A claws III (holotype); B claws IV (holotype); C claws I; D claws IV. Filled flat arrowhead indicates cuticular bare above the claws whereas empty indented arrowheads indicate double muscle attachments. Scale bars in μm
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.
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