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Figure 3. Calanoides male leg 5 in Calanoides natalis Brady, 1914 (Copepoda: Calanoida: Calanidae): identity and distribution in relation to coastal oceanography of the eastern Atlantic and western Indian Oceans
Figure 3. Calanoides male leg 5 indicating the measurements made, from which the ratios in Table 4 were calculated. (A) Length of distal spine on right exopod segment 3; (B) length of right exopod segment 3 measured along inner border; (b) width of right exopod segment 3 measured at its widest part; (C) length of right exopod segment 2 measured along inner border; (D) length of right exopod segment 1 measured along inner border; (E) total length of right endopod; (A') length of terminal spine on left exopod segment 3; (B') length of left exopod segment 3 measured along inner border; (b') width of left exopod segment 3 measured at its widest part; (C') length of left exopod segment 2 measured along inner border; (c') width of left exopod segment 2 measured at its widest part; (F) length of left exopod segment 3 measured along outer border; (G) length of outer distal spine on left exopod segment 2; (H) distance between proximal border of left exopod 3 and base of lateroproximal spine of exopod segment 3.
Figure 9 in Calanoides natalis Brady, 1914 (Copepoda: Calanoida: Calanidae): identity and distribution in relation to coastal oceanography of the eastern Atlantic and western Indian Oceans
Figure 9. Calanoides natalis male: (a) dorsal view; (b) lateral view – note specimen laterally compressed c.f. Figure 8; (c) antennule; (d) anterior head, lateral view; (e) left caudal ramus, dorsal view; (f) leg 5, posterior view; (g) left leg 5 exopod segment 3. Scale mark 1.0 mm on figures a–d, 0.1 mm on rest.
Figure 4 in Calanoides natalis Brady, 1914 (Copepoda: Calanoida: Calanidae): identity and distribution in relation to coastal oceanography of the eastern Atlantic and western Indian Oceans
Figure 4. Bayesian tree obtained from COI molecular data. Individuals are collapsed to species. Values at nodes indicate posterior probability. Monophyletic Neocalanus spp. and Mesocalanus tenuicornis were included as topology constraints. All species described in this paper were recovered as monophyletic.
Figure 2 in Calanoides natalis Brady, 1914 (Copepoda: Calanoida: Calanidae): identity and distribution in relation to coastal oceanography of the eastern Atlantic and western Indian Oceans
Figure 2. Location diagram of samples examined or mentioned in the test (see Table 1). □ – Calanoides acutus; ◊ – Calanoides brevicornis; ♦ – Calanoides carinatus s.s.; ○ – Calanoides natalis; ■ – Calanoides patagoniensis; ● – Calanoides philippinensis.
Figure 8 in Calanoides natalis Brady, 1914 (Copepoda: Calanoida: Calanidae): identity and distribution in relation to coastal oceanography of the eastern Atlantic and western Indian Oceans
Figure 8. Calanoides natalis female: (a) Leg 1 coxa, basis and endopod; (b) leg 1 exopod; (c) leg 2, anterior surface; (d) leg 3, posterior surface; (e) leg 4, posterior surface; (f) leg 5, anterior surface. Scale bar represents 0.1 mm.
Figure 1 in Calanoides natalis Brady, 1914 (Copepoda: Calanoida: Calanidae): identity and distribution in relation to coastal oceanography of the eastern Atlantic and western Indian Oceans
Figure 1. Photomicrographs of whole female (a–d) specimens in lateral view with antennules removed, and male (e) of: (a) Calanoides brevicornis (= Calanoides macrocarinatus) from 250–500 m, 42.41° S, 174.03° E; (b) Calanoides carinatus from 0–10 m, 43.67° S, 64.97° W; (c) Calanoides natalis from surface waters, Arabian Sea, 20.22° N, 58.75° E; (d) Calanoides philippinensis lateral view, Aru Basin, about 6° S, 133.5° E; (e) C. natalis from the Arabian Sea 20.22° N, 58.75° E. The Calanoides carinatus photo was made available by Drs Georgina Cepeda and Marina Sabatini (Consejo Nacional de Investgaciones Cientificas y Tecnicas, Argentina). Scale bar represents 0.5 mm.
Figure 3 in Depth structuring of pelagic copepod biodiversity in waters adjacent to an Eastern Indian Ocean coral reef
Figure 3. Percentage composition of the zooplankton community at LA, contrasted with that in the five depth strata sampled at CH, NE and SW. The data are pooled over all Locations and Cruises. Note that there is an order of magnitude difference in abundance from the mixed layer (<100 m) to the 300–400 m stratum (Table 1).
Figure 2 in Depth structuring of pelagic copepod biodiversity in waters adjacent to an Eastern Indian Ocean coral reef
Figure 2. Representative vertical profiles of temperature, salinity, density and chlorophyll fluorescence at SW on each of the four cruises.
Figure 5 in Depth structuring of pelagic copepod biodiversity in waters adjacent to an Eastern Indian Ocean coral reef
Figure 5. Redundancy analysis displaying relationships between zooplankton samples, locations and depths.
Figure 1 in Depth structuring of pelagic copepod biodiversity in waters adjacent to an Eastern Indian Ocean coral reef
Figure 1. Scott Reef, eastern Indian Ocean, with the location of the four stations sampled: LA, CH, NE and SW.
Figure 14 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 14. Mamilloecia mamillata comb. nov. male: (A) Lateral view; (B) carapace dissected and viewed dorsally; (C) ventral view; (D) first antenna and frontal organ; (E) second antenna.
Figure 15 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 15. Mamilloecia mamillata comb. nov. male: (A) Left endopodite of second antenna; (B) right endopodite of second antenna; (C) mandible; (D) basal endite of mandible; (E) tooth lists; (F) maxilla.
Figure 12 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 12. Mamilloecia mamillata comb. nov. female: (A) Lateral view; (B) carapace dissected and viewed dorsally; (C) ventral view; (D) first antenna and frontal organ; (E) second antenna; (F) endopodite.
Figure 13 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 13. Mamilloecia mamillata comb. nov. female: (A) Mandible; (B) basal endite of mandible; (C) tooth lists; (D) maxilla; (E) fifth limb; (F) sixth limb; (G) caudal furca.
Figure 11 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 11. Mamilloecia indica male gen. nov., sp. nov.: (A) Fifth limb; (B) sixth limb; (C) caudal furca.
Figure 10 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 10. Mamilloecia indica male gen. nov., sp. nov.: (A) Left endopodite of second antenna; (B) right endopodite of second antenna; (C) mandible; (D) basal endite of mandible; (E) tooth lists; F. maxilla.
Figure 2 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 2. Paraconchoecia spinifera female: (A) Lateral view; (B) carapace dissected and viewed dorsally; (C) ventral view; (D) first antenna and frontal organ; (E) second antenna; (F) endopodite.
Figure 7 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 7. Mamilloecia indica female gen. nov., sp. nov.: (A) Lateral view; (B) carapace dissected and viewed dorsally; (C) ventral view; (D) first antenna and frontal organ; (E) second antenna; (F) endopodite.
Figure 9 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 9. Mamilloecia indica male gen. nov., sp. nov.: (A) Lateral view; (B) carapace dissected and viewed dorsally; (C) ventral view; (D) first antenna and frontal organ; (E) second antenna.
Figure 5 in Mamilloecia indica (Halocyprididae: Ostracoda) a new genus and species from the Northwest Indian Ocean
Figure 5. Paraconchoecia spinifera male: (A) Left endopodite of second antenna; (B) right endopodite of second antenna; (C) mandible; (D) basal endite of mandible; (E) tooth lists; (F) maxilla.
ScienceDex guides
Understand access before you commit
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.