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Fig. 4 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 4. Lynceus amplopedia sp. nov., modified male thoracopods, light microscopy. Endites 3–5, and endopod of thoracopods I–VI and exopod of thoracopods V and VI. Explanate modified thoracopods (ET): thoracopod III with explanate endites 4 and 5, thoracopod IV with explanate endites 4, 5 and endopod, and thoracopods V and VI with exopods with digitiform processes. Spinose modified thoracopods (ST): thoracopod V with spinose endite 4 and thoracopod VI with spinose endites 3 and 4. Abbreviations: ET1–ET6 = explanate modified thoracopods 1–6; e3–e5 = endites 3–5. ST5,6 = spinose modified thoracopods V and VI.

opencc-by-4.0Sep 2019View details →
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Fig. 2 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 2. Asymmetry and modified thoracopods III–VI of Lynceus amplopedia sp. nov., setae and spines are presented only on endites 4, 5 and endopod. Abbreviations: e1–e5 = endites 1–5.

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Fig. 3 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 3. Lynceus amplopedia sp. nov., male, stereo microscopy (paratype NHMD-615845). A, right lateral view (carapace valves removed); B, left lateral view (left carapace valve removed); C, dorsal view (head removed); D, ventral view; E, rostrum and claspers, ventrolateral view; F, left clasper, anterior view; G, carapace, right valve, exterior; H, left clasper, posterior view. Abbreviations: e1–e5 = endites 1–5, T3–T5 = thoracopods III–V.

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Fig. 1 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 1. Lynceus amplopedia sp. nov., A–G: male: A, carapace, left lateral view; B, head, left lateral view; C, head, anterior view; D, right clasper, anterior view; E, left clasper, posterior view; F, opercular lamella, ventral view; G, telson, left lateral view. H–K: female: H, head, left lateral view; I, head, anterior view; J, carapace, left lateral view; K, lamina abdominalis, left lateral view. Scale bar = 1 mm.

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Fig. 8 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 8. Lynceus amplopedia sp. nov., female, scanning electron microscopy (paratype NHMD-615845). A) head, anterior view, (left antenna removed); B, head, left lateral view; C, rostral apex (magnification of A); D, frontal setal fields; E, left second antenna; F, mouthparts, right side: labrum, mandible, maxilla I; G, telson and left side posterior thoracopods with lamina abdominalis consisting of 4 dorsal and 3 marginal extensions; H, left mandible, apical view; I, left mandible, lateral view; J, mandible, magnification of I; K, mandible, magnification of H. Arrow = edge of rostrum broken. Abbreviations: T9–T10 = thoracopods IX–X.

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Fig. 8 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 8. Light microscopic images of O. circumpicta larvae in infrabranchial chamber. (A) trochophores; (B) veligers; (C) single trochophore (R, rudimentary shell; Fg, foregut); (D) Frontal section of larval of S. circumpicta stained with Hemotoxylin and Eosin. (Lcl, locomotory cilia; Dg, digestive gland; Es, esophagus; Gr, rudimentary gill; In, intestine; Mn, Mantle; Rm, retractor muscle; Sr, rudimentary shell; St, stomach; Vel, velum; Vc, visceral cavity)

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Fig. 9 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 9. Scanning electron microscopic images of O. circumpicta larvae. (A) trochophore, (B) hinge; (C) velum; (D) veliger, lateral view. TP: trochophore, IC: infrabranchial chamber, HL: straight hinge line; CL, cilium; VL, velum; P1, prodissoconch I.

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Fig. 4 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 4. Photomicrographs of reproductive stages of female O. circumpicta. (A) early developing, (B) late developing, (C) ripe, (D) partially spawned, (E) spent/absorbing, (F) resting.

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Fig. 5 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 5. Photomicrographs of reproductive stages of male O. circumpicta. (A) early developing, (B) late developing, (C) ripe, (D) partially spawned, (E) spent/absorbing, (F) resting.

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Fig. 3 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 3. Monthly variations in the surface water temperature, salinity and chlorophyll a at the sampling location from September 2003 to September 2004. The sea surface temperature and salinity data were obtained from Korea Hydrographic and Oceanographic Agency, and the chlorophyll a were referred from NASA EARTHDATA (https:// earthdata.nasa.gov/, USA)

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Fig. 1 in Fig. 3 in Pomacea occulta Salazar-Vallejo 2023, nov. sp.

Fig. 1. Maps of the study area on Amami-Oshima Island, Kagoshima Prefecture, Japan. (a) Location of the Amami-Oshima Island in Japan. (b) Location of the study area on Amami-Oshima Island. (c) Map of the study area. Open circles indicate sampling sites for Anguilla marmorata.

opencc-by-4.0Nov 2019View details →
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Fig. 3 in Fig. 3 in Pomacea occulta Salazar-Vallejo 2023, nov. sp.

Fig. 3. Difference between Amami-Oshima Island and Sulawesi Island (Hagihara et al. 2018a) in growth rate and sex ratio of A. marmorata. A, Mean growth rate and SD of female, male, and UD in Amami-Oshima Island and Sulawesi Island. B, Sex ratio of sexually differentiated individuals in Amami-Oshima Island and Sulawesi Island.

opencc-by-4.0Nov 2019View details →
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Fig. 5 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 5. Lynceus amplopedia sp. nov., male, scanning electron microscopy (paratype NMHD-615845). A, head, anterior view (left antenna removed); B, head, anteroventral view, left antenna removed; C, head, right lateral view; D, rostral apex, left lateral view; E, left mandible, lateral view; F, left first antennae; G, telson with opercular lamella, ventral view. H, right clasper, anterior view; I, left clasper, posterior view, encircled areas with scales; J, setae (magnification of I); K, clasper gripping area with setae, apical view; L, large palp (e5), right clasper, dorsal view; M, clasper palm (e3) with scales (upper encircled area in I), lateral view; N, setae and scales of clasper gripping area (magnification of I). Abbreviations: e3–e5 = endites 3–5.

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Fig. 6 in Pomacea occulta Salazar-Vallejo 2023, nov. sp.

Fig. 6. Canonical Correlation Analysis (CCA) of rotifer assamblages with environmental variables. Relationship between species and environmental variables (Left). Relationship between sampling site and environmental variables (Right). Abbreviations used in the figures: H, Han River downstream (blue circle); R, reservoir (green circle); T, tidal creek; Bra_cal, Brachionus calyciflorus; Bra_urc, B. urceolaris; Bra_ang, B. angularis; Bra_pli, B. plicatilis; Bra_fal, B. falcatus; Bra_for, B. forficula; Anu_fis, Anuraeopsis fissa; Pol_vul, Polyarthra vulgaris; Pol_eur, P. euryptera; Fil_nov, Filinia novaezealandiae; Fil_lon, F. longiseta; Ker_coc, Keratella cochlearis; Ker_tec, K. tecta; Ker_tro, K. tropica; Lec_clo, Lecane closterocerca; Lec_sti, L. stichaea; Lec_ste, L. stenroosi; Lec_ham, L. hamata; Lec_lun, L. Luna; Hex_mir, Hexarthra mira; Tri_pus, Trichocerca pusilla; Tri_sim, T. similis; Tri_sty, T. stylata; Tri_cyl, T. cylindrica; Tri_cap, T. capucina; Asc_ova, Ascomorpha ovalis; Syn_sty, Synchaeta stylata; Syn_tre, S. Tremula; Syn_obl, S. oblonga; Col_adr, Colurella adriatica; Plo_tru, Ploesoma truncatum.

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Fig. 5 in Pomacea occulta Salazar-Vallejo 2023, nov. sp.

Fig. 5. Rotifer community indices among three water bodies. (A) Rotifer total abundance; (B) Ejsmont-Karabin's rotifer trophic state index; (C) Sladecek's B/T quotient and Keratella-index (KIN) values; (D) α biodiversity indices. Letters indicate sample means that are similar (same letter) or significantly different (different letter) among different water bodies; blank represents no significant difference. Abbreviations used in the figures: HD, Han River downstream; RE, reservoir; TC, tidal creek.

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Fig. 4 in Pomacea occulta Salazar-Vallejo 2023, nov. sp.

Fig. 4. The non-metric multidimensional scaling (NMDS) plots of rotifer community in Shantou. Abbreviations used in the figures: HD, Han River downstream; RE, reservoir; TC, tidal creek.

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Fig. 3 in Pomacea occulta Salazar-Vallejo 2023, nov. sp.

Fig. 3. The proportions (Y axis on left) and the abundances (Y axis on right) of the dominant rotifers in different sampling sites in Shantou. The lines represent the total abundances and the column represent the rotifer composition. Abbreviations used in the figures: HD, Han River downstream; RE, reservoir; TC, tidal creek.

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Fig. 2 in Pomacea occulta Salazar-Vallejo 2023, nov. sp.

Fig. 2. Environmental factors and trophic states in the different water bodies. Letters indicate sample means that are similar (same letter) or significantly different (different letter) among different water bodies; blank represents no significant difference. Abbreviations used in the figures: HD, Han River downstream; RE, reservoir; TC, tidal creek.

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Fig. 5 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 5. Planotergum kowalevski sp. nov., holotype female (8.6 × 11.7 mm) (ZMMU Ma 3506), Red Sea: a, front of carapace, eye and antenna, dorsal view; b, antenna, dorsal view; c, antenna, ventral view; d, ventral view of P2; e, left third maxilliped; f, ventral view of P2. Scale bars = 1.0 mm.

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Fig. 4 in Ophiacantha scissionis Lee & Stöhr & Bae & Shin 2019, sp. nov.

Fig. 4. Planotergum kowalevski sp. nov., holotype female (8.6 × 11.7 mm) (ZMMU Ma 3506), Red Sea: a, ventral view of chelipeds and third maxillipeds; b and c, eyes; d, front of carapace, dorsal view; e, thoracic sternites; f, ventral view of ambulatory appendages (P2–5); g, P2; h, chelipeds. Scale bars = 3.0 mm

opencc-by-4.0Sep 2019View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record