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668 results for “polychaetes”
Figure 5 from: Azmi SS, Ibrahim YS, Angsupanich S, Sumpuntarat P, Sato M (2021) Epitokous metamorphosis, reproductive swimming, and early development of the estuarine polychaete, Neanthes glandicincta Southern, 1921 (Annelida, Nereididae) on the east coast of the Malay Peninsula. ZooKeys 1011: 1-24. https://doi.org/10.3897/zookeys.1011.59780
Figure 5 Female epitoke of Neanthes glandicincta (Southern, 1921) collected from Kuala Ibai, Malaysia (UMTAnn 449) A dorsal view of the whole-body B enlargement of anterior end C enlargement of eyes D rupture of body wall at the ventral surface in the posterior body (arrow). Scale bars: 1 mm (A); 0.5 mm (B–D).
Figure 3 from: Azmi SS, Ibrahim YS, Angsupanich S, Sumpuntarat P, Sato M (2021) Epitokous metamorphosis, reproductive swimming, and early development of the estuarine polychaete, Neanthes glandicincta Southern, 1921 (Annelida, Nereididae) on the east coast of the Malay Peninsula. ZooKeys 1011: 1-24. https://doi.org/10.3897/zookeys.1011.59780
Figure 3 Epitokous males (A, C) and females (B, D) of Neanthes glandicincta (Southern, 1921) collected from the Lower Songkhla Lagoon, Thailand (PMBC 20732) in comparison with an atoke from the same locality (E) (PMBC 21209) A dorsal view of the whole body of a male B dorsal view of the anterior body of a female C–E enlargement of anterior dorsal end of a male epitoke (C), a female epitoke (D), and an atoke (E). Scale bars: 5 mm (A, B); 0.5 mm (C–E).
Figure 2 from: Azmi SS, Ibrahim YS, Angsupanich S, Sumpuntarat P, Sato M (2021) Epitokous metamorphosis, reproductive swimming, and early development of the estuarine polychaete, Neanthes glandicincta Southern, 1921 (Annelida, Nereididae) on the east coast of the Malay Peninsula. ZooKeys 1011: 1-24. https://doi.org/10.3897/zookeys.1011.59780
Figure 2 Atokes (A–F) and an epitoke (G) of Neanthes glandicincta (Southern, 1921) collected from the Lower Songkhla Lagoon, Thailand A prostomium of an atoke (ind. no. 10 with BW of 1.7 mm, PMBC 21209) B anterior view of an everted proboscis, showing a pair of small nipple-like round papillae on area VI in an atoke (ind. no. SL-2 with BW of 1.5 mm, PMBC 21212) C–F paragnaths in areas I (C), II (anterior and middle parts of left side, D), III (central part, E), and IV (right side, F) of an atoke (ind. no. 1 with BW of 2.3 mm, PMBC 21209) G dorsal (upper) and ventral (lower) views of the right jaw of a male epitoke (ind. no. 3M with BW of 1.2 mm, PMBC 20732).
Figure 4 from: Azmi SS, Ibrahim YS, Angsupanich S, Sumpuntarat P, Sato M (2021) Epitokous metamorphosis, reproductive swimming, and early development of the estuarine polychaete, Neanthes glandicincta Southern, 1921 (Annelida, Nereididae) on the east coast of the Malay Peninsula. ZooKeys 1011: 1-24. https://doi.org/10.3897/zookeys.1011.59780
Figure 4 Male epitoke of Neanthes glandicincta (Southern, 1921) collected from Kuala Ibai, Malaysia (UMTAnn 453) A dorsal view of the whole body (incomplete, with the pre-natatory and natatory regions) B dorsal view of the proboscis with pigmentation C ventral view of the proboscis with pigmentation. Scale bars: 1 mm (A); 0.5 mm (B, C).
Figure 7 from: Azmi SS, Ibrahim YS, Angsupanich S, Sumpuntarat P, Sato M (2021) Epitokous metamorphosis, reproductive swimming, and early development of the estuarine polychaete, Neanthes glandicincta Southern, 1921 (Annelida, Nereididae) on the east coast of the Malay Peninsula. ZooKeys 1011: 1-24. https://doi.org/10.3897/zookeys.1011.59780
Figure 7 Epitokous males (A, B, E) and a female (C, D) of Neanthes glandicincta (Southern, 1921) collected from the Lower Songkhla Lagoon, Thailand (PMBC 20732) A anterior view of left parapodium of chaetiger 5 in the pre-natatory region of a male epitoke B anterior view of right modified parapodium of chaetiger 34 in the natatory region of the same male as (A) C posterior view of right parapodium of chaetiger 3 of a female epitoke D posterior view of right parapodium of chaetiger 37 of the same female as (C) E enlargement of an epitokous paddle chaeta of another male epitoke. Abbreviations: dc, dorsal cirrus; vc, ventral cirrus. Scale bars: 0.1 mm (A, C); 0.5 mm (B, D); 0.05 mm (E).
Figure 1 from: Azmi SS, Ibrahim YS, Angsupanich S, Sumpuntarat P, Sato M (2021) Epitokous metamorphosis, reproductive swimming, and early development of the estuarine polychaete, Neanthes glandicincta Southern, 1921 (Annelida, Nereididae) on the east coast of the Malay Peninsula. ZooKeys 1011: 1-24. https://doi.org/10.3897/zookeys.1011.59780
Figure 1 Map showing the collection sites (closed circles) in two estuaries on the east coast of the Malay Peninsula A lower Songkhla Lagoon, Thailand B mangrove area in Kuala Ibai branched from Sungai Ibai in Terengganu, Malaysia.
Figure 6 from: Azmi SS, Ibrahim YS, Angsupanich S, Sumpuntarat P, Sato M (2021) Epitokous metamorphosis, reproductive swimming, and early development of the estuarine polychaete, Neanthes glandicincta Southern, 1921 (Annelida, Nereididae) on the east coast of the Malay Peninsula. ZooKeys 1011: 1-24. https://doi.org/10.3897/zookeys.1011.59780
Figure 6 Drawings of epitokes of Neanthes glandicincta (Southern, 1921) collected from Kuala Ibai, Malaysia A posterior view of the right parapodium 8 in the pre-natatory region of a male (UMTAnn 453) B posterior view of the right parapodium 35 in the natatory region of a male (UMTAnn 445) C anterior view of the left parapodium 35 of a female (UMTAnn 449) D posterior view of the right parapodium 66 in the post-natatory region of a male (UMTAnn 446) E heterogomph spiniger from the lower neurochaetae in chaetiger 8 of a male (UMTAnn 453) F homogomph spiniger from the upper neurochaetae in chaetiger 8 of a male (UMTAnn 453) G heterogomph falciger from the lower neurochaetae in chaetiger 36 of a female (UMTAnn 449) H epitokous natatory chaeta from the neuropodium of chaetiger 36 of a male (UMTAnn 453). Scale bars: 1 mm (A–D); 0.05 mm (E–H).
Figure 8 from: Azmi SS, Ibrahim YS, Angsupanich S, Sumpuntarat P, Sato M (2021) Epitokous metamorphosis, reproductive swimming, and early development of the estuarine polychaete, Neanthes glandicincta Southern, 1921 (Annelida, Nereididae) on the east coast of the Malay Peninsula. ZooKeys 1011: 1-24. https://doi.org/10.3897/zookeys.1011.59780
Figure 8 Seasonal changes of environmental parameters in Kuala Ibai, Malaysia during the sampling period A monthly changes in the salinity and temperature of the surface water at the sampling site (represented by our data at the end of each month) B monthly changes in the amount of rainfall and average air temperature at Kuala Ibai based on the data of Malaysian Meteorological Department C monthly changes of the maximum height of sea level at high tide (closed circles), with the height of sea level at high tide on each sampling date (x marks), based on the data of Worldwide Tides and Currents Predictor (2018). The asterisks indicate the months when the swimming epitokes of Neanthes glandicincta appeared.
FIGURE 1 in Polychaetes from Santa Catarina State (southern Brazil): checklist and remarks on species distribution
FIGURE 1. Map showing geographical range studied (grey square).
Fig. 5 in First record of sabellid and serpulid polychaetes from the Permian of Sicily
Fig. 5. Serpulid "Serpula" distefanoi sp. nov. from the Sosio Valley, western Sicily (Italy), Wordian to upper Permian. A. MSNC 4527, general view of the holotype. B. MSNC 4529, two opposite views (B1, B2) of a tube fragment of the anterior erect part, showing the rough surface; cross section of the erect tube portion (B3).
FIGURE 1 in New records for associations between peritrich protozoan ciliates (Ciliophora, Sessilida) and polychaete worms (Annelida) from off the southeastern coast of India
FIGURE 1. Map showing the location of the sampling sites.
FIGURE 1 in New entoproct-polychaete association recorded in the Bay of Bengal, southeastern coast of India
FIGURE 1. Map showing the sampling locality.
Figure 1 in The diversity of polychaetes (Annelida: Polychaeta) in a longterm pollution monitoring study from the Levantine coast of Turkey (Eastern Mediterranean), with the descriptions of four species new to science and two species new to the Mediterranean fauna
Figure 1. Map of the study area with the location of monitoring stations.
Fig. 2 in The marine myxosporean Sigmomyxa sphaerica (Thélohan, 1895) gen. n., comb. n. (syn. Myxidium sphaericum) from garfish (Belone belone (L.)) uses the polychaete Nereis pelagica L. as invertebrate host
Fig. 2 Line drawings of S. sphaerica myxospores from B. belone. a Valvular view and b sutural view. Scale bar 5 μm
Figure 2 in Shallow-water polychaete assemblages in the northwestern Mediterranean Sea and its possible use in the evaluation of good environmental state
Figure 2. Cluster analysis of polychaete fauna for the Gulf of Lions region (France; upper graph) and the Northern Mediterranean Spanish coast (Spain; lower graph). Asterisk observed in lower graph indicates stations associated with the Detritic Sand Community (DS)
Fig. 4 in High diversity and pan-oceanic distribution of deep-sea polychaetes: Prionospio and Aurospio (Annelida: Spionidae) in the Atlantic and Pacific Ocean
Fig. 4 Genotype networks of Prionospio and Aurospio species from the different localities of 18S gene fragments. Sampling localities are color coded. Different lineages are circled
Fig. 1 in High diversity and pan-oceanic distribution of deep-sea polychaetes: Prionospio and Aurospio (Annelida: Spionidae) in the Atlantic and Pacific Ocean
Fig. 1 Map of the worldwide sampling localities. The Clarion Clipperton Fracture Zone (CCZ) in the Pacific, the eastern Vema Fracture zone (eVFZ– stars), the Vema Transform Fault (VTF–rectangular), the western Vema Fracture Zone (wVFZ–hexagon), and the Puerto Rico Trench (PRT)
Figure 9 from: Ribeiro RP, Alves PR, Almeida ZS, Ruta C (2018) A new species of Paraonis and an annotated checklist of polychaetes from mangroves of the Brazilian Amazon Coast (Annelida, Paraonidae). ZooKeys 740: 1-34. https://doi.org/10.3897/zookeys.740.14640
Figure 9 Exogone (Exogone) breviantennata. A Whole body, dorsal view B Anterior end, dorsal view. Abbreviations: pa, palps; ey, eye; pv, proventricle. Scale bars: 0.15 mm.
Figure 5 from: Ribeiro RP, Alves PR, Almeida ZS, Ruta C (2018) A new species of Paraonis and an annotated checklist of polychaetes from mangroves of the Brazilian Amazon Coast (Annelida, Paraonidae). ZooKeys 740: 1-34. https://doi.org/10.3897/zookeys.740.14640
Figure 5 Namalycastis fauveli, fixed specimen, NPM-Pol 883. A Whole body, dorsal view B Anterior end, dorsal view C Posterior end, ventral view D Neurochaetae supra-acicular, 10th chaetiger E Neurochaeta spiniger supra-acicular, 10th chaetiger. Scale bars: 0.5 mm (A–C), 0.01 mm (D, E).
Figure 14 from: Ribeiro RP, Alves PR, Almeida ZS, Ruta C (2018) A new species of Paraonis and an annotated checklist of polychaetes from mangroves of the Brazilian Amazon Coast (Annelida, Paraonidae). ZooKeys 740: 1-34. https://doi.org/10.3897/zookeys.740.14640
Figure 14 Paraonis amazonica sp. n., chaetae. A Acicular chaetae with a lateral spine of anterior setiger 3 B Posterior hook-shaped chaeta with terminal spine and acicular chaetae with a lateral spine (left) in setiger 30 C Hook-shaped chaeta with a terminal spine in the last setiger, 36 D Pygidium with three anal cirri, ventral view. Scale bars 50 µm (A–C), 0.25 mm (D).
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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)
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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.