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390
datasets available to search
ShareScore release 0.7.1
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390 results for “Commensals”
FIGURES 7–17 in Chironomids are commensals of the larvae and pupae of Blephariceridae and Simuliidae from the North Caucasus (Diptera: Chironomidae: Orthocladiinae)
FIGURES 7–17. Larva of Cardiocladius sp. 1. 7, labrum with S-setae; 8–11, mentum; 12–13, antenna; 14, mandible; 15, inner setae of mandible; 16, anal segment with procercus, posterior parapods and anal tubules; 17, procercus with anal setae.
FIGURES 1–6 in Chironomids are commensals of the larvae and pupae of Blephariceridae and Simuliidae from the North Caucasus (Diptera: Chironomidae: Orthocladiinae)
FIGURES 1–6. Arrangement of Cardiocladius sp. 1 larvae on the ventral side of Blephariceridae larvae (1–3) and of Eukiefferiella claripennis group larvae (4–5) and pupae (6) on cocoon of Simuliidae pupae.
FIGURES 25–29 in Chironomids are commensals of the larvae and pupae of Blephariceridae and Simuliidae from the North Caucasus (Diptera: Chironomidae: Orthocladiinae)
FIGURES 25–29. Larva of Eukiefferiella claripennis group. 25, S-setae of labrum; 26, mentum; 27, mandible; 28, antenna; 29, procercus with anal setae.
FIGURES 18–24 in Chironomids are commensals of the larvae and pupae of Blephariceridae and Simuliidae from the North Caucasus (Diptera: Chironomidae: Orthocladiinae)
FIGURES 18–24. Pupa of Eukiefferiella claripennis group. 18–19, thoracic horn; 20, tergites I–IV; 21, tergites V–VI; 22, tergite VIII; 23, anal segment; 24, spines and spinules of posterior part of tergites IV.
FIGURE 34 in Chironomids are commensals of the larvae and pupae of Blephariceridae and Simuliidae from the North Caucasus (Diptera: Chironomidae: Orthocladiinae)
FIGURE 34. Bayesian tree based on mitochondrion COI gene for obtained sequences and each available BIN number of the genus Cardiocladius Kieffer. Eukiefferiella claripennis was used as outgroup to root the tree. Bayesian posterior probabilities (PP) are given above tree nodes. Specimens obtained in this study are in bold.
Supplementary material 2 from: Lemaitre R (2017) Discovery of a new species of hermit crab of the genus Pylopaguropsis Alcock, 1905 from the Caribbean: "den commensal" or "cleaner"? (Crustacea, Anomura, Paguridae). ZooKeys 646: 139-158. https://doi.org/10.3897/zookeys.646.11132
Photograph of live specimen of Pylopaguropsis mollymullerae sp. n. in gastropod shell : Explanation note: Color photograph of Pylopaguropsis mollymullerae sp. n. taken by E Muller (dive 4125 156z2) at dive site "Front Porch": sex not determined, not collected.
Supplementary material 1 from: Lemaitre R (2017) Discovery of a new species of hermit crab of the genus Pylopaguropsis Alcock, 1905 from the Caribbean: "den commensal" or "cleaner"? (Crustacea, Anomura, Paguridae). ZooKeys 646: 139-158. https://doi.org/10.3897/zookeys.646.11132
Photograph of live ovigerous female of Pylopaguropsis mollymullerae sp. n. stretching out from gastropod shell : Explanation note: Color photograph of Pylopaguropsis mollymullerae sp. n. taken by E Muller (dive 4125 095a) at dive site "Front Porch": ovigerous female, not collected.
Figure 15 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 15. Leucothoe bonelliae holotype (SMBL-V0661): (A) upper lip, dorsal; (B) left mandible, dorsal; (C) right mandible, dorsal; (D) left maxilla 1, ventral; (E) left maxilla 2, ventral; (F) lower lip, dorsal; (G) right maxilliped, dorsal. Scale bar = 100 µm.
Figure 3 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 3. Haplotype network from COI data for Bonellia sp. aff. minor from Kushimoto and Okinawa, Japan. Each connection represents one inferred base-pair change.
Figure 12 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 12. Basterotia bonelliphila (paratype NSMT-Mo 79471). A, B, External view of right and left valves. C, D, Internal view of right and left valves. E, F, Hinge structure of right and left valves. G, H, Prodissoconch II of right and left valves. Abbreviations: ac, anterior cardinal tooth; exl, external ligament; p2, prodissoconch II. Scale bars = 1 mm (A–D), 100 µm (E–H).
Figure 6 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 6. Micro-CT images of two burrows (A and B) of Bonellia sp. aff. minor. Burrow openings are indicated by white arrowheads. The blue and yellow portions indicate sediments occupied in burrows and the burrow cavity, respectively. Scale bars = 5 mm.
Figure 18 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 18. Leucothoe bonelliae holotype (SMBL-V0661): (A) left pereopod 3, lateral; (B) left pereopod 4, lateral; (C) left pereopod 5, lateral; (D) left pereopod 6, lateral; (E) left pereopod 7, lateral. Scale bar = 100 µm.
Figure 14 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 14. Leucothoe bonelliae holotype (SMBL-V0661): (A) habitus, lateral; (B) pereonites 5–7, coxal plates 5–7 and pleonites 1–3, lateral; (C) telson, dorsal; (D) apical part of telson, dorsal; (E) left antenna 1, lateral; (F) left antenna 2, lateral. Scale bars = 100 µm.
Figure 2 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 2. Habitat of the study site. The proboscises of Bonellia sp. aff. minor (white arrows) extend from the burrow mainly during the night (A–D, different individuals).
Figure 7 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 7. Haplotype network from COI data for Basterotia bonelliphila from Kushimoto and Okinawa, Japan. Each connection represents one inferred base-pair change.
Figure 9 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 9. Bayesian phylogenetic tree of Leucothoe amphipods, including Leucothoe bonelliae, based on the 18S rRNA gene. Numbers above branches indicate Bayesian posterior probabilities followed by maximum likelihood bootstrap support values.
Figure 11 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 11. Basterotia bonelliphila (holotype NSMT-Mo 79470). A, B, Dorsal and ventral views. Anterior is right. C, D, External view of right and left valves. E, F, Internal view of right and left valves. The tip of the foot was removed for DNA analysis. G, H, Hinge structure of left and right valves. Abbreviations: aa, anterior adductor muscle; ac, anterior cardinal tooth; apa, anterior-venral pedal aperture; d, demibranches; dg, digestive gland; exl, external ligament; f, foot; lp, labial palps; pa, posterior adductor muscle; p2, prodissoconch II; s, exhalant and inhalant siphons. Scale bars = 1 mm (A–F), 100 µm (G, H).
Figure 10 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 10. Bonellia sp. aff. minor. A, B, Whole body of living (A) and ethanol-fixed (B) specimens, ventral view. C, Anterior part of the trunk, ventral view. D, Base of the ventral chaetae connected by interbasal muscles. E, A gonoduct containing numerous eggs. F, Anal vesicle sacs. G, Dwarf male (1.5 mm in length). Abbreviations: ac, anterior chaetae; av, anal vesicle sac; gd, gonoduct; gm, gonostomal lip; gp, genital pore; pr, proboscis; tr, trunk. Scale bars = 5 mm (A, B), 1 mm (C–G). Specimen ID (see Supporting Information, Table S2): BM16 (B, C, E, F), BM09 (D, G).
Figure 4 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 4. Macrosymbiotic fauna associated with Bonellia sp. aff. minor. Macrosymbionts with hosts in the burrows (A, C, E). White arrowheads indicate macrosymbionts on the host's burrow wall (A, E) or trunk (C). Close-up view of the living specimens of each macrosymbiont (B, D, F). A, B, Basterotia bonelliphila (holotype: NSMT-Mo 79470). C, D, Leucothoe bonelliae (SMBL-V0666). E, F, Oxydromus fauveli. Scale bar = 1 mm (B, D, F).
Figure 16 in Living together in dead coral rocks: macrosymbiotic communities associated with Bonellia echiuran worms (Annelida: Thalassematidae: Bonelliinae), involving new commensal bivalve and amphipod species
Figure 16. Leucothoe bonelliae: (A) holotype (SMBL-V0661), (B) paratype (SMBL-V0662), (C) paratype (SMBL-V0663): (A–C) left gnathopod 1, lateral. Scale bar = 100 µm.
ScienceDex guides
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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)
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.