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Figure 9. Mesochaetopterus xerecus. A, Dorsalmost capillary chaeta from A8. B in Description of a new species of Mesochaetopterus (Annelida, Polychaeta, Chaetopteridae), with redescription of Mesochaetopterus xerecus and an approach to the phylogeny of the family
Figure 9. Mesochaetopterus xerecus. A, Dorsalmost capillary chaeta from A8. B, Dorsolateral fine-lanceolate chaeta from A8. C, Lateroventral sickle-like chaeta from A8. D, Tip of the lateroventral sickle-like chaeta from A8. E, Ventralmost lancet-like chaeta from A8. F, Tip of the ventralmost lancet-like chaeta from A8. G, Ventralmost sickle-like chaeta from A10. Scale bars are in Mm.
Figure 7. Mesochaetopterus xerecus. A in Description of a new species of Mesochaetopterus (Annelida, Polychaeta, Chaetopteridae), with redescription of Mesochaetopterus xerecus and an approach to the phylogeny of the family
Figure 7. Mesochaetopterus xerecus. A, Dorsal view of region A (preserved). B, Ventral view of region A (preserved). C–J, Chaetae. C, Dorsalmost capillary chaeta from A1. D, Dorsolateral fine-lanceolate chaeta from A1. E, Ventral oar-like chaeta from A1. F, Tip of the ventral oar-like chaeta from A1. G, Dorsalmost fine-lanceolate chaeta from A3. H, Tip of the dorsalmost fine-lanceolate chaeta from A3. I, Ventral oar-like chaeta from A3. J, Tip of the ventral oar-like chaeta from A3. Scale bars are in cm in A and B, and are in Mm in C–J.
Figure 6 in Description of a new species of Mesochaetopterus (Annelida, Polychaeta, Chaetopteridae), with redescription of Mesochaetopterus xerecus and an approach to the phylogeny of the family
Figure 6. Mesochaetopterus rogeri sp. nov. A, Dorsalmost uncini from neuropodia B1. B, Ventralmost uncini from neuropodia B1. C, Uncini from notopodia B2. D, Uncini from neuropodia B2. E, Uncini from notopodia B3. F, Uncini from neuropodia B3. G, Uncini from the anterior region of notopodia C2. H, Uncini from the posterior region of notopodia C2. I, Uncini from the anterior region of neuropodia C2. J, Uncini from the posterior region of neuropodia C2. Scale Bars are in Mm.
Figure 2 in The family Aeolidiidae Gray, 1827 (Gastropoda Opisthobranchia) from Brazil, with a description of a new species belonging to the genus Berghia Trinchese, 1877
Figure 2. Anteaeolidiella indica from Praia dos Ossos (10-mm-long specimen). A, the largest radular tooth. B, one median tooth. C, the smallest tooth. Scale bars = 10 Mm.
Figure 3 in The family Aeolidiidae Gray, 1827 (Gastropoda Opisthobranchia) from Brazil, with a description of a new species belonging to the genus Berghia Trinchese, 1877
Figure 3. SEM images of radulae and jaws. A, radula of Anteaeolidiella indica from Praia dos Ossos; scale bar = 10 Mm. B, jaw of A. indica; scale bar = 100 Mm. C, radula of Berghia benteva from Praia dos Ossos (18-mm-long specimen); scale bar = 50 Mm. D, central part of the tooth of B. benteva; scale bar = 10 Mm. E, detail of the tooth of Berghia creutzbergi from Praia de Armação (13-mm-long specimen); scale bar = 10 Mm. F, jaw of B. creutzbergi (13-mm-long specimen); scale bar = 200 Mm.
Figure 1. Living animals. A, Anteaeolidiella indica from Praia dos Ossos. B in The family Aeolidiidae Gray, 1827 (Gastropoda Opisthobranchia) from Brazil, with a description of a new species belonging to the genus Berghia Trinchese, 1877
Figure 1. Living animals. A, Anteaeolidiella indica from Praia dos Ossos. B, Berghia benteva from Praia de Armação (10-mm-long specimen). C, D, Berghia benteva from Praia dos Ossos (18- and 19-mm-long specimens). E, Berghia creutzbergi from Praia de Armação (13-mm-long specimen). F, Berghia marcusi sp. nov., from Praia de Armação (dorsal view, 12-mm-long specimen). G, Berghia marcusi sp. nov. (ventral view of the same specimen). H–J, Spurilla neapolitana from Praia de Armação. K, Spurilla neapolitana from Praia dos Ossos.
Figure 3 in Description of a new species of Mesochaetopterus (Annelida, Polychaeta, Chaetopteridae), with redescription of Mesochaetopterus xerecus and an approach to the phylogeny of the family
Figure 3. Individual gene trees generated by Bayesian inference for 18S rRNA (A), cytochrome oxidase I (COI) (B), and by combining both genes (C). Only posterior probability node support values greater than 0.75 were represented. Med, Mediterranean; NS, North Sea.
Figure 5 in Description of a new species of Mesochaetopterus (Annelida, Polychaeta, Chaetopteridae), with redescription of Mesochaetopterus xerecus and an approach to the phylogeny of the family
Figure 5. Mesochaetopterus rogeri sp. nov. A, Chaetal arrangement of the modified A4 chaetiger. B–L, Chaetae. B, Tip of the dorsal finely pointed capillary chaeta 'd'. (C) Dorsolateral transparent knife-like chaeta 'ld1'. D, Tip of the dorsolateral transparent knife-like chaeta 'ld1'. E, Dorsolateral brownish knife-like chaeta 'ld2'. F, Tip of the dorsolateral brownish knife-like chaeta 'ld2'. G, I, K, Whole view of the typical modified chaetae 'lv1' (lateral), 'lv2' (lateroventral), and 'v' (ventralmost). H, J, L, Tips of G, I, K, respectively. Scale bars are in Mm.
Figure 4 in Description of a new species of Mesochaetopterus (Annelida, Polychaeta, Chaetopteridae), with redescription of Mesochaetopterus xerecus and an approach to the phylogeny of the family
Figure 4. Mesochaetopterus rogeri sp. nov. A, Dorsalmost capillary chaeta from A1. B, Tip for the dorsalmost capillary chaeta from A1. C, Dorsal fine-lanceolate chaeta from A1. D, Tip of the dorsal fine-lanceolate chaeta from A1. E, Ventral oar-like chaeta from A1. F, Tip of the ventral oar-like chaeta from A1. G, Ventral oar-like chaeta from A3. H, Tip of the ventral oar-like chaeta from chaetiger A3. I, Dorsal fine-lanceolate chaeta from A8. J, Tip of the dorsal fine-lanceolate chaeta from A8. K, Ventral sickle-like chaeta from A8. L, Tip of the ventral sickle-like chaeta from A8. Scale bars are in Mm.
Figure 2 in Description of a new species of Mesochaetopterus (Annelida, Polychaeta, Chaetopteridae), with redescription of Mesochaetopterus xerecus and an approach to the phylogeny of the family
Figure 2. Mesochaetopterus rogeri sp. nov., location of reports. A, Iberian Peninsula. B, Catalan coast. C, Blanes litoral. Key:, seasonal monitoring at the Punta del Tordera; 1, Almería; 2, Alicante; 3, Valencia.
Figure 7 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 7. Reconstruction of the postpharyngeal genital organs of Dreuxiola philippi sp. nov., seen from the right. Refer to the Appendix for a list of abbreviations.
Figure 4 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 4. Hard parts of the copulatory organ of Meidiama uruguayensis sp. nov. (A; inset, terminal opening in the holotype), Meidiama lutheri (B), and Meidiama schockaerti (C).
Figure 15 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 15. The needles and the muscular supports of the copulatory organ in the species of Serrula. A, Serrula byronensis sp. nov.; B, Serrula maxillaria sp. nov.; C, Serrula concharum sp. nov.; D, Serrula acuta sp. nov. Refer to the Appendix for a list of abbreviations.
Figure 3 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 3. Reconstruction of the copulatory organ in Meidiama lutheri and Meidiama uruguayensis sp. nov., seen from the left, based on sections of M. uruguayensis sp. nov. and the whole mounts of both species. Refer to the Appendix for a list of abbreviations.
Figure 14 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 14. Posteriormost body part in live animals. A, Serrula byronensis sp. nov.; B, Serrula maxillaria sp. nov.; C, Serrula concharum sp. nov. Refer to the Appendix for a list of abbreviations.
Figure 2 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 2. Sagittal reconstruction of the female system, seen from the left, of the species of Meidiama, mainly based on sections of Meidiama uruguayensis sp. nov. The lower figure is the continuation of the upper part. Refer to the Appendix for a list of abbreviations.
Figure 5. A in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 5. A living animal of Dreuxiola philippi sp. nov. Refer to the Appendix for a list of abbreviations.
Figure 11 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 11. Sagittal reconstruction of the postpharyngeal genital organs of Yorknia aprostatica sp. nov., seen from the left. Refer to the Appendix for a list of abbreviations.
Figure 12 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 12. Copulatory organ of Yorknia aprostatica sp. nov., as seen in the whole mounts. A, in the holotype; B, in the paratype. Refer to the Appendix for a list of abbreviations.
Figure 10. Drawings from a in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 10. Drawings from a living animal of Yorknia aprostatica sp. nov. A, the whole animal; B, the postpharyngeal genital organs. Refer to the Appendix for a list of abbreviations.
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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.