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16,468 results for “species group”
Figure 5 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 5. Spinoncaea ivlevi (Shmeleva, 1966) comb. nov., male (Red Sea). (A) Habitus, dorsal; (B) maxilliped, anterior [b: same, medial view, claw partly omitted]; (C) maxilliped, posterior; (D) urosome, dorsal, seta V on CR omitted; (E) urosome, ventral; (F) same, lateral; (G) antennule, small middle aesthetasc close to seta figured separately.
Figure 8 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 8. Spinoncaea humesi sp. nov., female (Red Sea). (A) Habitus, dorsal; (B) same, lateral (appendages omitted); (C) urosome, dorsal; (D) urosome, lateral; (E) P5-bearing somite (setae on left side omitted) and genital double-somite, ventral; (F) caudal ramus, dorsal; (G) antennule; (H) leg 5, lateral; (I) same, dorsal; (J) genital aperture.
Figure 16 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 16. Spinoncaea tenuis sp. nov., female (Adriatic Sea). (A) Habitus, dorsal, pore pattern on prosome not discerned; (B) urosome, dorsal; (C) P4, posterior. Spinoncaea tenuis sp. nov., male (Adriatic Sea) (D) Habitus, dorsal, pore pattern not fully discerned.
Figure 2 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 2. Spinoncaea ivlevi (Shmeleva, 1966) comb. nov., female, robust form (Red Sea). (A) Habitus, dorsal; (B) same, lateral (appendages omitted); (C) urosome, dorsal, seta V on left side missing; (D) urosome, lateral; (E) P5-bearing somite and genital double-somite, ventral; (F) caudal ramus, dorsal, lanceolate seta V shown separately; (G) antennule; (H) leg 5, dorsal; (I) same, ventral; (J) genital aperture; (K) paired egg-sac [note the scale].
Figure 15 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 15. Spinoncaea tenuis sp. nov., male (Red Sea). (A) Habitus, dorsal; (B) maxilliped, anterior, syncoxa missing [b: inner margin of basis, posterior]; (C) maxilliped, medial view; (D) urosome, dorsal, seta V omitted; (E) urosome, ventral, seta V on right side omitted; (F) same, lateral; (G) antennule [g: inner margin of segments 1–3, showing ornamentation].
Figure 14 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 14. Spinoncaea tenuis sp. nov., female (Red Sea). (A) P1, anterior; (B) P2, anterior; (C) P3, posterior; (D) P4, posterior, intercoxal sclerite not shown.
Figure 11 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 11. Spinoncaea humesi sp. nov., male (Red Sea) (A) Habitus, dorsal; (B) maxilliped, anterior; (C) maxilliped, medial view; (D) urosome, dorsal, seta V on left side missing; (E) urosome, ventral; (F) same, lateral; (G) antennule, middle aesthetasc on segment 4 arrowed.
Figure 7 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 7. Spinoncaea ivlevi (Shmeleva, 1966) comb. nov., female, robust form (Monterey Bay). (A) Urosome, dorsal. Spinoncaea ivlevi (Shmeleva, 1966) comb. nov., male (Adriatic Sea). (B) Habitus, dorsal, pore pattern on prosome not discerned.
Figure 10 in Taxonomy of Oncaeidae (Copepoda, Poecilostomatoida) from the Red Sea. V. Three species of Spinoncaea gen. nov. (ivlevi-group), with notes on zoogeographical distribution
Figure 10. Spinoncaea humesi sp. nov., female (Red Sea). (A) P1, posterior; (B) P2, posterior, intercoxal sclerite not shown; (C) P3, posterior; (D) P4, posterior, reduced proximal seta on second endopod segment arrowed.
Figure 1. Phylogenetic hypotheses for the Micropsectra atrofasciata species group, only including species with sequenced COII. A in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 1. Phylogenetic hypotheses for the Micropsectra atrofasciata species group, only including species with sequenced COII. A, result from Bayesian analysis of COII gene sequences. Posterior probabilities shown above branches, bootstrap support below branches from parsimony analysis of the same data set. B, result from parsimony analysis of the combined molecular and morphological data sets. Bremer support on branches. C, result from parsimony analysis of the combined molecular and morphological data sets, with third positions excluded. Bremer support on branches.
Figure 2. Phylogenetic hypotheses for the Micropsectra atrofasciata species group. A in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 2. Phylogenetic hypotheses for the Micropsectra atrofasciata species group. A, result from parsimony analysis of the morphological character matrix, with characters weighted according to their rescaled consistency indices. B, result from parsimony analysis of the combined molecular and morphological matrices, using tree in Figure 1C as backbone constraint.
Figure 5 in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 5. Micropsectra appendica sp. nov. A, hypopygium. B, variation in superior volsella. C, superior, median and inferior volsellae. D, pupal thorax. E, pupal frontal apotome. F, pupal abdominal segments II–VI, dorsal. G, pupal abdominal segments VIII–IX. H, variation in posterolateral comb of pupal segment VIII.
Figure 12. Micropsectra logani. A, hypopygium. B in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 12. Micropsectra logani. A, hypopygium. B, superior, median and inferior volsellae. C, pupal thorax. D, pupal frontal apotome. E, pupal abdominal segments II–VI, dorsal. F, pupal abdominal segments VIII–IX. G, posterolateral combs of pupal segment VIII. H, larval antenna. I, larval premandible. J, larval mandible. K, postoccipital plate of larval head capsule. L, larval mentum, ventomental plates and setae submenti.
Figure 14. Micropsectra pallidula. A, hypopygium. B in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 14. Micropsectra pallidula. A, hypopygium. B, superior, median and inferior volsellae. C, median volsella. D, pupal thorax. E, pupal frontal apotome. F, pupal abdominal segments II–VI, dorsal. G, pupal abdominal segments VIII-IX. H, posterolateral combs of pupal segment VIII. I, larval antenna. J, larval mentum, ventomental plates and setae submenti. K, postoccipital plate of larval head capsule.
Figure 7. Micropsectra atrofasciata. A, hypopygium. B in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 7. Micropsectra atrofasciata. A, hypopygium. B, superior, median and inferior volsellae. C, median volsella. D, pupal thorax. E, pupal frontal apotome. F, pupal abdominal segments II–VI, dorsal. G, pupal abdominal segments VIII–IX. H, posterolateral combs of pupal segment VIII. I, larval antenna. J, larval mandible. K, larval mentum, ventromental plates and setae submenti. L, postoccipital plate of larval head capsule.
Figure 13 in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 13. Micropsectra longicrista sp. nov. A, hypopygium. B, anal point, semilateral view. C, superior, median and inferior volsellae.
Figure 11 in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 11. Micropsectra klinki sp. nov. A, hypopygium. B, superior, median and inferior volsellae. C, pupal thorax. D, pupal frontal apotome. E, pupal abdominal segments II–VI, dorsal. F, pupal abdominal segments VIII–IX.
Figure 6. Micropsectra aristata. A, pupal thorax. B, pupal frontal apotome. C, clypeal seta S3 in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 6. Micropsectra aristata. A, pupal thorax. B, pupal frontal apotome. C, clypeal seta S3 of larva.
Figure 19. Micropsectra zernyi. A, hypopygium. B, median volsella. C in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 19. Micropsectra zernyi. A, hypopygium. B, median volsella. C, superior, median and inferior volsellae.
Figure 4. Micropsectra andalusiaca. A, hypopygium. B in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 4. Micropsectra andalusiaca. A, hypopygium. B, superior, median and inferior volsellae. C, median volsella.
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.