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73,111 results for “new genus and species”
Figure 2 in Towards a revision of the genus Halectinosoma (Copepoda, Harpacticoida, Ectinosomatidae): new species from the North Atlantic and Arctic regions
Figure 2. Halectinosoma mandibularis sp. nov. Female holotype: A, antennule; B, antenna; C, mandible; D, maxillula; E, maxilla; F, maxilliped.
Figure 1 in Towards a revision of the genus Halectinosoma (Copepoda, Harpacticoida, Ectinosomatidae): new species from the North Atlantic and Arctic regions
Figure 1. Halectinosoma mandibularis sp. nov. Female holotype: A, habitus, dorsal; B, urosomites 2–6, ventral; C, urosomites 2–6, dorsal; D, P5. Male paratype (NHM1990.427): E, antennule; F, P5; G, P6.
Figure 2 in A new species of the genus Lightiella: the first record of Cephalocarida (Crustacea) in Europe
Figure 2. Light and scanning electron micrographs of first and second antennae and labrum of Lightiella magdalenina sp. nov. A, 6-segmented first antenna. Scale bar = 70 µm. B, second antenna with 2-segmented protopod (Pr), 2-segmented endopod (En) and 19-segmented exopod (Ex). Scale bar = 80 µm. C, ventral view of labrum (Lb), which appears rounded anteriorly and acutely triangular posteriorly; second antenna (A2). Scale bar = 45 µm. D, detail of the postero-ventral surface of labrum (Lb) covered by thin setae randomly distributed (arrows). Scale bar = 3 µm. E, posterior view of cephalon separated by the remaining part of the body at the level of the second maxilla. First antenna (A1), second antenna (A2), labrum (Lb), unsegmented mandible (Md), first maxilla (M1). Scale bar = 10 µm.
Figure 8. A in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 8. A, drawing of cervical vertebrae 5–8 and presacral vertebrae 26 and 27 as example for the vertebral structures in specimen FMNH PR2251. B, drawing of neural arches 9–12 of specimen FMNH PR2251. Anterior is to the right. Scale bar = 5 cm.
Figure 10 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 10. Drawings of preserved shoulder girdle elements of specimen FMNH PR2251. A, left coracoid. B, right clavicle; the broken bone plate attached to the posterolateral end of the clavicle may represent a remnant of the scapula (Sc?). See Appendix for explanation of abbreviations. Scale bar = 5 cm.
Figure 4 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 4. Drawing of the skull of Cymbospondylus nichollsi sp. nov. (FMNH PR2251) in lateral view. See Appendix for explanation of abbreviations. Scale bar = 10 cm.
Figure 3 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 3. Drawing of the skull of Cymbospondylus nichollsi sp. nov. (FMNH PR2251) in dorsal view. See Appendix for explanation of abbreviations. Scale bar = 10 cm.
Figure 2 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 2. Right temporal opening of specimen FMNH PR2251 with the arrow indicating the bite marks on the parietal plateau. See Appendix for explanation of abbreviations.
Figure 7 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 7. Close-up view of the occipital–cervical complex of specimen FMNH PR2251 in posteroventral view. Vertebrae are observed in ventrolateral view. See Appendix for explanation of abbreviations.
Figure 13 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 13. Cladogram depicting the relationships of 22 species of the genus Hexabathynella. Unique characters are indicated by closed circles, homoplasies by open circles. The numbers in parentheses are the Bremer support values.
Figure 5 in A new species of the genus Lightiella: the first record of Cephalocarida (Crustacea) in Europe
Figure 5. Light and scanning electron micrographs of thoracopods 6, 7 and 9 of Lightiella magdalenina sp. nov. A, general view of thoracopod 6 with only one claw (arrow) on the distal endopodal segment. Scale bar = 58 µm. B, posterior surface of protopod of thoracopod 6 with genital pore (Gp). Scale bar = 5 µm. C, high magnification of genital pore showing the convex plug-like membrane (Pm) and the short thin setae (arrows) covering its lateral margin. Scale bar = 2 µm. D, general view of thoracopod 7 which appears similar to the preceding one, except for the reduced protopod characterized by only three enditic processes. Scale bar = 52 µm. E, detail of protopod of thoracopod 7 showing only three enditic processes (Pe). Scale bar = 14 µm. F, high magnification of thoracopod 9. Scale bar = 3 µm.
Figure 11 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 11. Antennal organ of Hexabathynella. A, H. pauliani. B, H. halophila. C, H. aotearoae. D, H. decora. E, H. otayana. F, H. hessleri. G, H. szidati. Without a scale bar.
Figure 11 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 11. Comparison of the lateral views of the postrostral skull regions of Cymbospondylus. A, Cymbospondylus nichollsi sp. nov., based on the holotype FMNH PR2251. B, C. petrinus, based on UCMP 9950. C, C. buchseri, based on PIMUZ 4351, modified after Sander (1989b). B and C are based on left sides of the skulls and have been inverted.
Figure 10 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 10. Hexabathynella virginiae sp. nov. A, right thoracopod II ♀ (frontal). B, left thoracopod III ♀ (frontal). C, right thoracopod IV ♀ (frontal). D, right thoracopod V ♀ (frontal). E, pleotelson, furcal rami, and uropod ♀ (outer lateral). F, pleotelson, furcal rami, and uropod ♀ (dorsal). Scale bar = 0.05 mm. The figures are based on the holotype (♀) and the allotype (♂).
Figure 6 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 6. Hexabathynella africana sp. nov. A, left thoracopod IV (frontal). B, left thoracopod V (frontal). C, left thoracopod VI (frontal). D, thoracopod VIII ♀ (lateral). E, thoracopod VIII ♂ (ventral). F, pleopod I (ventral). G, pleotelson, furcal rami, and uropod ♀ (dorsal). H, distal part of exopod of uropod (ventral). I, pleotelson, furcal rami, and uropod ♀ (outer lateral). J, furcal rami ♀ (inner lateral). Scale bar = 0.05 mm. The figures are based on the holotype (♀) and the allotype (♂).
Figure 5 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 5. Hexabathynella africana sp. nov. A, right antennule ♀ (dorsal). B, right antennule ♂ (dorsal). C, antennal organ ♂ (inner lateral). D, antennal organ ♂ (ventral). E, right antenna ♀ (dorsal). F, labrum ♀ (ventral). G, mandible (dorsal). H, incisor process of mandible (lateral). I, right maxillule ♀ (dorsal). J, right maxilla ♀ (dorsal). K, left thoracopod I ♀ (frontal). L, left thoracopod II ♀ (frontal). M, left thoracopod III ♀ (frontal). Scale bar = 0.05 mm. The figures are based on the holotype (♀) and the allotype (♂).
Figure 8 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 8. Hexabathynella schrieveri sp. nov. A, right thoracopod IV ♀ (frontal). B, right thoracopod V ♀ (frontal). C, right thoracopod VI ♀ (frontal). D, pleotelson, furcal rami, and uropod ♀ (outer lateral). E, pleotelson, furcal rami, and uropod ♀ (dorsal). F, uropodal exopod ♀ (dorsal). Scale bar = 0.05 mm. The figures are based on the holotype (♀) and the allotype (♂).
Figure 7 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 7. Hexabathynella schrieveri sp. nov. A, right antennule ♀ (dorsal). B, right antenna ♀ (dorsal). C, labrum (ventral). D, antennal organ of right antennule ♂ (ventral). E, left mandible ♀ (dorsal). F, right maxillule ♀ (dorsal). G, left maxilla ♀ (dorsal). H, left thoracopod I ♀ (frontal). I, left thoracopod II ♀ (frontal). J, left thoracopod III ♀ (frontal). K, right thoracopod VIII ♂ (frontal). L, right thoracopod VIII ♂ (ventral). M, thoracopod VIII ♀ (outer lateral). Scale bar = 0.05 mm. The figures are based on the holotype (♀) and the allotype (♂).
Figure 4 in A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species
Figure 4. Hexabathynella africana sp. nov. A, total view ♀ (dorsal). B, total view ♀ (ventral). C, head ♂. Scale bar = 0.5 mm for A and B, 0.05 mm for C. The figures are based on the holotype (♀) and the allotype (♂).
Figure 4. A, B in A new species of the genus Lightiella: the first record of Cephalocarida (Crustacea) in Europe
Figure 4. A, B, light micrographs of second maxilla (A) and thoracopod 5 (B) of Lightiella magdalenina sp. nov. showing the same morphological organization. Protopod (Pr) characterized by 6 enditic processes (Pe) and 1-segmented epipod (Ep) with 4 long plumose setae. 5-segmented endopod (En) and 2-segmented exopod (Ex) with a spine (S) that distinguishes the distal group of 4 long setae (arrow). Scale bars: A, 56 µm; B, 60 µm. C, high magnification of protopodal endites (Pe) armed with spines and setae. Scale bar = 25 µm. D, detail of the last two segments of endopod. Segment 4 characterized by the small seta on the inner corner (arrow) and 3 long setae on the outer corner. The last segment bears 4 claws, three of which are large and indented; the last one is small, smooth and located on the medial side of the base of the outermost claw (arrowhead). Scale bar = 15 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.