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220 results for “replacement name”
FIGURES 1–8 in Two replacement names of the genus group of Micronoctuini and a new species of the genus Tentaxus Han & Kononenko from Sabah, East Malaysia (Lepidoptera, Erebidae, Hypenodinae). Taxonomic study of Micronoctuini. Contribution I.
FIGURES 1–8. Tentaxus spp. adults (1–4), male genitalia (5-6), collecting site (7) and map of collecting site (8). 1. T. zhangweiweii sp. nov., male, holotype; 2 & 3. ditto, males, paratypes; 4. T. musculus Fibiger, 2011, male (after Fibiger, 2011); 5. T. zhangweiweii sp. nov., holotype, gen. prep. No. hhl-3605-1; 6. T. musculus Fibiger, 2011 (after Fibiger, 2011); 7. Collecting site of T. zhangweiweii sp. nov. in tropical rain forest; 8. Map of collection site in Jungle Girl Camp (Sabah of Borneo, East Malaysia).
Figures 1-2 in A new species of Scaphisoma Leach, 1815 from New Guinea and a new replacement name (Coleoptera: Staphylinidae: Scaphidiinae)
Figures 1-2. Scaphisoma telnovi sp. nov., holotype ♀. 1 – Habitus, dorsal view; 2 –ditto, lateral view [scale bar 1 mm].
FIGURE 2 in A new replacement name for Lonchodes fruhstorferi (Carl 1913)
FIGURE 2. Holotype female. Lateral view. Lonchodes baweanensis. Photo by Peter Schwendinger. Copyright MHNG Geneva.
FIGURE 4 in A new replacement name for Lonchodes fruhstorferi (Carl 1913)
FIGURE 4. Paratype female. Lateral view. Lonchodes baweanensis. Photo by Peter Schwendinger. Copyright MHNG Geneva.
FIGURE 1 in A new replacement name for Lonchodes fruhstorferi (Carl 1913)
FIGURE 1. Holotype female. Dorsal view. Lonchodes baweanensis. Photo by Peter Schwendinger. Copyright MHNG Geneva.
FIGURE 3 in A new replacement name for Lonchodes fruhstorferi (Carl 1913)
FIGURE 3. Paratype female. Dorsal view. Lonchodes baweanensis. Photo by Peter Schwendinger. Copyright MHNG Geneva.
FIGURE 6 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 6. Eurypon verticillatum sp. nov. (UFPEPOR 1966, holotype). A, specimen in vivo; B, close up of sponge surface; C, thick section showing ectosome and choanosome. Scale bars: A = 2 cm; B = 5 mm; C = 700 µm.
FIGURE 2 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 2. Eurypon oxychaetum sp. nov. (UFPEPOR 3007, holotype). A, preserved specimen; B, close up of sponge surface; C, thick section showing ectosome and choanosome. Scale bars: A = 2 cm; B = 5 mm; C = 500 µm.
FIGURE 5 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 5. Spicule complement of Eurypon potiguaris sp. nov. (UFPEPOR 1949, holotype) in SEM. A, choanosomal tylostyles; B, tylostyles details; C, size variation of oxeas; D, oxea details; E, size variation of acanthostyles I; F, acanthostyles I details; G, acanthostyles II; H, acanthostyles II details. Scale bars: A = 500 µm; B, F–G = 20 µm; C, E = 50 µm; D, H = 10 µm.
FIGURE 1 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 1. Location of study area and collection sites of Eurypon species, (1) Eurypon verticillatum sp. nov. (Pernambuco State); (2) (3) Eurypon oxychaetum sp. nov. (Paraíba State); (4) Eurypon potiguaris sp. nov. (Rio Grande do Norte State). Abbreviations are: AL = Alagoas State; BA = Bahia State; CE = Ceará State; PB = Paraíba State; PE = Pernambuco State; RN = Rio Grande do Norte State.
FIGURE 4 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 4. Eurypon potiguaris sp. nov. (UFPEPOR 1949, holotype). A, preserved specimen; B, close up of sponge surface. Scale bars: A = 2 cm; B = 2 mm.
FIGURE 3 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 3. Spicule complement of Eurypon oxychaetum sp. nov. (UFPEPOR 3007, holotype) in SEM. A, choanosomal subtylostyles; B, subtylostyles details; C, subectosomal styles; D, styles details; E, oxychaetes; F, oxychaetes details; G, acanthostyles I; H, acanthostyles I details; I, acanthostyles II; J, acanthostyles II details. Scale bars: A = 500 µm; B = 40 µm; C = 100 µm; D, H, J = 10 µm; E, I = 20 µm; F = 4 µm; G = 50 µm.
FIGURE 7 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 7. Spicule complement of Eurypon verticillatum sp. nov. (UFPEPOR 1966, holotype) in SEM. A, choanosomal tylostyles; B, tylostyles details; C, size variation of acanthostyles I; D, acanthostyles I and details of verticillate spines (arrows); E, size variation of acanthostyles II; F, acanthostyles II details and details of verticillate spines (arrows); G, raphides. Scale bars: A = 200 µm; B, D = 10 µm; C = 50 µm; E = 20 µm; F–G = 5 µm.
FIGURE 10. Staurocalyptus pamelaturnerae, n in Four new species of Hexactinellida (Porifera) and a name replacement from the NE Pacific
FIGURE 10. Staurocalyptus pamelaturnerae, n. sp. holotype spicules. A. A prostal diactin and enlargements of the end. B. Two hypodermal pentactins with enlargements of ray ends. C. Two choanosomal diactins and four enlarged ends. D. Dermalia, pentactin and stauractin with enlarged ray ends. E. Atrialia, pentactin and hexactin. F. Microdiscohexaster at same scale as other microscleres, and enlarged terminal ray end. G. Microdiscohexaster enlarged to show detail. H. Hemioxyhexaster. I. Oxyhexaster. J. Oxyhexactin. K. Small discoctaster. L. Large discoctaster with magnified secondary ray end.
FIGURE 7. Rhabdocalyptus trichotis n in Four new species of Hexactinellida (Porifera) and a name replacement from the NE Pacific
FIGURE 7. Rhabdocalyptus trichotis n. sp., holotype body. A. The holotype in lab. B. External view of distal end with conules and veil. C. Internal view of distal end with turned-in margin and veil. D. Dermal (outer) surface showing remnants of the dermal lattice. E. Atrial (inner) surface showing uncovered exhalant canals and atrial lattice directly applied to the underlying tissues and thus invisible. F. Atrial peel containing pentactins and diactins.
FIGURE 2. Pinulasma bowiensis n in Four new species of Hexactinellida (Porifera) and a name replacement from the NE Pacific
FIGURE 2. Pinulasma bowiensis n. sp., holotype body. A. Dermal side of some larger fragments of the preserved holotype showing dermal processes projecting out and fused to form ridges. B. The largest fragment, atrial side, showing large apertures on the atrial surface that pass out into the dermal processes. C. Outer (dermal) view of a medium-size fragment, upper end left. D. lateral view of the same fragment, main wall at bottom from which dermal processes project upwards in this view. E. Outer ridge of dermal process with two parietal oscula. F. Parietal osculum with a few scopules projecting from its margin. G. Dermal lattice of loose pentactins covering the dark inhalant channels. H. Close view of dermal pentactin lattice showing variation in arrangement of spicule rays. I. Close view of atrial lattice showing a consistent uniform arrangement of spicule rays.
FIGURE 1 in Four new species of Hexactinellida (Porifera) and a name replacement from the NE Pacific
FIGURE 1. Map of the two collection areas, Bowie Seamount and remains of the USS Independence with locations of species marked by black circles.
FIGURE 4. Pinulasma bowiensis n in Four new species of Hexactinellida (Porifera) and a name replacement from the NE Pacific
FIGURE 4. Pinulasma bowiensis n. sp., holotype spicules. A. Dermal and atrial pentactins with enlarged tangential and proximal ray ends. B. Tyloscopules, whole, enlarged ends and greatly enlarged tine club. C. Choanosomal small oxyhexactins, separate (above) and fused network (below). D. Uncinate, whole and enlarged mid-segment. E. Discohexasters 1 (above) and discohexaster 2 (below). F. Terminal ray tufts of discohexaster 1 (left) and discohexaster 2 (right). G. Oxyhexaster whole. H. Terminal rays of oxyhexaster.
FIGURE 12. Hyalascus farallonensis n in Four new species of Hexactinellida (Porifera) and a name replacement from the NE Pacific
FIGURE 12. Hyalascus farallonensis n. sp., holotype spicules. A. Three primary diactins and enlarged ends. B. Two hypodermal pentactins and enlarged ray ends. C. Three choanosomal diactins and enlarged ray ends. D A short atrial diactin that probably is an atrialium. E. Dermalia: pentactin and stauractin with enlarged ray ends. F. Atrialia: hexactins, stauractin, diactin and paratetractin with enlarged ray ends. G. Oxyhexaster and hemioxyhexaster with enlarged terminal ray end. H. Oxyhexactin. I. Microdiscohexaster at same magnification as other microscleres. J. Microdiscohexaster enlarged to show details.
FIGURE 6. Farrea schulzei n. nom., spicules. A in Four new species of Hexactinellida (Porifera) and a name replacement from the NE Pacific
FIGURE 6. Farrea schulzei n. nom., spicules. A. Dermalia, pentactin and paratetractin and closeups of tangential and proximal ray ends. B. Atrialia, pentactin and paratetractin with closeups of ray ends. C. Anchorate clavules, two whole and enlarged ends. D. Uncinate, whole and enlarged middle segment. E. Oxyhexaster with enlarged secondary ray end. F. Hemioxyhexaster. G. Oxyhexactin.
ScienceDex guides
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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.