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FIGURES 6–8 in New combinations and synonymies in the weevil genus Lyterius Schönherr (Coleoptera, Curculionidae), with a conspectus of historical works on Daldorff's Sumatran beetles
FIGURES 6–8. Labels associated with first specimen of historical series. 6, Lyterius abdominalis in MfNB (original labels replaced in 1870); 7, Plaxes impar in MSNG (lectotype, see Fig. 3); 8, Plaxes impar in NHMUK (paralectotype, photograph by Keita Matsumoto).
FIGURE 9 in New combinations and synonymies in the weevil genus Lyterius Schönherr (Coleoptera, Curculionidae), with a conspectus of historical works on Daldorff's Sumatran beetles
FIGURE 9. Map of South and Southeast Asia with presently known collecting sites of Lyterius species and type localities of L. abdominalis (1), L. pandanicola (2) and L. impar (3).
FIGURES 11–14 in New combinations and synonymies in the weevil genus Lyterius Schönherr (Coleoptera, Curculionidae), with a conspectus of historical works on Daldorff's Sumatran beetles
FIGURES 11–14. Sexual dimorphism and infraspecific variation in a series of three males and two females of a species near L. impar and L. dispar from Sarawak (donation of SMSM to SNSD by J. Hewitt in 1907). 11a, head of male with short, cuneiform rostrum; b, head of female with subcylindrical rostrum; 12a, anterior portion of pronotum of male with even surface; b, anterior portion of pronotum of female with subtle median longitudinal ridge; 13a, profemur of male with ventral tooth; b, profemur of female without ventral tooth; 14a, b, mesofemur of males with ventral tooth and infraspecific variation of mesotibia (two specimens with inner margin sinuous (a), one with abrupt basiventral protrusion (b)); c, mesofemur of female without tooth, mesotibia with inner margin nearly straight.
FIGURES 1–5 in New combinations and synonymies in the weevil genus Lyterius Schönherr (Coleoptera, Curculionidae), with a conspectus of historical works on Daldorff's Sumatran beetles
FIGURES 1–5. Type species/specimens of Lyterius Schönherr, Plaxes Pascoe and Barisoma Motschulsky. 1, 2, paralectotype male and lectotype female of Rhynchaenus musculus Fabricius (ZMUK, Lund-Sehested Collection), type species of Lyterius; 3, 4, lectotype male and paralectotype female of Plaxes impar Pascoe (MSNG); 5, syntypes male and female of Barisoma pandanicola Motschulsky (ZMMU). Photographs 1–4 by Anne Mack (ZMUK), 5 by Vladimir Savitsky (ZMMU).
FIGURE 10 in New combinations and synonymies in the weevil genus Lyterius Schönherr (Coleoptera, Curculionidae), with a conspectus of historical works on Daldorff's Sumatran beetles
FIGURE 10. Male Lyterius sp. from West Java (ANIC) showing metanepisternal suture with false sclerolepidia (a) and mesotibial apex with stout, spine-like setae (b).
FIGURE 5. Alternative topologies among 11 in Māwhitiwhiti Aotearoa: Phylogeny and synonymy of the silent alpine grasshopper radiation of New Zealand (Orthoptera: Acrididae)
FIGURE 5. Alternative topologies among 11 representative species of Aotearoa New Zealand grasshopper used to test compatibility of existing taxonomic treatment. A) unconstrained ML phylogeny of 15 protein coding genes, and B) the same data with congeneric species constrained to monophyly is a significantly less-likely tree.
FIGURE 4 in Māwhitiwhiti Aotearoa: Phylogeny and synonymy of the silent alpine grasshopper radiation of New Zealand (Orthoptera: Acrididae)
FIGURE 4. Phylogenetic hypothesis for the New Zealand alpine grasshoppers inferred from combinations of mitochondrial and nuclear genes.
FIGURE 6 in Māwhitiwhiti Aotearoa: Phylogeny and synonymy of the silent alpine grasshopper radiation of New Zealand (Orthoptera: Acrididae)
FIGURE 6. Morphological features of adult māwhitiwhiti Aotearoa New Zealand grasshoppers helpful for species identification, mapped to the molecular phylogeny. Drawings of the male internal reproductive structure (epiphallus) from Bigelow (1967) and are not to scale.
FIGURE 7. Sigaus piliferus Hutton 1897 in Māwhitiwhiti Aotearoa: Phylogeny and synonymy of the silent alpine grasshopper radiation of New Zealand (Orthoptera: Acrididae)
FIGURE 7. Sigaus piliferus Hutton 1897. Anterior, lateral and dorsal views of neotypes (Bigelow 1967) at Canterbury Museum, New Zealand. A) NEOTYPE, adult male, Pohangina Saddle, East Ruahine Range, 4600 feet (~1400 metres) asl, 27 February 1965, R & A Hilson, CM2007.177.279. B) NEOALLOTYPE, adult female, Pohangina Saddle, East Ruahine Range, 4600 feet (~1400 metres) asl, 27 February 1965, R & A Hilson, CM2007.177.280. Photographs courtesy of Jonathon Ridden.
FIGURE 3 in Māwhitiwhiti Aotearoa: Phylogeny and synonymy of the silent alpine grasshopper radiation of New Zealand (Orthoptera: Acrididae)
FIGURE 3. Phylogenetic hypothesis for the Aotearoa New Zealand alpine grasshoppers inferred from alignment of 19,778 bp comprising 13 mitochondrial protein coding genes and two rRNAs, nuclear protein coding histones 3 & 4 and 45S cassette (with indels removed). Maximum likelihood analysis performed in IQ-Tree with codon partitioning. Numbers at nodes are results from 10000 bootstrap replicates.
FIGURE 2 in Māwhitiwhiti Aotearoa: Phylogeny and synonymy of the silent alpine grasshopper radiation of New Zealand (Orthoptera: Acrididae)
FIGURE 2. Schematic representation of published mtDNA COI sequence variation within species lineages of endemic Aotearoa New Zealand Acrididae in the alpine radiation (Supplementary Table S1 for data details). Recorded locations of each taxon are coloured as shown in the phylogeny (left). Triangles on maps indicate two rare, localised species that are recognised by morphology, but are phylogenetically nested within other more widespread lineages (with corresponding colour). The sampling locations of specimens used in the current study are indicated on the maps with their unique identifiers (see Table 2).
FIGURE 1A in Māwhitiwhiti Aotearoa: Phylogeny and synonymy of the silent alpine grasshopper radiation of New Zealand (Orthoptera: Acrididae)
FIGURE 1A. The generic placement of the thirteen species of grasshoppers/māwhitiwhiti from Aotearoa New Zealand since the first species descriptions in 1897 with the phylogenetic relationships implied by the current classification. Figure 1B. Māwhitiwhiti Aotearoa are diverse in form and ecology. An adult male Sigaus minutus is shown on top of an adult female Sigaus villosus to allow size comparison of smallest and largest species within this radiation. See Table 1.
FIGURE 10. Coenosia spp. A, B. Coenosia baikalensis. A. Male habitus, lateral view. B. Female habitus, lateral view. C, D. Coenosia tendipes. C. Female habitus, lateral view. D. Male habitus, lateral view. E, F. Coenosia flaviseta. E in A key to the Russian species of the genus Coenosia Meigen (Diptera, Muscidae), with the description of one new species and new synonymies
FIGURE 10. Coenosia spp. A, B. Coenosia baikalensis. A. Male habitus, lateral view. B. Female habitus, lateral view. C, D. Coenosia tendipes. C. Female habitus, lateral view. D. Male habitus, lateral view. E, F. Coenosia flaviseta. E. Male, head, lateral view. F. Female habitus, lateral view. G, H. Coenosia conflicta. G. Male habitus, lateral view. H. Female habitus, lateral view. Bare: 1 mm.
FIGURE 3. Coenosia spp. A–C. Coenosia ozerovi. A. Terminalia, lateral view. B. Cercal plate, dorsal view. C. Sternite 5. D, E. Coenosia subgracilis. D. Terminalia, lateral view. E. Cercal plate, dorsal view. F, G in A key to the Russian species of the genus Coenosia Meigen (Diptera, Muscidae), with the description of one new species and new synonymies
FIGURE 3. Coenosia spp. A–C. Coenosia ozerovi. A. Terminalia, lateral view. B. Cercal plate, dorsal view. C. Sternite 5. D, E. Coenosia subgracilis. D. Terminalia, lateral view. E. Cercal plate, dorsal view. F, G. Coenosia ghilarovi (from Lobanov, 1988). F. Terminalia, lateral view. G. Cercal plate, dorsal view. H, I. Coenosia conflicta. H. Terminalia, lateral view. I. Cercal plate, dorsal view.
FIGURE 2 in A key to the Russian species of the genus Coenosia Meigen (Diptera, Muscidae), with the description of one new species and new synonymies
FIGURE 2. Coenosia cingulipes (Zetterstedt, 1849), female, holotype. A. Habitus, dorsal view. B. Habitus, lateral view. Bare: 1 mm. Photo: Christoffer Fägerström (Biological Museum, Lund University, Sweden).
FIGURE 9. Coenosia spp. A in A key to the Russian species of the genus Coenosia Meigen (Diptera, Muscidae), with the description of one new species and new synonymies
FIGURE 9. Coenosia spp. A. Coenosia tigrina, female, hind tibia. B. Coenosia intermedia, female, hind tibiae. C. Coenosia ozerovi, male, fore tarsi. D. Coenosia ambulans, female, head. E. Coenosia kosterini, male, lateral view. F, G. Coenosia alaskensis. F. Female habitus, lateral view. G. Male habitus, lateral view. Bare: 1 mm.
FIGURE 6. Coenosia spp. A–E. Coenosia penicillata. A. Terminalia, lateral view. B. Cercal plate, dorsal view. C. Sternite 5. D in A key to the Russian species of the genus Coenosia Meigen (Diptera, Muscidae), with the description of one new species and new synonymies
FIGURE 6. Coenosia spp. A–E. Coenosia penicillata. A. Terminalia, lateral view. B. Cercal plate, dorsal view. C. Sternite 5. D. Terminalia, lateral view (from Shinonaga, 2003). E. Sternite 5 (from Shinonaga, 2003). F, G. Coenosia oralis. F. Terminalia, lateral view. G. Cercal plate, dorsal view. H, I. Coenosia tendipes. H. Terminalia, lateral view. I. Cercal plate, dorsal view.
FIGURE 1 in A key to the Russian species of the genus Coenosia Meigen (Diptera, Muscidae), with the description of one new species and new synonymies
FIGURE 1. Coenosia luxia sp. nov. A. Holotype, male, lateral view. B. Holotype, dorsal view. C. Paratype, female, lateral view. D. Terminalia, lateral view. E. Cercal plate, dorsal view. F. Sternite 5. Bare: 1 mm.
FIGURE 8. Coenosia spp. A, B. Coenosia ozerovi. A. Male habitus, lateral view. B. Female habitus, lateral view. C, D. Coenosia nigrotincta. C in A key to the Russian species of the genus Coenosia Meigen (Diptera, Muscidae), with the description of one new species and new synonymies
FIGURE 8. Coenosia spp. A, B. Coenosia ozerovi. A. Male habitus, lateral view. B. Female habitus, lateral view. C, D. Coenosia nigrotincta. C. Female habitus, lateral view (Pevek). D. Male habitus, lateral view (Beringovskii). E, F. Coenosia ukokensis. E. Male habitus, lateral view (Magadan). F. Female habitus, lateral view (Magadan). Bare: 1 mm.
FIGURE 7. Coenosia spp. A, B. Coenosia ciliata. A. Male habitus, lateral view. B. Female habitus, lateral view. C in A key to the Russian species of the genus Coenosia Meigen (Diptera, Muscidae), with the description of one new species and new synonymies
FIGURE 7. Coenosia spp. A, B. Coenosia ciliata. A. Male habitus, lateral view. B. Female habitus, lateral view. C. Coenosia penicillata, male habitus, lateral view. D, E. Coenosia subgracilis. D. Male habitus, lateral view (the holotype of Coenosia altaica Sorokina, 2009). E. Female habitus, lateral view (the paratype of C. altaica Sorokina, 2009). F, G. Coenosia oralis. F. Male habitus, lateral view. G. Female habitus, lateral view; H, I. Coenosia ukokensis. H. Male, holotype, lateral view. I. Female, paratype, lateral view. Bare: 1 mm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.