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10,136 results for “new species group”
FIGURE 15 in The ater-group of the genus Apanteles Foerster (Hymenoptera, Braconidae, Microgastrinae) from China with the descriptions of forty-eight new species
FIGURE 15. Apanteles bialtus Liu & Chen, sp. nov. Holotype. a. habitus, lateral view; b. mesopleuron; c. head, dorsal view; d. head, frontal view; e. propodeum; f. metasoma, dorsal view; g. hind wing; h. mesonotum and scutellum, dorsal view. Scale line = 0.5 mm.
FIGURE 27. Apanteles cocotis Wilkinson, 1934 in The ater-group of the genus Apanteles Foerster (Hymenoptera, Braconidae, Microgastrinae) from China with the descriptions of forty-eight new species
FIGURE 27. Apanteles cocotis Wilkinson, 1934 (new record), a. habitus, lateral view; b. fore wing; c. propodeum; d. mesopleuron; e. head, dorsal view; f. hind wing; g. mesonotum and scutellum, dorsal view; h. head, frontal view; i. metasoma, dorsal view. Scale line = 0.5 mm.
FIGURE 17 in The ater-group of the genus Apanteles Foerster (Hymenoptera, Braconidae, Microgastrinae) from China with the descriptions of forty-eight new species
FIGURE 17. Apanteles brevitempus Liu & Chen, sp. nov. Holotype. a. habitus, lateral view; b. fore wing; c. hind wing; d. mesonotum and scutellum, dorsal view; e. head, frontal view; f. metasoma, dorsal view; g. head, dorsal view; h. propodeum; i. mesopleuron. Scale line = 0.5 mm.
FIGURE 18. Apantles brunnistigma Abdinbekova, 1969 in The ater-group of the genus Apanteles Foerster (Hymenoptera, Braconidae, Microgastrinae) from China with the descriptions of forty-eight new species
FIGURE 18. Apantles brunnistigma Abdinbekova, 1969 (new record), a. habitus, lateral view; b. hind wing; c. mesonotum and scutellum, dorsal view; d. head, dorsal view; e. head, frontal view; f. ovipositor sheath; g. mesopleuron; h. propodeum and metasoma, dorsal view. Scale line = 0.5 mm.
FIGURE 31. Apanteles demades Nixon, 1965 in The ater-group of the genus Apanteles Foerster (Hymenoptera, Braconidae, Microgastrinae) from China with the descriptions of forty-eight new species
FIGURE 31. Apanteles demades Nixon, 1965 (new record), a. habitus, lateral view; b. fore wing; c. hind wing; d. head, dorsal view; e. propodeum; f. mesopleuron; g. antenna; h. metasoma, dorsal view; i. mesonotum and scutellum, dorsal view; j. head, frontal view. Scale line = 0.5 mm.
FIGURE 4 in Description of a new group of species of Edessa Fabricius, 1803 (Hemiptera: Pentatomidae: Edessinae) with translucent spot on hemelytra
FIGURE 4. Edessa brunneofasciata sp. n. A–C Male, pygophore; A—dorsal view; B—posterior view; C—ventral view. D— Female, genital plates (Scale = 1mm).
FIGURE 2 in Description of a new group of species of Edessa Fabricius, 1803 (Hemiptera: Pentatomidae: Edessinae) with translucent spot on hemelytra
FIGURE 2. Edessa translucida sp. n. A–C Male, pygophore; A—dorsal view; B—posterior view; C—ventral view. D—Female, genital plates (Scale = 1mm).
FIGURE 1. Edessa stalii. A–C in Description of a new group of species of Edessa Fabricius, 1803 (Hemiptera: Pentatomidae: Edessinae) with translucent spot on hemelytra
FIGURE 1. Edessa stalii. A–C Male, pygophore; A—dorsal view; B—posterior view; C—ventral view. D—Female, genital Plates (dr—dorsal rim; vr—ventral rim; proc—proctiger; gp—genital superior process; pa—parameres; gc8—gonocoxite 8; gc9—gonocoxite 9; la8—laterotergite 8; la9—laterotergite 9; x—abdominal segment X. Scale = 1mm).
FIG. 5 in Description of a new species of the Rhinolophus trifoliatus-group (Chiroptera: Rhinolophidae) from Southeast Asia
FIG. 5. Principal component analysis (PC1 and PC2) based on 13 craniodental characters of 41 specimens of R. francisi sp. nov. (black diamonds), R. beddomei (squares), R. formosae (circles), R. trifoliatus (triangles), R. luctus (crosses) and R. sedulus (asterisks). Loading scores are in Table 3
FIG. 3 in Description of a new species of the Rhinolophus trifoliatus-group (Chiroptera: Rhinolophidae) from Southeast Asia
FIG. 3. Lateral (left of each row) and dorsal view (right of each row) of skulls of: a — R. francisi sp. nov., ♂PSUZC-MM.2008.51 (holotype of thailandicus subsp. nov.) from Thailand; b — R. beddomei ♂BMNH.82.3.3.1 (holotype) from India; c — R. formosae ♀NMNS006665 from Taiwan; d — R. trifoliatus ♀BMNH.7.4.18.1 (holotype of edax) from Singapore; e — R. luctus BMNH.89.1.8.4 (holotype of foetidus) from Sarawak, Malaysia; f — R. sedulus ♀BMNH.7.1.1.292 (holotype) from Sarawak, Malaysia. Scale = 10 mm
FIG. 1 in Description of a new species of the Rhinolophus trifoliatus-group (Chiroptera: Rhinolophidae) from Southeast Asia
FIG. 1. Face, noseleaf and ventral pelage (a, b), sella (c) and dorsal pelage (d) of R. francisi sp. nov., ♂PSUZC-MM.2008.51 (holotype of thailandicus subsp. nov.) from Thailand. Not to scale
FIG. 4 in Description of a new species of the Rhinolophus trifoliatus-group (Chiroptera: Rhinolophidae) from Southeast Asia
FIG. 4. Occlusal view of left upper toothrow (left of each row) and right lower toothrow (right of each row) of: a — R. francisi sp. nov., ♂PSUZC-MM.2008.51 (holotype of thailandicus subsp. nov.) from Thailand; b — R. beddomei ♂BMNH.82.3.3.1 (holotype) from India; c — R. formosae ♀NMNS006665 from Taiwan; d — R. trifoliatus ♀BMNH.7.4.18.1 (holotype of edax) from Singapore; e — R. luctus BMNH.89.1.8.4 (holotype of foetidus) from Sarawak, Malaysia; f — R. sedulus ♀BMNH.7.1.1.292 (holotype) from Sarawak, Malaysia. Scale = 10 mm
inBolikhamsai includedtaxa, ofKading comparisonsNam — K pairwise; Malaysia allEast for,)Sabah studies— otherS; withMalaysia comparisonPeninsularfor— ratesM: equalsamplewiththe,of1983origin, NeiofandregionTamuraindicate(distancesnamegeneticspeciesPercentageafterLetters.. 2studyABLE the T in A new species of bat of the Hipposideros bicolor group (Chiroptera: Hipposideridae) from Central Laos, with evidence of convergent evolution with Sundaic taxa
inBolikhamsai includedtaxa, ofKading comparisonsNam — K pairwise; Malaysia allEast for,)Sabah studies— otherS; withMalaysia comparisonPeninsularfor— ratesM: equalsamplewiththe,of1983origin, NeiofandregionTamuraindicate(distancesnamegeneticspeciesPercentageafterLetters.. 2studyABLE the T
standard with together) corner left bottom (analysis genetic the in included species among bold gene in shown oxidase-I are SE cytochrome and species the within at) % (divergence divergence sequence average The . pairwise) corner showing right upper (Matrix) %;. SE 4 ABLE (T error in Description of a new species of the Rhinolophus trifoliatus-group (Chiroptera: Rhinolophidae) from Southeast Asia
standard with together) corner left bottom (analysis genetic the in included species among bold gene in shown oxidase-I are SE cytochrome and species the within at) % (divergence divergence sequence average The . pairwise) corner showing right upper (Matrix) %;. SE 4 ABLE (T error
FIG. 1 in A new species of bat of the Hipposideros bicolor group (Chiroptera: Hipposideridae) from Central Laos, with evidence of convergent evolution with Sundaic taxa
FIG. 1. Map of Southeast Asia with some of the Sunda islands showing the distribution records of H. ridleyi (diamonds), H. orbiculus (squares), H. rotalis (black and hollow circles), and the new species described here (black circles). The distribution of the first three species was reviewed by Francis et al. (1999). Notice that the black circles correspond to new localities recorded in the present study, where both H. rotalis and the new species were captured
Fig. 4 in A new species of bat of the Hipposideros bicolor group (Chiroptera: Hipposideridae) from Central Laos, with evidence of convergent evolution with Sundaic taxa
Fig. 4. View of skull of the holotype of H. khaokhouayensis (ROM 116790, Field No. CMF980203-29). A — dorsal view, B — ventral view, C — dorsal view of mandible, D — lateral view of skull with mandible. White scales are 10 mm long with tick marks spaced 1 mm
FIG. 5 in A new species in the Hipposideros bicolor group (Chiroptera: Hipposideridae) from Peninsular Malaysia
FIG. 5. Distribution of echolocation call frequencies and lengths of forearm for all H. bicolor captured in peninsular Malaysia for which echolocation call data were available. H. bicolor (=H. bicolor-131; open squares), H. kunzi sp. nov. (=H. bicolor- 142; crosses), and unidentified individuals with intermediate call frequency (solid circles) were included
FIG. 4 in A new species in the Hipposideros bicolor group (Chiroptera: Hipposideridae) from Peninsular Malaysia
FIG. 4. Results of the statistical parsimony analysis for H. kunzi sp. nov. (=H. bicolor-142) recovered two groups, separated by the dashed line (15 steps). Solid lines represent one base pair change. Haplotypes Z and Y are from southern Thailand, haplotypes S, T, U, V, W, and X represent the Perlis group, and all other haplotypes are part of the Malay group. Haplotype A was determined to be the most basal in this analysis
List of tissue specimens of Hipposideros spp. used for cytochrome b sequencing and phylogenetic inference, with geographical data. Voucher refers to the location and/or accession number of the voucher, and tissue collection refers to the collection where the tissue is kept, and accession or collector numbers. Acronyms are as follows: Estación Biológica de DoZana, Sevilla, Spain (EBD), South Australia Museum, Adelaide, Australia (SAM), Senckenberg Museum, Frankfurt am Main, Germany (SMF), Instituto de Ecología, Xalapa, México (IEX), Louisiana State University, Baton Rouge, Louisiana, USA (LSU), Charles M. Francis, Canadian Wildlife Service, Ottawa, Ontario, Canada (CMF), Lao Department of Forestry, Vientiane, Lao PDR, no catalogued (LAO). Next column indicates GenBank accession numbers. More information about the specimens is available in the GenBank records in A new species of bat of the Hipposideros bicolor group (Chiroptera: Hipposideridae) from Central Laos, with evidence of convergent evolution with Sundaic taxa
List of tissue specimens of Hipposideros spp. used for cytochrome b sequencing and phylogenetic inference, with geographical data. Voucher refers to the location and/or accession number of the voucher, and tissue collection refers to the collection where the tissue is kept, and accession or collector numbers. Acronyms are as follows: Estación Biológica de DoZana, Sevilla, Spain (EBD), South Australia Museum, Adelaide, Australia (SAM), Senckenberg Museum, Frankfurt am Main, Germany (SMF), Instituto de Ecología, Xalapa, México (IEX), Louisiana State University, Baton Rouge, Louisiana, USA (LSU), Charles M. Francis, Canadian Wildlife Service, Ottawa, Ontario, Canada (CMF), Lao Department of Forestry, Vientiane, Lao PDR, no catalogued (LAO). Next column indicates GenBank accession numbers. More information about the specimens is available in the GenBank records
FIG. 5 in A new species of bat of the Hipposideros bicolor group (Chiroptera: Hipposideridae) from Central Laos, with evidence of convergent evolution with Sundaic taxa
FIG. 5. Schematic drawing of rostral chambers in dorsal view, mouth above. Dotted areas correspond to dense bone and bone walls, while white areas indicate cavities. A — H. khaokhouayensis ROM 116793; B — H. rotalis IEX-M0095, ♀; C — H. orbiculus SMF 57092; D — H. ridleyi SMF 69291. a) Anterior rostral chamber, b) Postero-lateral rostral chamber, c) and c') postero-median rostral chamber. Notice that in A and B the posterior chambers are not separated by the intermediate wall, and that in D, the posterior median chamber is split in two, c and c'
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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
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.