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2,417 results for “new subspecies”
Fig. 1 in A new subspecies of Pachyrhynchus corpulentusSchultze, 1922 (Entiminae: Pachyrhynchini) from Northern Mindanao, the Philippines with notes on species ecology
Fig. 1. Map of the Philippines and Mindanao showing Mount Balatukan, Civoleg, Gingoog City, Misamis Oriental (8°43'26" N, 125°00'13" E; 1,294 m asl) where the specimens of the new subspecies were collected.
Fig. 3 in A new subspecies of Pachyrhynchus corpulentusSchultze, 1922 (Entiminae: Pachyrhynchini) from Northern Mindanao, the Philippines with notes on species ecology
Fig. 3. Pachyrhynchus corpulentus balatukansubsp. nov. male aedegus in lateral (a), ventral (b), dorsal (c). Scale bar: 0.5 mm.
Fig. 3.Boletoxenus mixtus dynastesssp. nov. holotype male, aedeagus. A in A new subspecies ofBoletoxenus mixtus Grimm, 2014 (Coleoptera: Tenebrionidae: Tenebrioninae)
Fig. 3.Boletoxenus mixtus dynastesssp. nov. holotype male, aedeagus. A – Dorsal view; B – Ventral view; C – Lateral view.
Fig. 2 in A new subspecies of Pachyrhynchus corpulentusSchultze, 1922 (Entiminae: Pachyrhynchini) from Northern Mindanao, the Philippines with notes on species ecology
Fig. 2. Pachyrhynchus corpulentus balatukan subsp. nov. habitus holotype male (c, d), paratype female (a, b), dorsal (a, c), and lateral (b, d) views. Scale bar: 3 mm.
Fig. 1.Boletoxenus mixtus dynastesssp. nov. holotype male. A in A new subspecies ofBoletoxenus mixtus Grimm, 2014 (Coleoptera: Tenebrionidae: Tenebrioninae)
Fig. 1.Boletoxenus mixtus dynastesssp. nov. holotype male. A – Habitus, dorsal view; B – ditto, lateral view; C – ditto, anterior view [not to scale].
Figure 7 in A new subspecies of Lyciasalamandra flavimembris (Urodela: Salamandridae) from Muğla, southwestern Turkey
Figure 7. Distribution of L. f. ilgazi subsp. nov. (star) and L. f. flavimembris (triangle): 1) 6 km north of Marmaris; 2) Çiçekli village - Ula/Muğla; 3) Kötekli/Muğla.
Figure 3 in A new subspecies of Lyciasalamandra flavimembris (Urodela: Salamandridae) from Muğla, southwestern Turkey
Figure 3. Differential coloration of L. f. flavimembris and L. f. ilgazi subsp. nov.: (a) head coloration of L. f. flavimembris; (b) Head coloration of L. f. ilgazi subsp. nov.; (c) hind limb coloration of L. f. flavimembris; (d) hind limb coloration of L. f. ilgazi subsp. nov.
Figure 2 in A new subspecies of Lyciasalamandra flavimembris (Urodela: Salamandridae) from Muğla, southwestern Turkey
Figure 2. General view of adult: (a) L. f. flavimembris (Çiçekli - Ula/Muğla) and (b) L. f. ilgazi subsp. nov. (Kötekli/Muğla).
Figure 1 in A new subspecies of Lyciasalamandra flavimembris (Urodela: Salamandridae) from Muğla, southwestern Turkey
Figure 1. General view of juvenile: (a) L. f. flavimembris (Çiçekli - Ula/Muğla) and (b) L. f. ilgazi subsp. nov. (Kötekli/Muğla).
Figure 7 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia
Figure 7. Comparison of crania, molar rows, and lower jaws of Novaya Zemlya (Lemmus lemmus chernovi ssp. nov.) [holotype RMBH Lem005] and Norwegian (L. l. lemmus) lemmings [specimen RMBH Lem040, Kola Peninsula]. (A, B, C) Crania of Novaya Zemlya Lemming: (A) dorsal view, (B) ventral view, and (C) lateral view. (D, E, F) Crania of Norwegian Lemming: (D) dorsal view, (E) ventral view, and (F) lateral view. Scale bar = 5 mm. (G, H) Molar rows of Novaya Zemlya Lemming: (G) maxillary, and (H) mandibular. (I, J) Molar rows of Norwegian Lemming: (I) maxillary, and (J) mandibular. Scale bar = 1 mm. (K, L) Lower jaw of Novaya Zemlya Lemming: (K) outer lateral view, and (L) inner lateral view. (M, N) Lower jaw of Norwegian Lemming: (M) outer lateral view, and (N) inner lateral view. Scale bar = 5 mm. (Photos: Vitaly M. Spitsyn).
Figure 5 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia
Figure 5. Ancestral coloration reconstruction (Bayesian Binary MCMC analysis) of Lemmus taxa based on our fossilcalibrated BEAST v. 1.10.4 phylogeny. Black numbers near nodes are BEAST's BPP. The Lemmus trimucronatus + L. nigripes clade (cryptic coloration) is omitted. (Photos: Vitaly M. Spitsyn).
Figure 6 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia
Figure 6. Dorsal view of lemming specimens: (A) Novaya Zemlya Lemming (Lemmus lemmus chernovi ssp. nov.) [holotype RMBH Lem005], and (B) Norwegian Lemming (L. lemmus lemmus) [RMBH Lem040, Kola Peninsula]. Scale bar = 10 mm. (Photos: Vitaly M. Spitsyn).
Figure 4 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia
Figure 4. Ancestral area reconstruction (combined scenario: S-DIVA + BayArea models) of Lemmus taxa based on our fossil-calibrated BEAST v. 1.10.4 phylogeny. Black numbers near nodes are BEAST's BPP.
Figure 3 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia
Figure 3. Phylogeny and phylogeography of Lemmus taxa. (A) Fossil-calibrated ultrametric chronogram of Lemmus obtained with BEAST v. 1.10.4 for the cytb haplotype data set. Bars indicate 95% confidence intervals of the estimated divergence times (Ka). Red and black numbers near nodes are mean ages (Ka) and BPP of BEAST, respectively. Red stars indicate time calibrations: a stem lineage of the Lemmus clade with absolute age estimate 2,600 Ka and 95% soft upper bound 5,200 Ka (C1); and Lemmus sp. 'Yakutia Mummy' with absolute age estimate 40 Ka (C2). Outgroup taxa (Dicrostonyx torquatus, D. hudsonius, Synaptomys cooperi, and Myopus schisticolor) are not shown. (B) Medianjoining haplotype network of Novaya Zemlya, Norwegian, and Siberian lemmings based on the cytb sequences (N = 17). Circle size is proportional to the number of available sequences belonging to a certain haplotype (smallest circle = one sequence). Small black dots indicate hypothetical ancestral haplotypes. Red numbers near branches indicate the number of nucleotide substitutions between haplotypes.
Figure 2 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia
Figure 2. Maximum likelihood (IQ-TREE) phylogeny of Lemmus taxa based on the cytb gene haplotypes. The Novaya Zemlya Lemming (Lemmus lemmus chernovi ssp. nov.) is colored red. The numbers near nodes are ultrafast bootstrap support values/Bayesian posterior probabilities. The red asterisks indicate the putative species-level clades supported by bPTP and sPTP species-delimitation models. The scale bar indicates the branch length. Outgroup taxa (Dicrostonyx torquatus, D. hudsonius, Synaptomys cooperi, and Myopus schisticolor) are not shown.
Figure 1 in A new Norwegian Lemming subspecies from Novaya Zemlya, Arctic Russia
Figure 1. Ranges and habitats of the true lemmings (Lemmus). (A) Distribution map of Lemmus taxa. Ranges were digitized based on published data and our records (Table 1). Red circles indicate sampling localities of Novaya Zemlya Lemming (L. lemmus chernovi ssp. nov.): 1 – Malye Karmakuly Polar Station (type locality), 2 – Bezymyannaya Bay (Table 1). The topographic base of the map was created with Natural Earth Free Vector and Raster Map Data (www.naturalearthdata.com). The map was created using ESRI ArcGIS 10 software (www.esri.com/arcgis). (B, C, D) Habitats of Lemmus taxa: (B) Novaya Zemlya Lemming (type locality, Novaya Zemlya), (C) Norwegian Lemming (Kola Peninsula), and (D) Siberian Lemming (Taimyr Peninsula). (Photos: Vitaly M. Spitsyn [B, C] and Natalia A. Zubrii [D])
Figure 5 in New and recent records of hawk moths (Lepidoptera: Sphingidae) from Seychelles, with a description of a new insular subspecies
Figure 5. Type locality and habitat of Temnora fumosa seychellensis ssp. nov.: sedge-fern swamp with pandanus trees surrounded by palm-cinnamon forest at La Plaine Hollandaise, Praslin, Seychelles. (Photo: Ivan N. Bolotov).
Figure 4 in New and recent records of hawk moths (Lepidoptera: Sphingidae) from Seychelles, with a description of a new insular subspecies
Figure 4. Comparative analysis of the male genitalia and aedeagi of Temnora fumosa fumosa, T. fumosa seychellensis ssp. nov. (holotype), and T. peckoveri (Butler, 1876). (A-C) Distal end of the aedeagus (lateral view): (A) T. fumosa fumosa; (B) T. fumosa seychellensis ssp. nov.; and (C) T. peckoveri. (D-F) Valva and harpe (lateral view): (D) T. fumosa fumosa; (E) T. fumosa seychellensis ssp. nov.; and (F) T. peckoveri. The red arrow indicates a strong long tooth at the distal end of T. peckoveri aedeagus, a diagnostic feature of this species. (Photos: I. J. Kitching, Sphingidae Taxonomic Inventory Portal, Natural History Museum, London, UK [A, C, D, F; Kitching 2020a, b] and Elizaveta A. Spitsyna [B, E]).
Figure 3 in New and recent records of hawk moths (Lepidoptera: Sphingidae) from Seychelles, with a description of a new insular subspecies
Figure 3. Male genitalia and aedeagus of Temnora fumosa seychellensis ssp. nov. (holotype) from La Plaine Hollandaise, Praslin, Seychelles, 08 February 2016. (A) Male genitalia (lateral view). (B) Aedeagus (lateral view). (Photos: Elizaveta A. Spitsyna).
Figure 2 in New and recent records of hawk moths (Lepidoptera: Sphingidae) from Seychelles, with a description of a new insular subspecies
Figure 2. Holotype male of Temnora fumosa seychellensis ssp. nov. from La Plaine Hollandaise, Praslin, Seychelles, 08 February 2016. (A) Upperside. (B) Underside. Scale bar = 10 mm. (Photos: Elizaveta A. Spitsyna).
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.