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4,362 results for “subspecies”
Figure 3 in Diagnosability of mtDNA with Random Forests: Using sequence data to delimit subspecies
Figure 3. Two-dimensional GAM fits of effective population size (Ne), divergence time in generations (T), and mutation rate (µ) from Model 1 simulated data. Results from models without migration to the left and those with migration to the right. Colors indicate model prediction of percent correctly classified.
Figure 1 in Diagnosability of mtDNA with Random Forests: Using sequence data to delimit subspecies
Figure 1. (A) Distribution of a hypothetical character for two putative subspecies (red and blue) demonstrating minimum overlap necessary to satisfy 75% rule of Amadon (1949). Character is continuous on the x-axis. Dashed lines indicate the point at which 75% of each distribution is outside of 99%+ of the other. Solid line indicates point of overlap where 97% of both distributions are outside one another. (B) Probability of membership to subspecies for specimens having values along the character axis. Probability is based on the ratio of the distribution frequencies at each point along the x-axis, with a 50:50 probability occurring at the threshold point.
Fig. 1 in Pilosella hoppeana subsp. sicula Di Grist., Gottschl. & Raimondo (Asteraceae), a new endemic subspecies from Sicily (Italy)
Fig. 1. – Pilosella hoppeana subsp. sicula Di Grist., Gottschl. & Raimondo. A. Habit; B. Detail of apical stem; C. Capitulum; D. Achene. [Di Gristina 101238, PAL] [Drawing: F.P. Campione]
Fig. 2 in Pilosella hoppeana subsp. sicula Di Grist., Gottschl. & Raimondo (Asteraceae), a new endemic subspecies from Sicily (Italy)
Fig. 2. – Blooming populations of Pilosella hoppeana subsp. sicula Di Grist., Gottschl. & Raimondo in Mt. Scalone (Madonie mountains).
Fig. 3 in Pilosella hoppeana subsp. sicula Di Grist., Gottschl. & Raimondo (Asteraceae), a new endemic subspecies from Sicily (Italy)
Fig. 3. – Details of the indumentum of the bracts. A. Pilosella hoppeana subsp. sicula Di Grist., Gottschl. & Raimondo; B. P. hoppeana subsp. macrantha (Ten.) S. Bräut. & Greuter.
Fig. 5. PrincipalComponentAnalysisbasedon 15 craniodentalcharactersof M in The Subspecies Of Myotis Montivagus - Taxonomic Revision And Species Limits (Mammalia: Chiroptera: Vespertilionidae)
Fig. 5. PrincipalComponentAnalysisbasedon 15 craniodentalcharactersof M. borneoensis (blackcircles), M. federatus (blacksquares), M. montivagus (emptysquares) and M. peytoni
Fig. 4 in The Subspecies Of Myotis Montivagus - Taxonomic Revision And Species Limits (Mammalia: Chiroptera: Vespertilionidae)
Fig. 4. Occlusal view of left upper premolar rows: a = M. annectans BM(NH) 78.2355 from Thailand, b = M. annectans BM(NH) 16.3.25.30 (holotype of M. primula), c = M. borneoensis BM(NH) 83.349 (holotype), d = M. federatus BM(NH) 16.4.20.5 (holotype), e = M. montivagus BM(NH) 76.3.10.5 (holotype), f = M. peytoni BM(NH) 12.8.25.1 (holotype). Scale = 3 mm.
Fig. 3 in The Subspecies Of Myotis Montivagus - Taxonomic Revision And Species Limits (Mammalia: Chiroptera: Vespertilionidae)
Fig. 3. Detail of the rostral part of skulls: a = M. annectans BM(NH) 78.2355 from Thailand, b = M. borneoensis BM(NH) 83.349 (holotype), c = M. federatus BM(NH) 16.4.20.5 (holotype), d = M. montivagus BM(NH) 76.3.10.5 (holotype), e = M. peytoni BM(NH) 12.8.25.1 (holo-
Fig. 2 in The Subspecies Of Myotis Montivagus - Taxonomic Revision And Species Limits (Mammalia: Chiroptera: Vespertilionidae)
Fig. 2. Lateral view of skulls: a = M. annectans BM(NH) 78.2355 from Thailand, b = M. borneoensis BM(NH) 83.349 (holotype), c = M. federatus BM(NH) 16.4.20.5 (holotype), d = M. montivagus BM(NH) 76.3.10.5 (holotype), e = M. peytoni BM(NH) 12.8.25.1 (holotype). Scale = 5 mm.
Figs 6–13 in Taxonomic Review Of Euphydryas Maturna (Linnaeus, 1758) (Lepidoptera, Nymphalidae) With Description Of A New Subspecies From Dobrogea (Romania) And Notes On Conservation Biology
Figs 6–13. Genital slide of Euphydryas maturna and E. cynthia spp.: 6–7 = E. m. opulenta RÁKOSY et VARGA, ssp. n. (male, paratypes), 8–9 = E. m. partiensis VARGA et SÁNTHA, 1973 (male, paratypes), 10 = E. m. idunides (FRUHSTORFER, 1917) (male), 11 = E. m. maturna (LINNAEUS, 1758) (male), 12 = E. cynthia leonhardi (FRUHSTORFER, 1917), Rila Mts (male), 13 = E. cynthia drenovskyi (RÖBER,
Fig. 15 in Taxonomic Review Of Euphydryas Maturna (Linnaeus, 1758) (Lepidoptera, Nymphalidae) With Description Of A New Subspecies From Dobrogea (Romania) And Notes On Conservation Biology
Fig. 15. Variability in shape of processus posterior of Euphydryas maturna spp.: A–C = E. m. opulenta ssp. n. (Dobrogea); D–H = E. m. partiensis (E Hungary, Guthi forest); I–L = E. m. idunides
Fig. 18 in Taxonomic Review Of Euphydryas Maturna (Linnaeus, 1758) (Lepidoptera, Nymphalidae) With Description Of A New Subspecies From Dobrogea (Romania) And Notes On Conservation Biology
Fig. 18. The results of PCA. The points represent the samples; polygons indicate those samples that originate from the same population. The first two axes explained 43.2% of the total genetic variation
Figs 47–52. Ctenoceratoda spp. male genitalia. 47–48 in Review Of The Species Groups Of The Genus Ctenoceratoda Varga, 1992 With Description Of Four New Species And A New Subspecies (Lepidoptera, Noctuidae)
Figs 47–52. Ctenoceratoda spp. male genitalia. 47–48 = C. cyanochrea sp. n., paratype, Mongolia, slide No.: RL8644; 49–50 = C. mallopyga mallopyga sp. n., paratype, Pakistan, slide No.: VZ9238; 51–52 = C. contempta (Püngeler, 1914), Semiretshye, slide No.: RL11754
Figs 59–61. Ctenoceratoda spp. female genitalia. 59 in Review Of The Species Groups Of The Genus Ctenoceratoda Varga, 1992 With Description Of Four New Species And A New Subspecies (Lepidoptera, Noctuidae)
Figs 59–61. Ctenoceratoda spp. female genitalia. 59 = C. cyanochrea sp. n., paratype, Mongolia, slide No.: VZ9507; 60 = C. mallopyga mallopyga sp. n., paratype, Pakistan, slide No.: VZ7487; 61 = C. mallopyga dyschroa sp. n., paratype, India Himachal Pradesh, slide No.: VZ7485
Figs 33–38. Ctenoceratoda spp. male genitalia. 33–34 in Review Of The Species Groups Of The Genus Ctenoceratoda Varga, 1992 With Description Of Four New Species And A New Subspecies (Lepidoptera, Noctuidae)
Figs 33–38. Ctenoceratoda spp. male genitalia. 33–34 = C. persephone sp. n., paratype, Mongolia, slide No.: VZ9489; 35–36 = C. khorgossi (Alphéraky, 1882), Kirghisia, slide No.: VZ9488; 37–38 = C. argyrea (Varga, 1992), paratype, Mongolia, slide No.: VZ5109
Figs 39–41. Ctenoceratoda spp. female genitalia. 39 in Review Of The Species Groups Of The Genus Ctenoceratoda Varga, 1992 With Description Of Four New Species And A New Subspecies (Lepidoptera, Noctuidae)
Figs 39–41. Ctenoceratoda spp. female genitalia. 39 = C. persephone sp. n., paratype, Mongolia, slide No.: VZ5942; 40 = C. khorgossi (Alphéraky, 1882), Kazakhstan, slide No.: VZ9506; 41 = C. argyrea (Varga, 1992), paratype, Mongolia, slide No.: VZ5153
Figs 25–32. Ctenoceratoda spp. antennae. 25 in Review Of The Species Groups Of The Genus Ctenoceratoda Varga, 1992 With Description Of Four New Species And A New Subspecies (Lepidoptera, Noctuidae)
Figs 25–32. Ctenoceratoda spp. antennae. 25 = C. persephone sp. n., paratype, male, Mongolia, 26 = C. khorgossi (Alphéraky, 1882), male, Kazakhstan, 27 = C. scotosparsa sp. n., paratype, male, Mongolia, 28 = C. argyrea (Varga, 1992) holotype, male, Mongolia, 29 = C. cyanochrea sp. n., paratype, male, Mongolia, 30 = C. tancrei (Graeser, 1892), male, Kazakhstan, 31 = C. mallopyga mallopyga sp. n., paratype, male, Pakistan, 32 = C. contempta (Püngeler, 1914), male, Kirghisia
Figs 17–24. Ctenoceratoda spp. 17–19 in Review Of The Species Groups Of The Genus Ctenoceratoda Varga, 1992 With Description Of Four New Species And A New Subspecies (Lepidoptera, Noctuidae)
Figs 17–24. Ctenoceratoda spp. 17–19 = Ctenoceratoda mallopyga mallopyga sp. n., 17–18 = paratype, male, Pakistan, 19 = paratype, female, Pakistan, Hindukush Mts; 20 = C. contempta (Püngeler, 1914), lectotypel male, [China, Xinjiang] "Ost-Turkestan, Aksu"; 21 = C. septemlacustris Gaal-Haszler, Lödl, Ronkay, Ronkay & Varga, 2012, holotype, male, Afghanistan, Koh-i-Baba Mts; 22 = C. lupa (Christoph, 1893), lectotype, male, [Iran] Hyrcania, Shahkuh; 23–24 = C. mallopyga dyschroa ssp. n., India, Himachal Pradesh: 23 = holotype, male, 24 = paratype, female
Figs 1–8. Ctenoceratoda spp. 1–4 in Review Of The Species Groups Of The Genus Ctenoceratoda Varga, 1992 With Description Of Four New Species And A New Subspecies (Lepidoptera, Noctuidae)
Figs 1–8. Ctenoceratoda spp. 1–4 = C. persephone sp. n., Mongolia: 1 = paratype, male, Khovd aimak, 2 = holotype, male, Govi Altay aimak, 3 = paratype female, Khovd aimak, 4 = paratype, female, Khovd aimak; 5–6 = C. khorgossi (Alphéraky, 1882), Kirghisia, Issyk-Kul: 5 = male, 6 = female; 7–8 = C. argyrea (Varga, 1992), Mongolia, Govi Altay aimak: 7 = holotype, male, 8 = paratype female
Fig. 18 in High alpine sorcerers: revision of the cave wētā genus Pharmacus Pictet & de Saussure (Orthoptera: Rhaphidophoridae: Macropathinae), with the description of six new species and three new subspecies
Fig. 18. Map of South Island, New Zealand, showing the known distribution of cave wētā in the genus Pharmacus Pictet & de Saussure, 1893. A–B. Solid shapes indicate material collected as part of this study; empty circles indicate additional locations of material examined by Richards (1972). B. Shapes represent different subspecies: dark blue circle = Pharmacus cochleatus cochleatus; light blue circle = Pharmacus cochleatus nauclerus subsp. nov.; diamond = Pharmacus cochleatus fiordensis subsp. nov.; triangle = Pharmacus cochleatus rawhiti subsp. nov.
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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)
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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.