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FIGURE 1 A–F in Distributional and taxonomic notes on the crab spider genus Talaus Simon, 1886 with description of a new species (Araneae: Thomisidae)
FIGURE 1 A–F. Talaus beccarii sp. nov. A–C male (RMNH.ARA.17837); D–F female (RMNH.ARA.17836) from Malaysia, Borneo, Kinabalu NP. A palp, ventral; B same, retrolateral; C holotype, habitus dorsal; D epigynum, ventral; E vulva, ventral; F female, habitus dorsal. Scale lines = 0.1 mm (C, E), 0.2 mm (A, B), 1.0 mm (C, F).
FIGURE 7 A, B in Distributional and taxonomic notes on the crab spider genus Talaus Simon, 1886 with description of a new species (Araneae: Thomisidae)
FIGURE 7 A, B. Talaus triangulifer (RMNH.ARA.17832). A right palp (flipped horizontally), ventral; B same, retrolateral. Scale lines = 0.2 mm.
FIGURE 6 A–D in Distributional and taxonomic notes on the crab spider genus Talaus Simon, 1886 with description of a new species (Araneae: Thomisidae)
FIGURE 6 A–D. Talaus opportunus syntype from Sri Lanka (OUMNH b1239). A left palp, ventral; B same, retrolateral; C epigynum, ventral; D) vulva, ventral view. Scale lines = 0.2 mm (A, B), 0.1 mm (C, D).
FIGURE 7 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 7. Scatter plot of Multivariate Principal Component Analysis (PCA) for male individuals using 13 morphometric characters marked as * Supplementary file Table 1 transformed to their ratio to SVL for Minervarya species A (M. species A) and Minervarya species B (M. species B)
FIGURE 3 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 3. Morphological characters of Minervarya species A and Minervarya species B. Minervarya species A (A) and Minervarya species B (B) in life. Note the longitudinal skin folds on dorsal side of Minervarya species A and granular blotches on Minervarya species B. Difference in the webbing pattern on the foot of Minervarya species A (C) and Minervarya species B (D).
FIGURE 10 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 10. Morphological variation in Minervarya syhadrensis frogs from different localities in the Western Ghats. (A and B) Coorg, (C) Goa, (D) Koyna, (E) Silvasa and (F) Calicut.
FIGURE 9 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 9. Dorsal view of M. syhadrensis (Minervarya species A collected for the present study, ZSI/WRC/A/2255) and M. caperata (type specimen BNHS4657). Note the presence of longitudinal skin folds on dorsal side. Scale bar = 1cm.
FIGURE 5 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 5. Advertisement call of Minervarya species B. Microtemporal structure (A) and spectrogram (B) of a call group. (C) Microtemporal structure of a call depicting its pulsatile nature.
FIGURE 2 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 2. Type specimen of Minervarya syhadrensis (ZSI 19764). Note the presence of longitudinal skin folds on dorsal side. Scale bar = 1cm.
FIGURE 1 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 1. Map showing type localities of Minervarya syhadrensis (▲), M. caperata (■) and collection localities (●) in the present study.
FIGURE 4 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 4. Advertisement call of Minervarya species A. Microtemporal structure (A) and spectrogram (B) of a call group. (C) Microtemporal structure of a single call. Note the pulsed nature of call.
FIGURE 6 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 6. Comparison of five call properties between Minervarya species A and Minervarya species B. Bar graphs represent mean±SE (P ˂ 0.05). CD = call duration, PRR = pulse repetition rate, FF = fundamental frequency, and DF = dominant frequency.
FIGURE 8 in Importance of genetic data in resolving cryptic species: A century old problem of understanding the distribution of Minervarya syhadrensis Annandale 1919 (Anura: Dicroglossidae)
FIGURE 8. Maximum Likelihood tree based on 574 bp of mitochondrial (16S) gene for Minervarya clade having predominant distribution in Sri Lanka, India, Bangladesh and Nepal (Fig 2, Phuge et al. 2019). Locations marked as blue represents the localities from where samples were collected for the present study.
FIGURES 60 in The genusParascepsis Dognin,1923(Lepidoptera,Erebidae,Arctiinae,Ctenuchina) in Peru, with the description of three new species, a new combination and their geographical distributions
FIGURES 60. Geographical distribution of Parascepsis ignobilis Grados & Mantilla new species, and P. ingenium Grados & Mantilla new species.
FIGURES 53–56 in The genusParascepsis Dognin,1923(Lepidoptera,Erebidae,Arctiinae,Ctenuchina) in Peru, with the description of three new species, a new combination and their geographical distributions
FIGURES 53–56. Male genitalia of Parascepsis ignobilis Grados & Mantilla new species. (Genitalia # JGA 719 MUSM). 53. Dorsal view. 54. Ventral view. 55. Lateral view. 56. Aedeagus. Scale= 1 mm.
FIGURES 45–48 in The genusParascepsis Dognin,1923(Lepidoptera,Erebidae,Arctiinae,Ctenuchina) in Peru, with the description of three new species, a new combination and their geographical distributions
FIGURES 45–48. Details of the wings of Parascepsis ingenium Grados & Mantilla new species. 45. White "androconial" patch in the anal cell on the ventral side of the forewing. 46. Elongated area with light brown spicules on the costal cell at the dorsal side of the hindwing. 47. Area with spicules of the costal cell; scales removed. 48. Spicules at 80x.
FIGURES 43–44 in The genusParascepsis Dognin,1923(Lepidoptera,Erebidae,Arctiinae,Ctenuchina) in Peru, with the description of three new species, a new combination and their geographical distributions
FIGURES 43–44. Wings of Parascepsis ingenium Grados & Mantilla new species. 43. Forewing. 44 Hindwing.
FIGURES 41–42 in The genusParascepsis Dognin,1923(Lepidoptera,Erebidae,Arctiinae,Ctenuchina) in Peru, with the description of three new species, a new combination and their geographical distributions
FIGURES 41–42. Female genitalia of P. ingenium Grados & Mantilla new species. (Genitalia # JGA 772 MUSM). 41. Lateral view. 42. Dorsal view. Scale= 1 mm.
FIGURES 33–36. Parascepsis ingenium Grados & Mantilla new species. 33–34. Holotype male. 33. Dorsal view. 34. Ventral view. 35–36 in The genusParascepsis Dognin,1923(Lepidoptera,Erebidae,Arctiinae,Ctenuchina) in Peru, with the description of three new species, a new combination and their geographical distributions
FIGURES 33–36. Parascepsis ingenium Grados & Mantilla new species. 33–34. Holotype male. 33. Dorsal view. 34. Ventral view. 35–36. Paratype female (ca. Atalaya, Madre de Dios river). 35. Dorsal view. 36. Ventral view. Scale= 5 mm.
FIGURES 29–30 in The genusParascepsis Dognin,1923(Lepidoptera,Erebidae,Arctiinae,Ctenuchina) in Peru, with the description of three new species, a new combination and their geographical distributions
FIGURES 29–30. Female genitalia of P. lantigni Grados new species. (Genitalia # JGA 722 MUSM). 29. Lateral view. 30. Dorsal view. Scale= 1 mm.
ScienceDex guides
Understand access before you commit
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.