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FIGURES 7–12 in A new species of Draconarius Ovtchinnikov, 1999 (Araneae, Amaurobioidea, Coelotinae) from Northern Pakistan

FIGURES 7–12. Habitus and epigyne of Draconarius latellai n. sp. 7, 8—habitus of male and female, respectively; 9, 11— epigyne, ventral; 10—epigyne, anterior; 12—epigyne, dorsal; 10–12—epigyne after maceration; Ag—accessorial glands, Eh—hoods, Et—epigynal tooth; Id—insemination ducts, Ps—posterior sclerotized strip; Sp —spermatheca.

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FIGURES 1–6 in A new species of Draconarius Ovtchinnikov, 1999 (Araneae, Amaurobioidea, Coelotinae) from Northern Pakistan

FIGURES 1–6. Male palp of Draconarius latellai n. sp. 1—retrolateral; 2—ventral; 3—ventro-prolateral; 4—retrolateral; 5— prolateral; 6—scheme, course of embolus in ventral view. Abbreviations: Cf—cymbial furrow, Co—conductor, Em—embolus, Pa—patella, Ta —tegular (=median) apophysis.

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FIGURE 24 in A new species of Draconarius Ovtchinnikov, 1999 (Araneae, Amaurobioidea, Coelotinae) from Northern Pakistan

FIGURE 24. Distribution of westernmost Draconarius species. D. latellai n. sp. (dots), D. venustus (square), D. pakistanicus (diamond) and D. naranensis (asterisk).

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FIGURES 13–23 in A new species of Draconarius Ovtchinnikov, 1999 (Araneae, Amaurobioidea, Coelotinae) from Northern Pakistan

FIGURES 13–23. Copulatory organs of Draconarius venustus (13–17), D. pakistanicus (18–21) and D. naranensis (22–23). 13—male palp, prolateral; 14, 19—male palp, ventral; 15, 19—male palp, retrolateral; 16, 20, 22—epigyne, ventral; 17, 21, 23—epigyne, dorsal. 13–17—after Ovtchinnikov (1999), reproduced with permission; 18–23—after Ovtchinnikov & Inayatullah (2005), reproduced with permission. Et—epigynal tooth; Ft—finger like tip of cymbium; Sp —spermatheca; arrows indicate differences in position of embolic loop.

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FIGURES 3–4 in Matrona taoi spec. nov., a new damselfly species from northern Vietnam (Odonata: Calopterygidae)

FIGURES 3–4. Matrona taoi sp. nov. 3) habitus of paratype male (right hind wing incomplete at base).

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FIGURES 1–2 in Matrona taoi spec. nov., a new damselfly species from northern Vietnam (Odonata: Calopterygidae)

FIGURES 1–2. Matrona taoi sp. nov., damselflies photographed in the field in Xuan Son by Phan Quoc Toan on 15 December 2010. 1) male; 2) female.

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FIGURE 4 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 4. The hemipenis of a paratype (ZSM 1133/2003) of Uroplatus finiavana, (a) sulcal view, (b) parasulcal view.

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FIGURE 7 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 7. Haplotype network reconstruction of a 400 bp fragment of the nuclear C-mos gene for the analysed lineages of the Uroplatus ebenaui group. Haplotypes were inferred using the PHASE algorithm. The haplotypes of U. finiavana are in yellow. In green, blue and red are those of U. phantasticus and U. ebenaui, U. malama, respectively. Grey is used for the candidate species U. sp. 1–3 from Tsaratanana.

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FIGURE 1 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 1. Measurements taken from Uroplatus specimens listed in Table 1, (a) head; (b) body and tail.

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FIGURE 3 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 3. Uroplatus malama encountered in May 2010 at Andreoky (Andohahela area), south east of Madagascar around 600–700 m a. s. l. (a) photo of a male and (c) the ventral side of its tail; (b) a female.

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FIGURE 9 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 9. Map of Madagascar showing the distribution of the evolutionary lineages of the Uroplatus ebenaui group. Only selected localities: (1) those mentioned in the text, (2) those for which molecular data are presented herein or are available from us (unpublished), and (3) Andringitra Massif which is the southernmost record of U. phantasticus vouchered by a DNA sequence (Raxworthy et al. 2008). The Zahamena locality for U. phantasticus bears a question mark due to the high genetic differentiation of this population, which leaves its actual specific identity in need of confirmation.

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FIGURE 6 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 6. Bayesian inference tree of the Uroplatus ebenaui group based on a 700 bp fragment of the mitochondrial ND4 gene. Only posterior probability values> 0.95 are displayed at nodes. In yellow the highly supported cluster of the newly described species. Adjacent to each clade, a picture of the oral mucosa is presented showing its pigmentation. Bars in grey scale tones color code roughly for group clades in relation to elevation.

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FIGURE 8 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 8. Comparative pictures of the body and mouth pigmentation in living and preserved specimens of the different species of the Uroplatus ebenaui group. (a) female of U. ebenaui (ZCMV13013) from Nosy Be, November 2009; (b) male of U. malama (ZCMV12218) from Andreoky (Andohahela area), May 2010; (c) male of Uroplatus sp. 2 from Tsaratanana, June 2010; (d) female of Uroplatus sp. 3 from Tsaratanana, June 2010; (e) female of U. finiavana from Montagne d'Ambre, February 2003, live and preserved mouth pictures are not from the photographed animal; (f) male of U. phantasticus from Ranomafana, March 2004; (g) female of Uroplatus sp. 1 from Tsaratanana, June 2010.

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FIGURE 2 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 2. Photo in life of a male of Uroplatus finiavana sp. nov. from Montagne d'Ambre National Park, February 2004.

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FIGURE 5 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group

FIGURE 5. (a, b) Comparative graphs of relative tail length and relative tail width (TaL/SVL, TaW/SVL) of the specimens employed in our morphometric study. Specimens are separated by sex; graphs display same trend for the compared character. (c, d) Comparisons of the length of medial posterior projection of the interorbital ridge (IRPL) and neck triangle length (NTL), among described species and Uroplatus finiavana only.

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FIGURE 1 in A new species of Nymphon Fabricius, 1794 (Pycnogonida: Nymphonidae) from northern Spain

FIGURE 1. Nymphon tricuspidatum sp. nov. male holotype. A: dorsal aspect. B: lateral view. C: chela. D: denticles of cheliceral fingers. E: palp. F: Oviger. G: ovigeral spines. H: leg. I: cement gland pores located on dorsal zone of the femur. J: end of leg.

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FIGURE 3 in A new species of Nymphon Fabricius, 1794 (Pycnogonida: Nymphonidae) from northern Spain

FIGURE 3. Nymphon tricuspidatum sp. nov. male holotype. Photograph of male femur with its three cement gland tubes.

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FIGURE 4 in A new species of the genus Gonatodes Fitzinger, 1843 (Reptilia: Sphaerodactylidae) from central Guyana, northern South America

FIGURE 4. Gonatodes timidus sp. nov. Detail of pericloacal region in preserved specimens. A: Male holotype (IRSNB 2664), note distinct cluster (lower belly) and rows (thighs) of escutcheon scales. B: Female paratype (IRSNB 2670).

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FIGURE 3 in A new species of the genus Gonatodes Fitzinger, 1843 (Reptilia: Sphaerodactylidae) from central Guyana, northern South America

FIGURE 3. Gonatodes timidus sp. nov. Details of lateral (top), dorsal (middle), and ventral (bottom) views of the head of the male holotype in life (IRSNB 2664, 46.9 mm SVL). Scale bar = 5 mm.

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FIGURE 2 in A new species of the genus Gonatodes Fitzinger, 1843 (Reptilia: Sphaerodactylidae) from central Guyana, northern South America

FIGURE 2. Gonatodes timidus sp. nov. Sexual dichromatism in life. Top left: Ventral face of male holotype (IRSNB 2664, 46.9 mm SVL). Lower left: Detail of the gular region in the same specimen. Top right: Ventral face of female paratype (IRSNB 2670, 51.6 mm SVL). Lower right: Detail of the gular region in the same specimen. Scale bars = 10 mm (top), and 5 mm (bottom).

opennotspecifiedDec 2011View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record