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zenodo32/100

FIGURE 5. A in New synonyms and a new subspecies of Macrogomphus Selys, 1858 (Odonata: Gomphidae) from continental south-east Asia

FIGURE 5. A small male of Macrogomphus albardae of the ringed morph, collected by the author on 21 viii 2018 in Cambodia, Preah Vihear Province, Srae Veal village env.: a—habitus in live colours, dorsal view; b—ditto, lateral view (not to scale); canal appendages, dorsal view; d—ditto, lateral view; e—secondary genitalia, lateral view; f—posterior hamulus, anteriolateral view. Scale bars: upper 2 mm; lower 0.5 mm.

opennotspecifiedJun 2019View details →
zenodo32/100

FIGURE 9 in New synonyms and a new subspecies of Macrogomphus Selys, 1858 (Odonata: Gomphidae) from continental south-east Asia

FIGURE 9. Details of the holotype of Macrogomphus borikhanensis Fraser, 1933 (BMNH): a—anal appendages, dorsal view; b—ditto, lateral view; c—secondary genitalia, lateral view; d—anal appendages as depicted by Fraser (1933: fig. 8a, c) (the same as Fig. 2c). Not to scale. Courtesy of Benjamin Price.

opennotspecifiedJun 2019View details →
zenodo32/100

FIGURE 11 in New synonyms and a new subspecies of Macrogomphus Selys, 1858 (Odonata: Gomphidae) from continental south-east Asia

FIGURE 11. Anal appendages of males of Macrogomphus albardae reported as M. matsukii Asahina, 1986, by Yokoi (2002; Yokoi & Sopuhanthong 2014) from Laos, Vientiane Prefecture, 10 km NW of Tabok, 3 v 2001, N. Yokoi leg., courtesy of Naoto Yokoi (a–b), by Kosterin et al. (2011) from Thailand, Nakhon Ratchasima Province, Nong Bun Nak village, viii 2009, Alexey Korshunov leg. (c); and by Kompier (2018) from Vietnam, Lâm Đồng Province, Cát Tiên National Park, Ben Cuu Rapids, 3 v 2018, J. Holden leg. (d). Not to scale.

opennotspecifiedJun 2019View details →
zenodo32/100

FIGURE 3 in New synonyms and a new subspecies of Macrogomphus Selys, 1858 (Odonata: Gomphidae) from continental south-east Asia

FIGURE 3. Anal appendages (a–h) and secondary genitalia (j–k) of Macrogomphus albardae as illustrated in literature: aafter Lieftinck (1935: fig. 9) (as M. parallelogramma albardae); b—after Orr (2005: p. 64) (as M. parallelogramma albardae); c—after Fraser (1933: fig. 8a, c) (as M. borikhanensis); d—after Asahina (1986: fig. 8–9) (as? M. phalantus): e, j—after Asahina (1986: fig. 4–6) (as M. borikhanensis); f, i—after Chao (1982: fig. 1, 3, 6) (as M. guilinensis); g—after Wilson (2005: fig. 17 d, e) (as M. guilinensis); h—after Karube (2014: fig. 13) (as M. guilinensis). Not to scale; j mirrored. Asterisk indicates the proximal inner swelling of the cercus.

opennotspecifiedJun 2019View details →
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FIGURE 15 in New synonyms and a new subspecies of Macrogomphus Selys, 1858 (Odonata: Gomphidae) from continental south-east Asia

FIGURE 15. Details of male specimens of Macrogomphus phalantus: a–f—M. p. jayavarman subsp; nov., the holotype; gh—M. p. phalantus (After Lieftinck 1935: figs.11–12); a—head, frontal view; b–c,g—secondary genitalia, lateral view; d—anal appendages, dorsal view; e—ditto, lateral view; f—ditto, ventral view; h—dorsal and lateral view. Scale bar 1 mm. Asterisk indicates the proximal inner swellings of the cerci.

opennotspecifiedJun 2019View details →
zenodo32/100

SCINDA GPS and UHF data supporting analysis in "On the Generation of an Unseasonal EPB Over South East Asia"

<p>This dataset contains ground-based GPS ionospheric scintillation data collected from Bandung, Indonesia during July 2014.&nbsp;This GPS receiver is part of the&nbsp;Scintillation Network Decision Aid (SCINDA) network (Groves et al., 1997). This particular dataset supports the analysis conducted in Currie et al. (2020).</p> <p><br> Currie, J. L.,&nbsp;B. A. Carter, J. Retterer, T. Dao, R. Pradipta, R. Caton, K. Groves, Y. Otsuka, T. Yokoyama, K. Hozumi, T Le Truong, M. Terkildsen (2020),&nbsp;On the Generation of an Unseasonal EPB Over South East Asia, Submitted to JGR: Space Physics, Sept 2020.</p> <p>Groves, K.M., S. Basu, E. J. Weber, M. Smitham, H. Kuenzler, C.E. Valladares,&nbsp;R. Sheehan, E. MacKenzie, J.A. Secan, P. Ning, W.J. McNeill, D.W. Moonan,&nbsp;and M.J. Kendra (1997), Equatorial scintillation and systems support,&nbsp;Radio Science, 32, 2047-2064, doi:10.1029/97RS00836.</p>

opencc-by-4.0Sep 2020View details →
dryad32/100

Data from: Historical biogeography resolves the origins of endemic Arabian toad lineages (Anura: Bufonidae): evidence for ancient vicariance and dispersal events with the Horn of Africa and South Asia

Background: The Arabian Peninsula is home to a unique fauna that has assembled and evolved throughout the course of major geophysical events, including the separation of the Arabian Plate from Africa and subsequent collision with Eurasia. Opportunities for faunal exchanges with particular continents occurred in temporally distinct periods, and the presence of African, Western Eurasian, and South Asian derived taxa on the Arabian Peninsula signifies the complexity of these historical biogeographic events. The six true toad species (family Bufonidae) endemic to Arabian Peninsula present a considerable taxonomic and biogeographic challenge because they are part of a global bufonid radiation, including several genera surrounding the Arabian Peninsula, and difficult to discriminate morphologically. As they could be derived from African, Western Eurasian, or South Asian toad groups, elucidating their evolutionary relationships has important implications for historical biogeography. Here, we analyze a global molecular data set of 243 bufonid lineages, with an emphasis on new sampling from the Horn of Africa, Western Eurasia, South Asia, and the Arabian Peninsula, to reconstruct the evolutionary relationships of the Arabian species. We produce a robust time-calibrated phylogeny to infer the biogeographic history of this group on and around the Arabian Peninsula. Results: Our phylogenetic analyses indicate two of the endemic Arabian toad species, "Bufo" tihamicus and "Bufo" arabicus, evolved independently within the African genus Amietophrynus. We confirm the Arabian species Duttaphrynus dhufarensis is of South Asian origin, but do not find evidence for the Asian genus Duttaphrynus being present in the Horn of Africa, discrediting a previously proposed Asian bufonid dispersal event to Africa. We also do not find evidence of the African genus Amietophrynus occurring in South Asia, suggesting that unlike many other vertebrate taxa, toads have not used the Arabian Peninsula as a stepping-stone for trans-continental dispersal. Our divergence dating estimates strongly suggest the formation of the Red Sea drove simultaneous divergences between two of the Arabian species (A. tihamicus comb. nov. and A. arabicus comb. nov.) and their xclosest mainland African relatives in the Early Miocene. We estimate the divergence of D. dhufarensis with its closest South Asian relatives occurred in the mid to Late Miocene, suggesting the temporary or permanent land connections between the Arabian plate and Eurasia facilitated dispersal of this lineage to the Arabian Peninsula. Conclusions: The Arabian bufonid assemblage, despite being comparatively depauperate with respect to surrounding continents, exemplifies the faunal pattern of the Arabian Peninsula, namely being a complex admixture of African, Western Eurasian, and South Asian elements. The historical biogeographic patterns exhibited by Arabian toads and their allies are concordant with studies of other vertebrate taxa, building support for the role of major geological events in driving simultaneous vicariance and dispersal events around the Arabian Peninsula. Although many taxa or groups exhibiting disjunct Afro-Arabian distributions appear to have dispersed more recently from the Horn of Africa via a southern land bridge or overwater dispersal, both Amietophrynus tihamicus and A. arabicus likely represent true African relicts resulting from vicariance associated with the Red Sea formation, a pattern that so far is rare among the vertebrate species investigated.

opencc-zeroDec 2014View details →
zenodo32/100

FIGURES 4­5 in Whiteflies (Sternorrhyncha, Aleyrodidae) colonising ferns (Pteridophyta: Filicopsida), with descriptions of two new Trialeurodes and one new Metabemisia species from south­east Asia

FIGURES 4­5. Trialeurodes rex Martin sp. nov. (4) puparium, ventral detail to left of line; (5) vasiform orifice and posterior dorsal detail of puparium.

opennotspecifiedJul 2001View details →
zenodo32/100

FIGURES 1­3 in Whiteflies (Sternorrhyncha, Aleyrodidae) colonising ferns (Pteridophyta: Filicopsida), with descriptions of two new Trialeurodes and one new Metabemisia species from south­east Asia

FIGURES 1­3. Trialeurodes bruneiensis Martin sp. nov. (1) puparium, ventral detail to right of line; (2) vasiform orifice and posterior dorsal detail of puparium; (3) third­instar larva, ventral detail as inset to right.

opennotspecifiedJul 2001View details →
zenodo32/100

FIGURES 6­7 in Whiteflies (Sternorrhyncha, Aleyrodidae) colonising ferns (Pteridophyta: Filicopsida), with descriptions of two new Trialeurodes and one new Metabemisia species from south­east Asia

FIGURES 6­7. Metabemisia palawana Martin sp. nov. (6) post­emergence pupal case with righthand cephalothorax removed to reveal ventral detail; (7) vasiform orifice and posterior dorsal detail of puparium.

opennotspecifiedJul 2001View details →
zenodo32/100

FIGURES 25–28. Eggs and 1 in New species of the genus Paravibrissina Shima (Diptera: Tachinidae) from Southeast Asia and South Pacific

FIGURES 25–28. Eggs and 1st instar larva. 25. Paravibrissina adiscalis Shima (left below, anterior portion of 1st instar larva; right below, part of marginal ring). 26. P. argentifera sp. nov. (chorion somewhat deformed and marginal ring removed with treatment of KOH solution). 27. P. aurigera sp. nov. 28. P. leucogaster sp. nov.

opennotspecifiedDec 2008View details →
zenodo32/100

FIGURES 15–18 in New species of the genus Paravibrissina Shima (Diptera: Tachinidae) from Southeast Asia and South Pacific

FIGURES 15–18. Paravibrissina pacifica sp. nov. 15. Epandrium, cerci and surstylus in dorsal view (hairs omitted). 16. Same in lateral view (hairs on epandrium and cerci omitted). 17. Hypandrium, pregonite, postgonite and aedeagus in lateral view. 18. Male 5th sternum in ventral view (hairs omitted on left side). Scale bars for Figs. 15–17 and 18 = 0.1mm.

opennotspecifiedDec 2008View details →
zenodo32/100

FIGURES 1–3. Paravibrissina adiscalis Shima. 1 in New species of the genus Paravibrissina Shima (Diptera: Tachinidae) from Southeast Asia and South Pacific

FIGURES 1–3. Paravibrissina adiscalis Shima. 1. Epandrium, cerci and surstylus in dorsal view (hairs omitted). 2. Same in lateral view (hairs on epandrium and cerci omitted). 3. Female terminalia in lateral view. Scale bar for Fig. 3 = 0.2mm. Figs. 1 &amp; 2 after Shima (1979).

opennotspecifiedDec 2008View details →
zenodo32/100

FIGURES 10–14 in New species of the genus Paravibrissina Shima (Diptera: Tachinidae) from Southeast Asia and South Pacific

FIGURES 10–14. Paravibrissina leucogaster sp. nov. 10. Epandrium, cerci and surstylus in dorsal view (hairs omitted). 11. Same in lateral view (hairs on epandrium and cerci omitted). 12. Hypandrium, pregonite, postgonite and aedeagus in lateral view. 13. Male 5th sternum in ventral view (hairs omitted on left side). 14. Female terminalia in lateral view. Scale bars for Figs. 10–12 and 13 = 0.1mm, for Fig. 14 = 0.2mm.

opennotspecifiedDec 2008View details →
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FIGURES 4–8 in New species of the genus Paravibrissina Shima (Diptera: Tachinidae) from Southeast Asia and South Pacific

FIGURES 4–8. Paravibrissina argentifera sp. nov. 4. Epandrium, cerci and surstylus in dorsal view (hairs omitted). 5. Same in lateral view (hairs on epandrium and cerci omitted). 6. Hypandrium, pregonite, postgonite and aedeagus in lateral view. 7. Male 5th sternum in ventral view (hairs omitted on left side). 8. Female terminalia in lateral view. Scale bars for Figs. 4–6 and 7 = 0.1mm, for Fig. 8 = 0.2mm.

opennotspecifiedDec 2008View details →
zenodo32/100

FIGURES 29–34. 29 in New species of the genus Paravibrissina Shima (Diptera: Tachinidae) from Southeast Asia and South Pacific

FIGURES 29–34. 29. Paravibrissina argentifera sp. nov., male, dorsal view. 30. P. leucogaster sp. nov., male, dorsal view. 31. P. aurigera sp. nov., female, dorsal view. 32. Same, lateral view of head. 33. P. pacifica sp. nov., male, dorsal view. 34. Same, lateral view of head.

opennotspecifiedDec 2008View details →
zenodo32/100

FIGURES 19–22 in New species of the genus Paravibrissina Shima (Diptera: Tachinidae) from Southeast Asia and South Pacific

FIGURES 19–22. Paravibrissina parvula sp. nov. 19. Epandrium, cerci and surstylus in dorsal view (hairs omitted). 20. Same in lateral view (hairs on epandrium and cerci omitted). 21. Hypandrium, pregonite, postgonite and aedeagus in lateral view. 22. Male 5th sternum in ventral view (hairs omitted on left side). Scale bars for 19–21 and 22 = 0.1mm.

opennotspecifiedDec 2008View details →
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FIGURES 23–24. Male 5 in New species of the genus Paravibrissina Shima (Diptera: Tachinidae) from Southeast Asia and South Pacific

FIGURES 23–24. Male 5th abdominal sternum, 6th tergum, 6th sternum and syntergosternum 7+8 in posterolateral view. 23. Paravibrissina pacifica sp. nov. 24. P. parvula sp. nov. Scale bars = 0.1mm.

opennotspecifiedDec 2008View details →
zenodo32/100

FIGURES 21–24 in Diaphanosoma senegal Gauthier, 1951 (Crustacea: Cladocera: Sididae) in South-East Asia

FIGURES 21–24. Diaphanosoma senegal isanensis ssp. nov., female (pond, Lue Amnat dt., Amnat Charoen Province, Thailand)

opennotspecifiedDec 2008View details →
zenodo32/100

FIGURES 15–20 in Diaphanosoma senegal Gauthier, 1951 (Crustacea: Cladocera: Sididae) in South-East Asia

FIGURES 15–20. Diaphanosoma senegal isanensis ssp. nov., females (pond, Lue Amnat dt., Amnat Charoen Province, Thailand)

opennotspecifiedDec 2008View details →

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dandi-nwb
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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.

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Last verified 2026-04-29Open record

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openneuro
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Last verified 2026-04-29Open record