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FIGURE 16 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 16. Ventral view of the lectotype (ZMB 470) of V. marmoratus Wiegmann, 1834. Photo courtesy of Mark- Oliver Rödel and Frank Tillack.
FIGURE 5 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 5. Dorsal view of the lectotype of V. c. cumingi (BMNH 1946.8.31.5). The original labels which according to Günther (1872) were written by H. Cuming and W. Martin read "Isle of Mindana[d]o" and "Mindana[d]o, 57.6.13 186 [the former collection number], Varanus Cumingii", respectively. Photo by André Koch.
FIGURE 1 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 1. Distribution of 104 voucher specimens of the V. salvator complex from the Philippine Archipelago and Borneo as out-group OTU. Sample size is indicated by the diameter of the black circles. The type specimen of V. nuchalis with locality data "Philippines" is symbolized by a black star in the centre of the distribution range of this species. Map modified after Gaulke (in press).
FIGURE 2 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 2. Ordination of 89 Philippine and Bornean specimens of the V. s a l v a t o r complex of the secondary OTUs along the first two canonical variates.
FIGURE 4. V. c in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 4. V. c. cumingi from west Mindanao showing the typical dorsal colour pattern of indistinctive yellow transverse bands, an interrupted medio-dorsal stripe, and a predominantly yellow head with few dark markings. Photo by Maren Gaulke.
FIGURE 6 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 6. Dorsum of the lectotype of V. c. cumingi (BMNH 1946.8.31.5) showing the colour pattern of indistinctive yellow transverse bands. Photo by André Koch.
FIGURE 24 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 24. Portrait of the juvenile paratype (ZFMK 89391) of V. rasmusseni sp. nov. Photo by André Koch.
FIGURE 32 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 32. Drawing of the head of the holotype of V. nuchalis from Günther (1872). Note the name-bearing and strongly enlarged nuchal scales. Photo by André Koch.
FIGURE 14 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 14. An adult specimen of V. cumingi samarensis ssp. nov. from Leyte Island. Photo by Maren Gaulke.
FIGURE 31 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 31. Ventral view of the holotype of V. nuchalis (BMNH 1946.9.1.17), showing the reticulated pattern of the belly. Photo by André Koch.
FIGURE 33. V in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 33. V. nuchalis from Panay Island. Clearly visible are the name-bearing enlarged nuchal scales. Photo by Maren Gaulke.
FIGURE 3 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 3. Ordination of Philippine and Bornean specimens of the V. salvator complex along the first and second (A) and the first and third (B) principal components, respectively. The light green square denotes the holotype of V. nuchalis which is situated outside this conspecific morphospace. OTUs 1 and 2 were excluded from PCA for a better overview because the morphological variation of V. c u m i n g i largely overlaps that of V. marmoratus and V. nuchalis.
FIGURE 28 in Unravelling the underestimated diversity of Philippine water monitor lizards (Squamata: Varanus salvator complex), with the description of two new species and a new subspecies
FIGURE 28. Adult paratype (BMNH 94.6.390.20) of V. palawanensis sp. nov. with bright marking on the head. Photo by André Koch.
FIGURE 5 in A taxonomic revision of the Paramo Tapaculo Scytalopus canus Chapman (Aves: Rhinocryptidae), with description of a new subspecies from Ecuador and Peru
FIGURE 5. Beginning of song of northern S. c. opacus from Azuay, Ecuador, including two introductory notes. In southern S. c. opacus there is usually no introductory note and if present, it is of the same pitch and quality as the following notes.
FIGURE 4 in A taxonomic revision of the Paramo Tapaculo Scytalopus canus Chapman (Aves: Rhinocryptidae), with description of a new subspecies from Ecuador and Peru
FIGURE 4. Phylogram showing relationships among members of the Scytalopus canus complex and near relatives estimated based on maximum-likelihood (ML) analysis of sequences of the mitochondrial gene ND2. Values on the nodes indicate ML bootstrap support, MP bootstrap support, and Bayesian posterior probabilities.
FIGURE 3 in A taxonomic revision of the Paramo Tapaculo Scytalopus canus Chapman (Aves: Rhinocryptidae), with description of a new subspecies from Ecuador and Peru
FIGURE 3. Calls of (A–B) Scytalopus canus canus from Frontino, Antioquia, Colombia, (C–D) northern S. c. opacus from Tungurahua and Carchi, Ecuador, and southern S. c. opacus from (E) Piura, Peru and (F–G) Zamora-Chinchipe, Ecuador.
FIGURE 7. Odius cassigerous ochoticus ssp. n in A new species and subspecies of Ochlesidae Stebbing, 1910 (Amphipoda: Gammaridea) from the Okhotsk Sea
FIGURE 7. Odius cassigerous ochoticus ssp. n., holotype female, 16 mm, Okhotsk Sea. a, coxa 1; b, pereopod 1; c, coxa 2; d, pereopod 2; e, pereopod 3; f, coxa 4; g, pereopod 4; h, pereopod 5; i, pereopod 6; j, pereopod 7.
FIGURE 2 in A taxonomic revision of the Paramo Tapaculo Scytalopus canus Chapman (Aves: Rhinocryptidae), with description of a new subspecies from Ecuador and Peru
FIGURE 2. Complete songs of (A) Scytalopus c. canus from Frontino, Antioquia, Colombia, (B) northern S. c. opacus from Azuay, Ecuador, and (C) southern S. c. opacus from Zamora-Chinchipe, Ecuador. Notice that in S. c. canus the pitch falls rapidly in the beginning of the song. As in the example shown, most songs of northern S. c. opacus have one to three introductory notes. The song length of all three ranges from 4 to 12 s.
FIGURE 4 in A new species and subspecies of Ochlesidae Stebbing, 1910 (Amphipoda: Gammaridea) from the Okhotsk Sea
FIGURE 4. Antarctodius noncarinatus, sp. n., holotype male, 18 mm, Okhotsk Sea. a, epimeral plate 1; b, epimeral plate 2; c, epimeral plate 3; d, pleopod 3; e, uropod 1; f, uropod 2; g, uropod 3; h, telson.
FIGURE 3 in A new species and subspecies of Ochlesidae Stebbing, 1910 (Amphipoda: Gammaridea) from the Okhotsk Sea
FIGURE 3. Antarctodius noncarinatus, sp. n., holotype male, 18 mm, Okhotsk Sea. a, pereopod 1; b, pereopod 2; c, pereopod 3; d, pereopod 4; e, pereopod 5; f, pereopod 6; g, pereopod 7.
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)
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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.