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Fig. 2 in Trade in nautilus and other large marine molluscs as ornaments and decorations in Bali, Indonesia
Fig. 2. Large marine mollusc shells for sale in Bali, July 2014: A (i), (ii), (iii), and (iv) chambered nautilus Nautilus pompilius; B. Triton's trumpet Charonia tritonis; C. false trumpet Syrinx aruanus; D. horned helmet Cassis cornuta.
Fig. 5 in Gymnochanda ploegi, a new species of ambassid glassperch from West Kalimantan, Indonesia
Fig. 5. Map of Sundaland showing distribution of Gymnochanda: round = G. filamentosa; triangle = G. flamea; square = G. limi; inverted triangle = G. verae; and diamond = G. ploegi.
Fig. 2. A in Gymnochanda ploegi, a new species of ambassid glassperch from West Kalimantan, Indonesia
Fig. 2. A, Gymnochanda verae – ZRC 53122, 22.3 mm SL male paratype, freshly dead specimen; B, Gymnochanda ploegi – MZB 17220, 25.9 mm SL male holotype, freshly dead specimen (note: anal fin is damaged); C, Gymnochanda ploegi – MZB 17221, 26.0 mm SL female paratype, freshly dead specimen.
Fig. 3 in Gymnochanda ploegi, a new species of ambassid glassperch from West Kalimantan, Indonesia
Fig. 3. Gymnochanda ploegi – line drawing of head, MZB 17220, 25.9 mm SL male holotype, showing serrations (scale bar = 1 mm) (Artwork by Kelvin Lim).
Fig. 1 in Gymnochanda ploegi, a new species of ambassid glassperch from West Kalimantan, Indonesia
Fig. 1. Gymnochanda ploegi: A, MZB 17220, 25.9 mm SL male holotype (note: anal fin is damaged); B, MZB 17221, 26.0 mm SL female paratype.
Figs. 31–36 in Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera
Figs. 31–36. SEM Syphacia (Segienamsyphacia) yuniae, new species from Eropeplus canus in south Sulawesi, Indonesia. 31, cephalic end of female, apical view; 32, cephalic end of female, apical view, higher magnification; 33, egg; 34, enlarged view of eggshell surface; 35, caudal papilla of male, lateral view; 36, mamelon, ventral view.
Figs. 19–30 in Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera
Figs. 19–30. Syphacia (Segienamsyphacia) yuniae, new species from Eropeplus canus in south Sulawesi, Indonesia. 19, male, holotype, lateral view; 20, cephalic end of male, apical view; 21, midbody in cross section of male; 22, midbody in cross section of male, higher magnification; 23, posterior portion of male, ventral view; 24, posterior portion of male; lateral view; 25, spicule and gubernaculum, lateral view; 26, female, lateral view; 27, cephalic end of female, apical view; 28, midbody in cross section of female; 29, egg; 30, excretory pore and vulva, showing poorly developed vagina
Figs. 11–18 in Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera
Figs. 11–18. SEM Syphacia (Rumbaisyphacia) kumis, new species from Eropeplus canus in south Sulawesi, Indonesia. 11, cephalic end, apical view; 12, mouth opening showing setiferous apical margin of pharynx; 13, anterior end, lateral view; 14, egg; 15, posterior end; 16, mamelon, ventral view; 17, mamelon (lateral view); 18, protruded vulva
Figs. 1−10 in Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera
Figs. 1−10. Syphacia (Rumbaisyphacia) kumis, new species from Eropeplus canus in south Sulawesi, Indonesia. 1, male, holotype, lateral view; 2, cephalic end of male, apical view; 3, midbody in cross section of male; 4, posterior end of male, ventral view; 5, spicule and gubernaculum, lateral view; 6, cephalic end of female, apical view; 7, anterior portion of female, lateral view; 8, Posterior portion of female; 9, midbody in cross section of female; 10, egg.
Figs. 1–3. Aphanisticus spp. 1 – A in A new species of the genusAphanisticus (Coleoptera: Buprestidae: Agrilinae) from Indonesia
Figs. 1–3. Aphanisticus spp. 1 – A. hajeki sp. nov., holotype, habitus; 2 – A. bohaci Obenberger, 1924, neotype, habitus; 3 – A. bohaci Obenberger, 1924, neotype, labels
Fig. 8 in The Identity Of Betta Rubra (Teleostei: Osphronemidae) Revisited, With Description Of A New Species From Sumatra, Indonesia
Fig. 8. Betta dennisyongi: A, ZRC 50871, 29.5 mm SL male, colouration in life; B, same specimen, acclimatised colouration.
Fig. 5 in The Identity Of Betta Rubra (Teleostei: Osphronemidae) Revisited, With Description Of A New Species From Sumatra, Indonesia
Fig. 5. Fragmented peat swamp locality in Singkil where a remnant population of B. rubra was collected (2009).
Fig. 4 in The Identity Of Betta Rubra (Teleostei: Osphronemidae) Revisited, With Description Of A New Species From Sumatra, Indonesia
Fig. 4. Betta rubra live male specimen from southern Aceh (from same series as ZRC 53989, not preserved).
Fig. 1 in The Identity Of Betta Rubra (Teleostei: Osphronemidae) Revisited, With Description Of A New Species From Sumatra, Indonesia
Fig. 1. Comparison of lateral head and opercle pattern, left side with photograph, right side with schematic drawing. A, B, Betta rubra, MSNG 13019, lectotype, 28.6 mm SL; C, D, Betta rubra, ZRC 53989, 34.0 mm SL male; E, F, Betta dennisyongi, MZB 17207, holotype, 27.4 mm SL male.
Fig. 6 in The Identity Of Betta Rubra (Teleostei: Osphronemidae) Revisited, With Description Of A New Species From Sumatra, Indonesia
Fig. 6. Map of Sumatra showing distribution of Betta rubra (round symbols) and B. dennisyongi (square symbols).
Fig. 3 in The Identity Of Betta Rubra (Teleostei: Osphronemidae) Revisited, With Description Of A New Species From Sumatra, Indonesia
Fig. 3. Betta rubra: A, ZRC 53989, 34.0 mm SL male; B, ZRC 53989, 37.9 mm SL female; freshly collected specimens from southern Aceh.
Fig. 2 in The Identity Of Betta Rubra (Teleostei: Osphronemidae) Revisited, With Description Of A New Species From Sumatra, Indonesia
Fig. 2. Betta rubra: A, MSNG 13019a, lectotype, 28.6 mm SL, left side; B, lectotype, right side, Sibolga; C, BMNH 1893.5.29:1, paralectotype, 33.3 mm SL, Lake Toba.
Fig. 3 in Food preference of the Bornean elephant (Elephas maximus borneensis) in North Kalimantan Province, Indonesia, and its conservation implications
Fig. 3. The OPLS score plot (a) showing the correlation between 1H NMR data and Bornean elephant predictive food preference level. The loading coefficient plot (b) showing the signals that are positively (on the positive y-axis) and negatively (negative y-axis) correlated to the preference prediction [C = Calamus sp., DC = Donax canniformis, EG = Elaeis guineensis, E = Etlingera sp., MB = Musa borneensis, SS = Saccharum spontaneum, BO = Bambusa oldhamii, SO = Saccharum officinarum, CN = Cocos nucifera, AH = Artocarpus heterophyllus, L = Licuala sp., CM = Caryota mitis, AP = Arenga pinanga].
Fig. 2 in Food preference of the Bornean elephant (Elephas maximus borneensis) in North Kalimantan Province, Indonesia, and its conservation implications
Fig. 2. The orthogonal projections to latent structures (OPLS) score plot (a) showing separation of nutritional values among the samples [C = Calamus sp., Dc = Donax canniformis, Eg = Elaeis guineensis, E = Etlingera sp., Mb = Musa borneensis, Ss = Saccharum spontaneum, Bo = Bambusa oldhamii, So = Saccharum officinarum, Cn = Cocos nucifera, Ah = Artocarpus heterophyllus, L = Licuala sp., Cm = Caryota mitis, Ap = Arenga pinanga] The response-related profile (b) showing signals that are positively and negatively correlated to the preference prediction [NDF = Neutral detergent fibre, ADF = Acid detergent fibre, HC = Hemicellulose, ADL = Acid detergent lignin, CP = Crude protein, P = Phosphorus, K = Potassium, Ca = Calcium, Mg = Magnesium, Na = Sodium].
Fig. 1 in Food preference of the Bornean elephant (Elephas maximus borneensis) in North Kalimantan Province, Indonesia, and its conservation implications
Fig. 1. Map of the study area showing transects containing feeding signs of Bornean elephant in the study area in Tulin Onsoi Sub-district, North Kalimantan Province (after Suba et al., 2018).
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)
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.