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195 results for “Kalimantan”

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Fig. 1. Rasbora patrickyapi, A, ZRC 51749 in Rasbora Patrickyapi, A New Species Of Cyprinid Fish From Central Kalimantan, Borneo

Fig. 1. Rasbora patrickyapi, A, ZRC 51749, paratype, ca. 40 mm SL, life colouration; B, ZRC 51749, paratype, ca. 40 mm SL, life colouration; C, ZRC 51748, paratype, 41.4 mm SL, freshly preserved; D, MZB 10707, holotype, 41.8 mm SL, preserved material, Central Kalimantan: Rungan.

opencc-by-4.0Aug 2009View details →
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Fig. 3. Nemacheilus tebo, MZB 13367 in Nemacheilus Tebo, A New Loach From Sangkulirang Karst, East Kalimantan, Indonesia (Teleostei: Nemacheilidae)

Fig. 3. Nemacheilus tebo, MZB 13367, holotype, 56.1 mm SL; Indonesia: Kalimantan Timur: Lake Tebo area, site 2.

opencc-by-4.0Feb 2009View details →
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Fig. 6. a in Nemacheilus Tebo, A New Loach From Sangkulirang Karst, East Kalimantan, Indonesia (Teleostei: Nemacheilidae)

Fig. 6. a. Lake Tebo; b. Tuba-tubaan river, a small stream flowing out of Gua Keluar ('Exit Cave') and entering Gua Masuk ('Entrance Cave'; on picture).

opencc-by-4.0Feb 2009View details →
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Fig. 2 in Nemacheilus Tebo, A New Loach From Sangkulirang Karst, East Kalimantan, Indonesia (Teleostei: Nemacheilidae)

Fig. 2. Lake Tebo drainage. Nemacheilus tebo, was collected at sites 1–3 at the mouth of the caves, at sites 4 (Gua Keluar) and 5 (Gua Masuk) in a small stream inside the cave, and at site 6 on the same stream at the confluence with a small inlet. Black: Lake Tebo; white: limestone cliffs; pale gray: valley bottom; dark grey: karst uplands and (in valley) remnants of pinnacles.

opencc-by-4.0Feb 2009View details →
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Fig. 1 in Nemacheilus Tebo, A New Loach From Sangkulirang Karst, East Kalimantan, Indonesia (Teleostei: Nemacheilidae)

Fig. 1. Sangkulirang Peninsula, with the four limestone formations (Tabalar, Baai, Marang, Tebo) surveyed by The Nature Conservancy and the Research Center for Biology-Indonesian Institute of Sciences (LIPI).

opencc-by-4.0Feb 2009View details →
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Fig. 5 in Nemacheilus Tebo, A New Loach From Sangkulirang Karst, East Kalimantan, Indonesia (Teleostei: Nemacheilidae)

Fig. 5. Nemacheilus tebo: a, CMK 18909, paratype, male, 45.0 mm SL; head showing suborbital flap; b, MZB 13367, holotype, 56.1 mm SL; mouth, ventral view.

opencc-by-4.0Feb 2009View details →
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Fig. 4 in Nemacheilus Tebo, A New Loach From Sangkulirang Karst, East Kalimantan, Indonesia (Teleostei: Nemacheilidae)

Fig. 4. Nemacheilus tebo: a–b. scanning electron micrographs of caudal peduncle of 34.3 mm SL specimen: a, showing elongated scales above and below lateral line; b, close-up view of tubercle; c, scanning electron micrograph of tubercle on first pectoral-fin ray of 44.1 mm SL specimen. Scale bars = 10 µm

opencc-by-4.0Feb 2009View details →
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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.

opencc-by-4.0Sep 2014View details →
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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.

opencc-by-4.0Sep 2014View details →
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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).

opencc-by-4.0Sep 2014View details →
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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.

opencc-by-4.0Sep 2014View details →
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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].

opencc-by-4.0Oct 2020View details →
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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].

opencc-by-4.0Oct 2020View details →
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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).

opencc-by-4.0Oct 2020View details →
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Figs 6–8 in Notes on Scaphisoma of Kalimantan (Coleoptera: Staphylinidae: Scaphidiinae)

Figs 6–8. Adeagus of Scaphisoma submaculatum Pic, 1920 in dorsal view (6), paramere in ventral view (7), apical part of aedeagus in lateral view (8). Scale bars = 0.2 mm.

opencc-by-4.0May 2015View details →
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Figs 9–12 in Notes on Scaphisoma of Kalimantan (Coleoptera: Staphylinidae: Scaphidiinae)

Figs 9–12. Aedeagus of Scaphisoma tarsale sp. nov., in dorsal view (9), in lateral view (10), internal sac in dorsal view (11), parameres in ventral view (12). Scale bars = 0.2 mm.

opencc-by-4.0May 2015View details →
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Figs 1–5 in Notes on Scaphisoma of Kalimantan (Coleoptera: Staphylinidae: Scaphidiinae)

Figs 1–5. Aedeagi of Scaphisoma: S. borneense Pic, 1916, internal sac extruded, in dorsal view (1), in lateral view (2), in ventral branch of apical process in lateral view (3). S. mindanaosum Pic, 1926, aedeagus in lateral view (4), paramere and apical process of median lobe in lateral view (5). Figs 1, 2 and 4: scale bars = 0.2 mm, Figs 3 and 5: scale bars = 0.1 mm.

opencc-by-4.0May 2015View details →
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Fig. 2 in Niche partitioning between juvenile sympatric crocodilians in Mesangat Lake, East Kalimantan, Indonesia

Fig. 2. Boxplots of the distance to the nearest tree, floating grass mat, and invasive floating plants Eicchornia crassipes and Salvinia cucullata in the two main habitat types in Mesangat wetland: the open areas and the flooded forest. The habitats differ significantly in median distance from a transect line point to the nearest tree (W = 5807.5, nopen = 109, nforest = 56, P <0.001). Floating grass mats are present predominantly in the open areas where median distance from the transect to the nearest grass mat was significantly smaller than in flooded forest (W = 697, nopen = 108, nforest = 39, P <0.001). The invasive plant species, E. crassipes and S. cucullata, were found in both habitats. Median distances from transect points to the nearest exotic plant did not differ significantly between the flooded forest and open areas (E. crassipes: W = 186.5, nopen = 22, nforest = 24, P = 0.089; S. cucullata: W = 801, nopen = 48, nforest = 39, P = 0.249).

opencc-by-4.0Sep 2018View details →
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Fig. 6 in Niche partitioning between juvenile sympatric crocodilians in Mesangat Lake, East Kalimantan, Indonesia

Fig. 6. Percentage of stomach content samples of C. siamensis (n = 16) and T. schlegelii (n = 26) containing different prey items: birds, fish, amphibians, invertebrates, plants, reptiles and mammals.

opencc-by-4.0Sep 2018View details →
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Fig. 1 in Niche partitioning between juvenile sympatric crocodilians in Mesangat Lake, East Kalimantan, Indonesia

Fig. 1. Wild juvenile Crocodylus siamensis (A) and Tomistoma schlegelii (B) captured in Mesangat Lake.

opencc-by-4.0Sep 2018View details →

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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.

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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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OpenNeuro

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