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36 results for “central Kalimantan”

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zenodo44/100

Orangutan habitat survey in Sebangau National Park, Central Kalimantan, Indonesia

<p>This dataset is used to initialise BORNEO (arBOReal aNimal movEment mOdel), as a part of publication entitled:</p> <p>Assessing the impact of forest structure disturbances on the arboreal movement oforangutans - an agent-based modelling approach.</p> <p>The article manuscript is being prepared to be submitted to Frontiers in Ecology and Evolution</p> <p><strong>Data collection</strong></p> <p>The data is collected in Sebangau, Central Kalimantan, Indonesia. Two 1-ha plots were established, each in unburned and burned forest.&nbsp;</p>

opencc-by-4.0Jun 2022View details →
zenodo40/100

Fig. 4 in Rasbora Patrickyapi, A New Species Of Cyprinid Fish From Central Kalimantan, Borneo

Fig. 4. Map of Borneo showing distribution of Rasbora patrickyapi (circle); type locality of Rasbora einthovenii (square); type locality of Rasbora kalochroma (triangle).

opencc-by-4.0Aug 2009View details →
zenodo40/100

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 →
dryad36/100

Palaeoecological data of KTG core, Katingan, Central Kalimantan, Borneo, Indonesia

<p>Southeast Asian peatlands, along with their various important ecosystem services, are mainly distributed in the coastal areas of Sumatra and Borneo. These ecosystems are threatened by coastal development, global warming and sea level rise (SLR). Despite receiving growing attention for their biodiversity and as massive carbon stores, there is still a lack of knowledge on how they initiated and evolved over time, and how they responded to past environmental change, i.e., precipitation, sea level and early anthropogenic activities. To improve our understanding thereof, we conducted multi-proxy palaeoecological studies in the Kampar Peninsula and Katingan peatlands in the coastal area of Riau and Central Kalimantan, Indonesia. The results indicate that the initiation timing and environment of both peatlands are very distinct, suggesting that peat could form under various vegetation as soon as there is sufficient moisture to limit organic matter decomposition. The past dynamics of both peatlands were mainly attributable to natural drivers, while anthropogenic activities were hardly relevant. Changes in precipitation and sea level led to shifts in peat swamp forest vegetation, peat accumulation rates, and fire regimes at both sites. We infer that the simultaneous occurrence of El Niño-Southern Oscillation (ENSO) events and SLR resulted in synergistic effects which led to the occurrenceere fires in a pristine coastal peatland ecosystem, however, it did not interrupt peat accretion. In the future, SLR, combined with the projected increase in frequency and intensity of ENSO, can potentially amplify the negative effects of anthropogenic peatland fires. This prospectively stimulates massive carbon release, thus could, in turn, contribute to worsening the global climate crisis especially once an as yet unknown threshold is crossed and peat accretion is halted, i.e., peatlands lose their carbon sink function. Given the current rapid SLR, coastal peatland managements should start develop fire risk reduction or mitigation strategies.</p>

opencc-zeroFeb 2022View details →
zenodo36/100

Fig. 5 in Rasbora Patrickyapi, A New Species Of Cyprinid Fish From Central Kalimantan, Borneo

Fig. 5. Type locality of Rasbora patrickyapi (March 2008).

opencc-by-4.0Aug 2009View details →
dryad36/100

Palaeoecological data of KTG core, Katingan, Central Kalimantan, Borneo, Indonesia

Open the record for dataset details and reuse information.

publicFeb 2022View details →
zenodo32/100

FIGURE 11 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 11. Map of Borneo showing distribution of Homaloptera batek (circle), H. tateregani (triangle) and H. stephensoni (square – solid: type locality, hollow: other locations).

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 10 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 10. Schematised drawings of anterior dorso-lateral body scales of: A, Homaloptera batek, ZRC 51743, 97.2 mm SL; B, H. tateregani, RMNH 7632, 63.2 mm SL; C, H. stephensoni, ZRC 51742, 68.6 mm SL (scale bar = 1 mm).

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 8 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 8. Homaloptera stephensoni. Dorsal, lateral, ventral and oral views, respectively, from top, RMNH 7633, holotype, 47.6 mm SL.

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 9 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 9. Homaloptera stephensoni. Dorsal, lateral and ventral views, respectively, from top, ZRC 51741, 58.5 mm SL.

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 4. Homaloptera batek. Oral views showing variation with size, ZRC 51743 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 4. Homaloptera batek. Oral views showing variation with size, ZRC 51743, from top to bottom: A, 96.4 mm SL; B, 87.4 mm SL; C, 63.5 mm SL; D, 38.2 mm SL.

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 7 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 7. Homaloptera tateregani. Dorsal, lateral, ventral and oral views, respectively from top, RMNH 7632, holotype, 63.2 mm SL.

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 3 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 3. Homaloptera batek. Dorsal views showing body-pattern variation with size, ZRC 51743, from top to bottom: 96.4, 87.4, 63.5, 38.2 mm SL (not to scale).

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 2 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 2. Homaloptera batek. Lateral views showing body-pattern variation with size, ZRC 51743, from top to bottom: 96.4, 87.4, 63.5, 38.2 mm SL (not to scale).

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 5 in A new species of hill stream loach (Teleostei: Balitoridae) from Central Kalimantan, with redescriptions of Homaloptera tateregani Popta and Homaloptera stephensoni Hora

FIGURE 5. Homaloptera batek, freshly caught, in push net with other syntopic species (taken at night, 12 August 2007).

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 1 in Dendrobium ormerodii (Orchidaceae, Dendrobieae), a new Dendrobium species from Central Kalimantan, Indonesia

FIGURE 1. Dendrobium ormerodii Handoyo, Naive &amp; J.Champ. sp. nov. A. Habit B. Flower C. Dorsal sepal D. Lateral sepals E. Petals F. Anther G. Column and column foot H. Labellum (flattened) I. Side view of Pedicel and ovary, column and column foot; Labellum. Drawn by: Probo Guritno.

opennotspecifiedNov 2021View details →
zenodo32/100

FIGURE 2 in Dendrobium ormerodii (Orchidaceae, Dendrobieae), a new Dendrobium species from Central Kalimantan, Indonesia

FIGURE 2. Dendrobium ormerodii Handoyo, Naive &amp; J.Champ. sp. nov. A. Habit B. Inflorescence appearing from leafless stem C. Flowers D. Detail of flowers E. Detail of Labellum F. Side view of Pedicel and ovary, column and column foot; front view of column foot G. Dorsal sepal H. Lateral sepals I. Petals J. Anther. Photos by: J. Champion (A) and F. Handoyo (B–J).

opennotspecifiedNov 2021View details →
zenodo32/100

Subspecies and Distribution. P.p.pygmaeusLinnaeus,1760—WBorneoinMalaysia(SSarawakState)andIndonesia(NWestKalimantanProvince). P.p.morioOwen,1837—N&EBorneoinMalaysia(SabahState)andIndonesia(EastKalimantanProvince);possiblyinNSarawak. P. p. wurmbii Tiedemann, 1808 — S Indonesian Borneo (S West & Central Kalimantan provinces). in Hominidae

Subspecies and Distribution. P.p.pygmaeusLinnaeus,1760—WBorneoinMalaysia(SSarawakState)andIndonesia(NWestKalimantanProvince). P.p.morioOwen,1837—N&amp;EBorneoinMalaysia(SabahState)andIndonesia(EastKalimantanProvince);possiblyinNSarawak. P. p. wurmbii Tiedemann, 1808 — S Indonesian Borneo (S West &amp; Central Kalimantan provinces).

opennotspecifiedMar 2013View details →
zenodo32/100

FIGURE 12 in Revisions in Nepenthes following explorations of the Kemul Massif and the surrounding region in north-central Kalimantan, Borneo

FIGURE 12. Pitchers and leaves of Nepenthes mollis. Top row Kemul Massif, middle row Mt. Murud. A &amp; D—lower pitchers. B &amp; E—intermediate pitchers. C &amp; F—upper pitchers. G—petiolate bases of rosette leaves (Kemul Massif). H—decurrent bases of climbing stem leaves, abaxial perspective, and I—lateral perspective (both Kemul Massif). Photographs A, B, D, E, F, H by A.S. Robinson; C, I by M.R. Golos; G by S.R. McPherson.

opennotspecifiedFeb 2019View details →
zenodo32/100

FIGURE 11. Nepenthes mollis Danser. A in Revisions in Nepenthes following explorations of the Kemul Massif and the surrounding region in north-central Kalimantan, Borneo

FIGURE 11. Nepenthes mollis Danser. A—rosette with right lower and left intermediate pitchers. B—climbing stem bearing upper pitchers and male inflorescence, note increasing leaf decurrency. C—adaxial detail of a climbing stem leaf showing leaf attachment. D—detail of leaf margin and adaxial surface. E—detail of upper pitcher lid, left adaxial surface, middle abaxial surface, right lateral view showing keel. F—cross section of peristome. G—male flowers. H—dehiscing seed capsules. Scale bars: A, B, C, E, F = 1 cm, D, H = 5 mm, G = 2 mm. Based on Endert 4282 and supplemented with photographs and measurements made of in situ material. Illustrated by M. Barer.

opennotspecifiedFeb 2019View details →

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International Brain Laboratory public data

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OpenNeuro

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