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13 results for “Pongo”

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zenodo40/100

Figure 5 in The type specimens and type localities of the orangutans, genus Pongo Lacépède, 1799 (Primates: Hominidae)

Figure 5. The nomenclature and geographic distribution of the subspecies of Pongo pygmaeus, (A) following Groves (2001), and (B) as revised in this paper

opencc-by-4.0May 2016View details →
zenodo40/100

Triangular Mesh of the Brain of a Orangutan (Pongo pygmaeus)

<p>Triangular Mesh of the Brain of a Orangutan (<i>Pongo pygmaeus</i>) from http://braincatalogue.org/Orangutan</p>

opencc-by-4.0Jan 2016View details →
zenodo36/100

Pongo pygmaeus (modern) (2501.1rp12-2)

*** Pongo pygmaeus*** Location: Indonesia. Age: modern. Material: epoxy resin cast. Dimensions: length, 90 mm; width, 75 mm; height, 46 mm. Notes: RLA catalog no. 2501.1rp12-2 (cast). Juvenile Orangutan mandible. Cast manufacturer unknown. From the teaching collection of the Research Laboratories of Archaeology, University of North Carolina at Chapel Hill. Model by Steve Davis. Source: Objaverse 1.0 / Sketchfab

opencc-byJul 2020View details →
zenodo36/100

Magnetic Resonance Imaging Scan of the Brain of a Orangutan (Pongo pygmaeus)

<p>Magnetic Resonance Imaging Scan of the Brain of a Orangutan (<i>Pongo pygmaeus</i>) from http://braincatalogue.org/Orangutan</p>

opencc-by-nc-4.0Jan 2016View details →
zenodo36/100

Data from: Geometric morphometrics and paleoproteomics in tandem enlighten the paleodiversity of Pongo

<p>This folder contains the data used for the creation of the phylogenetic trees for the manuscript &#39;Geometric morphometrics and paleoproteomics in tandem enlighten the paleodiversity of Pongo&#39;.</p> <p>Ancient_Sequences.fa is a fasta file containing all palaeoproteomic sequences reconstructed in the context of the above study. (15 fosil pongo samples)&nbsp;</p> <p>&#39;Raw_Reference_Dataset&#39; is a folder containing 9 fasta files. Each fasta contains the reference sequences of multiple samples (6 H.sapiens,27 Pongo, 30 Gorilla, 38 Pan, 2 Macaca, 1 Nomascus, 1 Microcebus, 1 Papio ) for one protein.</p> <p>&#39;Alignments&#39; is a folder containing 9 fasta files with the name of a protein. Each fasta file contains the aligned sequences of the reference dataset and the ancient samples for that protein. Additionally, the fasta file &#39;CONCATENATED.fa&#39; contains all proteins concatenated, aligned and I/L fixed.</p>

opencc-by-4.0Feb 2023View details →
zenodo28/100

Figure 4 in The type specimens and type localities of the orangutans, genus Pongo Lacépède, 1799 (Primates: Hominidae)

Figure 4. Two significant orangutan specimens. (A) Facial view of a (Bornean ex-captive) juvenile orangutan skull (the holotype of Simia wallichii Gervais 1838), sent to Paris before 1818 by Nathaniel Wallich. MNHN-ZM-AC-A517 © MNHN – Cécile CALLOU – 2016, published with permission. (B) Mounted adult male orangutan skin, NHMUK 1856.11.8.1, collected in Sarawak, Malaysia by A.R. Wallace; probably the male from Semabang whose lack of cheek flanges convinced Wallace there are two species. © Trustees of the Natural History Museum, London, published with permission.

opencc-by-4.0May 2016View details →
zenodo28/100

Figure 3 in The type specimens and type localities of the orangutans, genus Pongo Lacépède, 1799 (Primates: Hominidae)

Figure 3. Map of locations in west Borneo, with inset map locating Borneo in Southeast Asia. 8: Rejang; 9: Binatang; 10: Darau, Narasit and Ilang; 11: Sarebas; 12: Lanjak-Entimau Wildlife Sanctuary; 13: Batang Lupar; 14: Batang Undup; 15: Marup; 16: Batang Ai National Park; 17: Danau Sentarum; 18: Batangtu, Ketungau River; 19: Sangi, Sadong River; 20: Simunjang; 21: Semabang; 22: Kundah hill (= Bukit Punda); 23: Sabal Forest Reserve; 24: Balai Ringin Protected Forest; 25: Bako; 26: Singhi; 27: Gunung Paku; 28: Semongok Forest Reserve (= Semonggok or Semenggoh); 29: Gunong Bungo; 30: Sambas; 31: Mempawah; 32: Landak (= Ngabang); 33: Landak River; 34: Pontianak; 35: Sungai Sama; 36: Sanggau; 37: Kapuas Valley; 38: Succadana (= Sukadana); 39: Gunung Palung National Park.

opencc-by-4.0May 2016View details →
zenodo28/100

Figure 2 in The type specimens and type localities of the orangutans, genus Pongo Lacépède, 1799 (Primates: Hominidae)

Figure 2. Map of localities in north, central and south Borneo, with inset map locating Borneo in Southeast Asia. 1: Mt Kinabalu; 2: Crocker Range National Park; 3: Padas River (Sungai Padas); 4: Brunei Town (= Bandar Seri Begawan); 5: Niah; 6: Sungai Silat; 7: Balui; 10: Darau, Narasit and Ilang; 12: Lanjak-Entimau Wildlife Sanctuary; 16: Batang Ai National Park. Kalimantan: 17: Danau Sentarum; 18: Batangtu, Ketungau River; 40: Kotaringin (= Kotawaringin); 41: Tanjung Puting National Park; 42: Sampit; 43: Sabangau National Park; 44: Kahajan (= Kahayan) River; 45: Sungai Lading; 46: Teweh River; 47: Tanjung-Jawa; 48: Doeson or Dusun (= Barito River); 49: Banjarmasin; 50: Klumpang Bay; 51: Pemukan Bay; 52: Passeer (= Tanahgrogot); 53: Balikpapan Bay; 54: Samarinda; 55: Mahakam River; 56: Kutai National Park; 57: Sangatta (= Sengata); 58: Sungai Menganne; 59: Sembakung River; 60: Danum Valley; 61: Abai, Kinabatangan River; 62: Elapura, Sandakan Bay; 63: Sepilok Orangutan Sanctuary.

opencc-by-4.0May 2016View details →
dryad28/100

Data from: Orangutans (Pongo pygmaeus) recognize their own past actions

The ability to recognize oneself in a mirror is known as self-recognition, whereas delayed self-recognition is the ability to recognize the relationship between current self and past actions. While 3-year-old human children have self-recognition without the ability for delayed self-recognition, 4-year-old human children demonstrate the capability for both. Chimpanzees, the most closely related species to humans, have displayed the ability for delayed self-recognition. However, little is known about whether this ability is shared amongst all hominid species. In this study, we examined whether orangutans, the most distantly related species to humans within the hominid group, could recognize their own past actions using the preferential-looking paradigm. Our results demonstrated that orangutans were able to discriminate between a delayed video of themselves presented after a 2-second delay, and a recorded video of the day prior. This suggests that orangutans have the ability to relate their own past actions to current actions, although we found no evidence of self-directed behavior. We believe these findings will contribute to our growing understanding of hominid self-recognition.

opencc-zeroDec 2017View details →
dryad28/100

Data from: Orangutans (Pongo pygmaeus) recognize their own past actions

Open the record for dataset details and reuse information.

publicNov 2018View details →
zenodo24/100

Figure 1 in The type specimens and type localities of the orangutans, genus Pongo Lacépède, 1799 (Primates: Hominidae)

Figure 1. Map of South Asia, showing places mentioned in the text.

opencc-by-4.0May 2016View details →
zenodo24/100

Figure 5 in The type specimens and type localities of the orangutans, genus Pongo Lacépède, 1799 (Primates: Hominidae)

Figure 5. (Continued)

opencc-by-4.0May 2016View details →
zenodo20/100

Pongo pygmaeus (modern) (2501.1rp12-1)

*** Pongo pygmaeus*** Location: Indonesia. Age: modern. Material: epoxy resin cast. Dimensions: length, 150 mm; width, 93 mm; height, 90 mm. Notes: RLA catalog no. 2501.1rp12-1 (cast). Juvenile Orangutan cranium. Cast manufacturer unknown. From the teaching collection of the Research Laboratories of Archaeology, University of North Carolina at Chapel Hill. Model by Steve Davis. Source: Objaverse 1.0 / Sketchfab

opencc-by-nc-1.0Jul 2020View details →

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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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Last verified 2026-04-29Open record

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Last verified 2026-04-29Open record