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Figure 13 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figure 13. An individual of P. bicolor becomes prey by the Domestic dog Canis familiaris, 8 December 2021, Sekernan Subdistrict, Muaro Jambi District, Jambi Province (Photo: Muhammad Iqbal).
Figures 10 and 11. Another adult P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figures 10 and 11. Another adult P. bicolor fed leaf of Para rubber tree Hevea brasiliensis (Euphorbiaceae), 15 March 2022, Pemayung Subdistrict, Batanghari District, Jambi Province (Photo: Muhammad Iqbal).
Figure 6 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figure 6. An individual P. bicolor sits on the branch and keeps watching the people who give disturbance, 25 January 2022, Camp Granit, Bukit Tiga Puluh National Park, Jambi Province (Photo: Ega Oktavianus Putra).
Figure 7. One individual P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figure 7. One individual P. bicolor watching in great care to the people who get closer, 5 June 2015, Talang Lakat, Bukit Tiga Puluh National Park, Jambi Province (Photo: Rhett Butler).
Figure 2 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figure 2 (Left) Two adult females P. bicolor keep an infant while watching observers who get closure, 15 March 2022, Pemayung Subdistrict, Batanghari District, Jambi Province (Photo: Nur Rachman). Figure 3 (Right) An unusual position of adult female P. bicolor when holding infant, putting the young between lower belly and thighs, 15 March 2022, Pemayung Subdistrict, Batanghari District, Jambi Province (Photo: Muhammad Iqbal).
Figure 1 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figure 1. Map of historical and recent distribution records of P. bicolor. Insert is a map of Sumatra and the distribution range P. bicolor (indicated by solid brown) based on Nijman (2021). Solid triangles indicate specimen records referred to in Aimi & Bakar (1992), and open triangles indicate distribution records after Aimi & Bakar (1992).
Figure 5 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figure 5. Typical habitat of P. bicolor, 20 March 2022, Muaro Jambi District landscape, Jambi Province. A remaining secondary forest border with young palm oil vegetation (Photo: Muhammad Iqbal).
Figures 8 and 9. One adult P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figures 8 and 9. One adult P. bicolor fed leaf of Mango Mangifera sp (Anacardiaceae), 15 March 2022, Pemayung Subdistrict, Batanghari District, Jambi Province (Photo: Muhammad Iqbal).
Figure 4 in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figure 4. Aerial view of the typical habitat of P. bicolor, 15 March 2022, Pemayung District landscape, Jambi Province. A combination of rubber, palm oil vegetation and remaining forest (Photo: Aji Sartono).
Figure 12. One adult P in New ecological information on the little-known Sumatran endemics Black-and-white langur Presbytis bicolor Aimi & Bakar, 1992 (Primates: Cercopithecidae)
Figure 12. One adult P. bicolor is on the ground, 9 December 2021, Lubuk Ruso Village, Pemayung Subdistrict, Jambi Province (Photo: Muhammad Iqbal).
Fig. 2 in MHC-associated Baylisascaris schroederi load informs the giant panda reintroduction program
Fig. 2. Effects of MHC genotypes on (a–b) infection probability, (c–d) EPG of B. schroederi using important predictors. The Bars show the 95%CI.
Fig. 3 in MHC-associated Baylisascaris schroederi load informs the giant panda reintroduction program
Fig. 3. Effects of MHC alleles on infection probability (a and b) and EPG (c and d) of B. schroeder.i. The bars show the 95%CI.
Figures 1-6. 1 – A in Description of a new species in the genus Ancylis Hübner, 1825 from the Canary Islands and additional faunistic information (Lepidoptera: Tortricidae, Enarmoniini)
Figures 1-6. 1 – A. klimeschana sp. n. Ht. ♀ Spain: Canary Islands, La Gomera: Vallehermoso, 300 m. 15.-16.iv.1998 (K. Larsen leg., gen. prep. 4184 KL). 2 – A. klimeschana sp. n. Pt. ♀ Spain: Canary Islands, La Gomera: Hermigua, El Convento, 600 m 6.-13.iv.2007, leg. W. Losert (coll. KL). 3 – A. comptana ♀, France: Dienay-sur-Ignon, 26.vi.1993 leg. M. Hellers (coll. KL). 4 – A. sparulana ♀, Portugal: Algarve, Salema camping, 55 m, 19.-22.iv.2017 leg. P. Skou (coll. KL). 5 – A. comptana ♀, Spain: Mallorca, Alcudia, s'Albufereta, 20.-21.ix.2009 (KL leg. et coll., gen. prep. 4439 KL).
Fig. 12 in Filling the Corallian gap: New information on Late Jurassic marine reptile faunas from England
Fig. 12. Tooth of the metriorhynchid reptile Metriorhynchus superciliosus de Blainville, 1853 (NHMUK PV OR 47044) from Heddington (Wiltshire), Corallian, in labial view (A), close up of labial ornamentation (B).
Fig. 14 in Filling the Corallian gap: New information on Late Jurassic marine reptile faunas from England
Fig. 14. Time calibrated phylogenetic tree of the main Jurassic Sub-Boreal Seaway marine reptile lineages stratigraphic ranges. A. Plesiosauria (modified from Fischer et al. 2015, 2017). B. Ichthyosauria (modified from Fischer et al. 2014). C. Thalattosuchia (Young et al. 2016; Foffa et al. 2017). MJML, Museum of Jurassic Marine Life—the Steve Etches Collection, Kimmeridge, UK.
Fig. 11 in Filling the Corallian gap: New information on Late Jurassic marine reptile faunas from England
Fig. 11. Teeth of the metriorhynchid reptile Tyrannoneustes. A. YORYM:2016.308, cf. Tyrannoneustes, from Malton (Yorkshire), middle Oxfordian, in labial (A1), axial (A2), and apical (A3) views, detail of the apex of the crown (A4, not to scale). B. NHMUK PV R3939, Tyrannoneustes lythrodectikos Young, Andrade, Brusatte, Sakamoto, and Liston, 2013a, from Peterborough (Cambridgeshire), Callovian, dentary tooth crushed at its base resulting more laterally compressed than in life, in labial (B1), axial (B2, B4), and lingual (B3) views.
Fig. 9 in Filling the Corallian gap: New information on Late Jurassic marine reptile faunas from England
Fig. 9. Teeth of Machimosaurini indet. from Corallian. A. OUMNH J.40669, unkown locality, "Corallian beds", Oxfordian, in labial (A1), axial (A2, A4), and lingual (A3) views. B. OUMNH J.50169, from Headington (Oxfordshire), middle Oxfordian, in lingual/axial oblique view.
Fig. 10 in Filling the Corallian gap: New information on Late Jurassic marine reptile faunas from England
Fig. 10. Teeth of the metriorhynchid reptile Torvoneustes sp. A. YORYM:2016.309, from Malton (Yorkshire), middle Oxfordian, in labial (A1), axial A2), and lingual (A3) views, and close ups of the carina and ornamentation (A4, A5, not to scale). B. CAMSM J.13309, from Malton (Yorkshire), middle Oxfordian, in labial (B1), axial (B2, B4), lingual (B3) views, and close ups of the carinae (B5, B6, not to scale). C–E. Comparative line drawings C, Torvoneustes carpenteri; D, T. mexicanus; E, T. coryphaeus) teeth (C1–E1, not to scale) and details of ornamentation (C2–E2, not to scale), the arrows in E2 show that the ornamentation does not interact with the carinae (modified from Barrientos-Lara et al. 2016).
Fig. 8 in Filling the Corallian gap: New information on Late Jurassic marine reptile faunas from England
Fig. 8. Ichthyosaurid reptile Ophthalmosaurinae indet. (CAMSM J.29866), basioccipital from Ampthill (Bedfordshire), Oxfordian, in posterior (A), lateral (B, E), anterior (C), dorsal (D), and ventral (F) views.
Fig. 7 in Filling the Corallian gap: New information on Late Jurassic marine reptile faunas from England
Fig. 7. Ichthyosaurid reptile cf. Ophthalmosaurus sp. (A) and Reptilia indet. (B) from Malton (Yorkshire), Oxfordian. A. NHMUK R 648, isolated crown, the exact view cannot be assessed. B. NHMUK PV R 6770, tooth in labial (B1), axial (B2, B4), lingual (B3), and apical (B5) views.
ScienceDex guides
Understand access before you commit
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.