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Fig. 4 in A new species of the genus Pulchrana Dubois, 1992 (Amphibia: Ranidae) from Sumatra, Indonesia
Fig. 4. Geographical distribution of Pulchrana centropeninsularis (white circles), P. fantastica, new species (black triangles), and P. siberu (red stars). Locality information: Mane (1); Taman Buru Linge Isaq (2); Taman Nasional Gunung Leuser (3); Bandar Baru (4), Lakum Forest Reserve & Kuala Gandah, Pahang (5); Bukit Tigapuluh (6); Hutan Harapan (7); Siberut (8); Sipora (9); and Pagai Selatan (10). Type locality for each species indicated by arrow. Map was prepared using GeoMapApp (Ryan et al., 2009).
Fig. 3 in A new species of the genus Pulchrana Dubois, 1992 (Amphibia: Ranidae) from Sumatra, Indonesia
Fig. 3. Habitat of Pulchrana centropeninsularis, Hutan Harapan, Jambi (a) and P. fantastica, new species, Taman Buru Linge Isaq, Aceh (b, c). Photo by A. Jankowski (a); G. Cahyadi (b, c).
Fig. 6 in A new species of the genus Pulchrana Dubois, 1992 (Amphibia: Ranidae) from Sumatra, Indonesia
Fig. 6. Dorsal (a), ventral (b), palmar (c), and plantar (d) views of Pulchrana fantastica, new species (MZB.Amph.28891, male, holotype, Aceh); (e–h) P. centropeninsularis (MZB.Amph.28767, male, Jambi); (i–l) P. siberu (BMNH 1979.306, male, holotype, Siberut). Scale bar = 10 mm. Photo by G. Cahyadi (a–h); U. Arifin (i–l).
Fig. 5 in A new species of the genus Pulchrana Dubois, 1992 (Amphibia: Ranidae) from Sumatra, Indonesia
Fig. 5. Plates comparing the three closely allied Sumatran Pulchrana species (a) P. fantastica, new species, MZB.Amph.28894, adult male, paratype, Aceh; (b) P. fantastica, new species, MZB.Amph.28943, juvenile, Aceh; (c) P. centropeninsularis, adult male, Jambi; (d) P. siberu, female, Pagai Selatan. Photo by U. Arifin (a, b, d); A. Jankowski (c).
Fig. 6 in The earthworm genus Polypheretima Michaelsen, 1934 (Annelida: Clitellata: Megascolecidae) from Sulawesi, Indonesia, with descriptions of four new species
Fig. 6. Polypheretima phacellotheca (Michaelsen, 1899). A, Spermathecal pores; B, Spermathecae (amp=ampulla, dv=diverticula); C, Male pore region (mp=opening of copulatory pouchs, gm=genital marking); D, Male pore region, lateral view; E, Prostate gland. Scale bar = 1 mm.
Fig. 4 in The earthworm genus Polypheretima Michaelsen, 1934 (Annelida: Clitellata: Megascolecidae) from Sulawesi, Indonesia, with descriptions of four new species
Fig. 4. Polypheretima elongatoides sp. nov., Holotype. A, Spermathecal pores; B, C, Spermathecae (amp=ampulla, dv=diverticulum); D, Male pores region (mp=opening of copulatory pouch, gm=genital marking, ventral view); E, Male pores region (lateral view); F, Prostate gland. Scale bar = 1 mm.
Fig. 2 in The earthworm genus Polypheretima Michaelsen, 1934 (Annelida: Clitellata: Megascolecidae) from Sulawesi, Indonesia, with descriptions of four new species
Fig. 2. Polypheretima cokelat sp. nov., Holotype. A, Spermathecal pores; B, Spermathecae (amp=ampulla, dv=diverticulum); C, Male pore region, ventral view (mp=opening of copulatory pouch, gm=genital markings); D, Male pore region, lateral view; E, Prostate gland. Scale bar = 1 mm.
Fig. 7 in The earthworm genus Polypheretima Michaelsen, 1934 (Annelida: Clitellata: Megascolecidae) from Sulawesi, Indonesia, with descriptions of four new species
Fig. 7. Polypheretima elongata (Michaelsen, 1872). A, Spermathecal pores; B, Spermathecae (amp=ampulla, dv=diverticulum); C, Male pore region, ventral view (mp=opening of copulatory pouchs, gm=genital marking); D, Male pore region, lateral view; E, Prostate gland. Scale bar = 1 mm.
Fig. 3 in The earthworm genus Polypheretima Michaelsen, 1934 (Annelida: Clitellata: Megascolecidae) from Sulawesi, Indonesia, with descriptions of four new species
Fig. 3. Polypheretima sahlani sp. nov., Holotype. A, Spermathecal pores; B, Spermathecae (amp=ampulla, dv=diverticulum); C, Male pore region, ventral view (mp=opening of copulatory pouch, gm=genital markings); D, Male pore region, lateral view; E, Prostate gland. Scale bar = 1 mm.
Fig. 5 in The earthworm genus Polypheretima Michaelsen, 1934 (Annelida: Clitellata: Megascolecidae) from Sulawesi, Indonesia, with descriptions of four new species
Fig. 5. Polypheretima kalimpaaensis sp. nov., Holotype. A, Spermathecal pores; B, Spermathecae (amp=ampulla, dv=diverticulum); C, Cocoon; D, Male pore region, ventral view (mp=opening of copulatory pouch, gm=genital marking); E, Male pore region, lateral view; F, Prostate gland. Scale bar = 1 mm (for A, B, D, E, F), 1 cm (for C).
Fig. 2 in The role of fruit bats in plant community changes in an urban forest in Indonesia
Fig. 2. Total number of fruit bats captured in this study from the UI urban forest. Species are abbreviated as follows: Cbr = C. brachyotis; Cho = C. horsfieldii; Cmi = C. minutus; Csp = C. sphinx; Cti = C. titthaecheilus; Mmi = M. minimus; Mso = M. sobrinus; Ram = R. amplexicaudatus.
Fig. S1 in The role of fruit bats in plant community changes in an urban forest in Indonesia
Fig. S1. Weak correlation between forearm length of fruit bats and the diameter of fruits consumed (Spearman's correlation test, r = 0.15, df = 175, p <0.05).
Fig. 3 in The role of fruit bats in plant community changes in an urban forest in Indonesia
Fig. 3. Association results from vcd between bats and plants. Strength of bat-plant associations are indicated by the height and colour of the bars (Zeileis et al. 2007). The thickness of each bar suggested the number of fruit bats used certain plant species. The length of the bar showed the general diet breath of each fruit bat species. Each of the plant species is represented by a number (1=Filicium decipiens, 2=Nephelium lappaceum, 3=Syzygium sp., 4=Morinda citrifolia, 5=Musa paradisiaca, 6=Pometia pinnata, 7=Cecropia sp., 8=Calliandra sp., 9=Muntingia calabura, 10=Ficus benjamina, 11=Mimusops elengi, 12=Ficus septica, 13=Roystonia regia,14= Acacia mangium,15=Microcos tomentosa, 16=Antidesma sp., 17=Gmelina arborea, 18=Ficus callosa, 19=Syzygium polyanthum, 20=Macaranga sp., 21=Swietenia mahagoni, 22=Ficus hispida, 23= F. racemosa, 24= F. excelsa, 25= F. binnendijkii, 26=Dyospiros sp.). Each of it has a single bar, which depicts the association strength with each of the bat species. The bar graph with darker blue and wider indicates strong association.
Fig. 1 in The role of fruit bats in plant community changes in an urban forest in Indonesia
Fig. 1. Location of the Universitas Indonesia urban forest in South Jakarta, which extends into Depok, Indonesia. Fruit bats connect plant population among green areas in Jakarta and West Java. a) Serengseng Forest; b) Ragunan Zoo Forest; c) Bogor Botanical Garden.
Fig. 7 in Mugilogobius hitam, a new species of freshwater goby (Teleostei: Gobioidei: Gobiidae) from Lake Towuti, central Sulawesi, Indonesia
Fig. 7. Sensory papillae rows on head of Mugilogobius hitam, new species, ZRC 54209, 42.5 mm SL female paratype (scales indicated only). A, lateral view; B, dorsal view.
Fig. 8 in Mugilogobius hitam, a new species of freshwater goby (Teleostei: Gobioidei: Gobiidae) from Lake Towuti, central Sulawesi, Indonesia
Fig. 8. Diagram of papillae rows on body and caudal fin of Mugilogobius hitam, new species, QM I.391271, 36.5 mm SL male paratype (scales omitted).
Fig. 5. Mugilogobius hitam, new species. A, MZB 21456 in Mugilogobius hitam, a new species of freshwater goby (Teleostei: Gobioidei: Gobiidae) from Lake Towuti, central Sulawesi, Indonesia
Fig. 5. Mugilogobius hitam, new species. A, MZB 21456, holotype, 43 mm SL male (photograph by S. Hüllen); B, ZRC 54209, paratype, 42.5 mm SL female (right side reversed) (photograph by H. H. Tan).
Fig. 1 in Mugilogobius hitam, a new species of freshwater goby (Teleostei: Gobioidei: Gobiidae) from Lake Towuti, central Sulawesi, Indonesia
Fig. 1. Map of the Malili Lakes in Sulawesi. The type locality of Mugilogobius hitam, new species, is denoted by an asterisk (modified Map © T. von Rintelen).
Fig. 2 in Mugilogobius hitam, a new species of freshwater goby (Teleostei: Gobioidei: Gobiidae) from Lake Towuti, central Sulawesi, Indonesia
Fig. 2. Type locality of Mugilogobius hitam, new species, at northern Lake Towuti, east of the mouth of Tominanga river (photograph by H.-G. Evers).
Fig. 1 in Assessing the potential for avifauna recovery in degraded forests in Indonesia
Fig. 1. NMDS ordination biplots of bird species (e.g., sp1) that show a significant difference in their densities between less and highly degraded forest with the habitat variables (text) superimposed. Bird species code: (sp1) yellow-bellied bulbul Alophoixus phaeocephalus; (sp2) hairy-backed bulbul Tricholestes criniger; (sp3) green iora Aegithina viridissima; (sp4) scaly-crowned babbler Malacopteron cinereum; (sp5) chestnut-rumped babbler Stachyris maculata; (sp6) rufous-tailed shama Trichixos pyrrhopygus; (sp7) blue-winged leafbird Chloropsis cochincinensis; (sp8) greater racket-tailed drongo Dicrurus paradiseus; (sp9) short-tailed babbler Malacocincla malaccensis; (sp10) black-capped babbler Pellorneum capistratum; (sp11) blue-eared barbet Psilopogon duvaucelii; (sp12) brown barbet Calorhamphus hayii; (sp13) black-headed bulbul Pycnonotus atriceps; (sp14) spectacled bulbul Pycnonotus erythropthalmos; (sp15) olive-winged bulbul Pycnonotus plumosus; (sp16) cream-vented bulbul Pycnonotus simplex; (sp17) sooty-capped babbler Malacopteron affine; (sp18) fluffybacked tit-babbler Macronous ptilosus; (sp19) purple-naped sunbird Hypogramma hypogrammicum.
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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.