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Fig. 2 in Population size, demography and diet of the Siamese crocodile, Crocodylus siamensis (Schneider, 1801) in the Mesangat Swamp in Kalimantan, Indonesia
Fig. 2. Code for cut tail scutes on Crocodylus siamensis in Danau Mesangat (modified after Kay, 2004).
Fig. 7 in A new genus and a new species of onchidiid slugs from eastern Indonesia (Gastropoda: Euthyneura: Onchidiidae)
Fig. 7. Reproductive system, Alionchis jailoloensis, Indonesia, Halmahera [5023] (UMIZ 00118). A, Posterior, hermaphroditic parts, scale bar = 3 mm; B, Anterior, male copulatory parts, scale bar = 3 mm. Abbreviations: dd, deferent duct; fgm, female gland mass; hd, hermaphroditic duct; hg, hermaphroditic gland; ov, oviduct; pb, penis bulb-like tip; ps, penial sheath; rm, penial retractor muscle; rs, receptaculum seminis; sp, spermatheca; v, vestibule.
Fig. 5 in A new genus and a new species of onchidiid slugs from eastern Indonesia (Gastropoda: Euthyneura: Onchidiidae)
Fig. 5. External morphology, digestive system, and nervous system, Alionchis jailoloensis. A, Ventral, anterior view, scale bar = 5 mm [5023] (UMIZ 00118); B, Ventral, posterior view, scale bar = 3 mm [5028] (UMIZ 00120); C, Digestive system (type III), dorsal view, scale bar = 4 mm [6084] (UMIZ 00118); D, Stomach, dorsal view, scale bar = 3 mm, same as C; E, Digestive system (type II), dorsal view, scale bar = 3 mm, same as B; F, Digestive system (intermediate between type II and type III), dorsal view, scale bar = 4 mm, same as A; G, Nervous system, dorsal view, scale bar = 1 mm [5093] (UMIZ 00118). Abbreviations: a, anus; ddg, dorsal lobe of digestive gland; e, esophagus; f, foot; fo, female opening; hn, hyponotum; i, intestine; lcg, left cerebral ganglion; lplg, left pleural ganglion; mo, male opening; oddg, opening of the dorsal lobe of the digestive gland; ol, oral lobe; opdg, opening of the posterior lobe of the digestive gland; ot, oral tentacle; pdg, posterior lobe of the digestive gland; pn, pneumostome; ppg, peripodial groove; r, rectum; rcg, right cerebral ganglion; rplg, right pleural ganglion; st, stomach; st1, stomach chamber 1; st2, stomach chamber 2; st3, stomach chamber 3; st4, stomach chamber 4; tb, transversal bump; vg, visceral ganglion.
Fig. 6 in A new genus and a new species of onchidiid slugs from eastern Indonesia (Gastropoda: Euthyneura: Onchidiidae)
Fig. 6. Radula, Alionchis jailoloensis, Indonesia, Halmahera. A, Rachidian and innermost lateral teeth, scale bar = 20 μm [5023] (UMIZ 00118); B, Lateral teeth with rachidian teeth, scale bar = 20 μm [5093] (UMIZ 00118); C, Left lateral teeth, scale bar = 50 μm, same as A; D, Right lateral teeth, scale bar = 50 μm, same as B; E, Outermost lateral teeth, scale bar = 40 μm,, same as B; F, Underside of lateral teeth, scale bar = 20 μm, same as A. Abbreviations: 1llt, first, left, lateral tooth; 1rlt, first, right, lateral tooth; 2llt, second, left, lateral tooth; 2rlt, second, right, lateral tooth; bls, basal lateral spine; hlt, hook of lateral tooth; lc, lateral cusp of rachidian tooth; mc, median cusp of rachidian tooth; rt, rachidian tooth.
Fig. 4 in A new genus and a new species of onchidiid slugs from eastern Indonesia (Gastropoda: Euthyneura: Onchidiidae)
Fig. 4. Live specimens, Alionchis jailoloensis, Indonesia, Halmahera. A, Dorsal view, 63 mm long [#1], station 208 (UMIZ 00118); B, Dorsal view, 48 mm long [5040], station 208 (UMIZ 00118); C, Dorsal view, holotype, 43 mm long [5137], station 218 (UMIZ 00117); D, Dorsal view, 64 mm long [5135], station 218 (UMIZ 00119); E, Dorsal view (the arrow points to the pneumostome), same as A; F, Dorsal view, 51 mm long [5039], station 208 (UMIZ 00118); G, Dorsal view, 61 mm long [5028], station 219 (UMIZ 00120); H, Lateral view, 69 mm long [6083], station 219 (UMIZ 00120); I, Ventral view, 33 mm long [5136], station 218 (UMIZ 00119); J, Ventral view, 45 mm long [5023], station 208 (UMIZ 00118).
Fig. 2 in A new genus and a new species of onchidiid slugs from eastern Indonesia (Gastropoda: Euthyneura: Onchidiidae)
Fig. 2. Phylogenetic tree showing relationships between individuals of Alionchis jailoloensis based on ITS2 sequences. Numbers above branches are the bootstrap values (Maximum Likelihood analysis) and below are the posterior probabilities (Bayesian analysis); only significant numbers (>80% and>0.9) are indicated. All other sequences serve as outgroups. Information on individually-identified specimens can be found in the list of material examined.
Fig. 1 in A new genus and a new species of onchidiid slugs from eastern Indonesia (Gastropoda: Euthyneura: Onchidiidae)
Fig. 1. Phylogenetic tree showing relationships between individuals of Alionchis jailoloensis based on COI and 16S sequences. Numbers above branches are the bootstrap values (Maximum Likelihood analysis) and below are the posterior probabilities (Bayesian analysis); only significant numbers (>80% and>0.9) are indicated. All other sequences serve as outgroups. Information on individually-identified specimens can be found in the list of material examined.
Fig. 3 in A new genus and a new species of onchidiid slugs from eastern Indonesia (Gastropoda: Euthyneura: Onchidiidae)
Fig. 3. Habitats for Alionchis jailoloensis, Indonesia, Halmahera. A, Mangrove by the beach, soft mud with Rhizophora, Avicennia and Nypa (station 208); B, Close up of the mud and roots (station 208); C, Sonneratia and Rhizophora mangrove near a creek (station 218); D, Close up of the mud and roots (station 218).
FIG. 3. — Kaisquilla laevis n. gen., n in Stomatopoda (Crustacea) of the KARUBAR Expedition in Indonesia
FIG. 3. — Kaisquilla laevis n. gen., n. sp., holotype (MNHN); A, anterior cephalon, dorsal; B, TS5-8, right dorsal; C, TS8 sternal keel, right lateral; D, AS5-6, telson and uropod, dorsal; E, uropod, right ventral; F, PLP1 endopod, right anterior. Scale bar: A-E, 1.25 mm; F, 0.6 mm.
FIG. 2. — Kasim karubar n in Stomatopoda (Crustacea) of the KARUBAR Expedition in Indonesia
FIG. 2. — Kasim karubar n. sp., holotype (MNHN); A, anterior cephalon, dorsal; B, eye, right dorsal; C, raptorial claw, right lateral; D, TS5-8, right dorsal; E, AS5-6, telson and uropod, dorsal; F, telson, ventral; G, uropod, right ventral; H-J, pereiopods 1-3, right posterior; K, PLP1 endopod, right anterior; L, TS8 sternal keel, right lateral. Scale bar: A-J, 1.25 mm; K, L, 0.6 mm.
FIG. 1 in Stomatopoda (Crustacea) of the KARUBAR Expedition in Indonesia
FIG. 1. — Alainosquilla foresti Moosa, 1991, tl 20 mm; A, anterior cephalon, dorsal; B, raptorial claw, right lateral; C, TS5-8, right dorsal; D, AS5-6, telson and uropod, dorsal; E, uropod, right ventral; F, telson, right lateral. Scale bar: 0.5 mm.
FIG. 4. — Neosarmatium bidentatum n in Two new species of mangrove crabs of the genus Neosarmatium Serène & Soh, 1970 (Decapoda, Brachyura, Sesarmidae) from Papua, Indonesia
FIG. 4. — Neosarmatium bidentatum n. sp., paratype ♂ 20.0 × 18.0 mm, Indonesia (QM): A, carapace antero-lateral region; B, left cheliped; C, left third maxilliped (setae removed); D, abdomen; E-H, male left first gonopod (setae removed); E, F, ventral view; G, H, lateral view. Scale bars: A, B, D, 5 mm; C, E, G, 1 mm; F, H, 0.5 mm.
FIG. 1. — Neosarmatium papuense n in Two new species of mangrove crabs of the genus Neosarmatium Serène & Soh, 1970 (Decapoda, Brachyura, Sesarmidae) from Papua, Indonesia
FIG. 1. — Neosarmatium papuense n. sp., paratype ♂ 15.5 × 13.0 mm, Indonesia (ZRC): A, dorsal view; B, carapace; C, frontal view; D, dorsal dactylar tubercles of cheliped; E, frontal view of chela; F, ventral view.
FIG. 3. — Neosarmatium bidentatum n in Two new species of mangrove crabs of the genus Neosarmatium Serène & Soh, 1970 (Decapoda, Brachyura, Sesarmidae) from Papua, Indonesia
FIG. 3. — Neosarmatium bidentatum n. sp., holotype ♂ 20.0 × 18.0 mm, Indonesia (QM): A, dorsal view; B, carapace; C, frontal view; D, dorsal dactylar tubercles of cheliped; E, frontal view of chela; F, dorsal view of top of palm showing low granular crest on inner face.
FIG. 2. — Amarinus pristes n in The Hymenosomatidae (Crustacea, Decapoda, Brachyura) of Timika (Irian Jaya, Indonesia)
FIG. 2. — Amarinus pristes n. sp.; A-F, holotype 4.2 × 4.3 mm (MZB); G, H, paratype 5.5 × 5.7 mm (ZRC 2002.596); A, G, carapace; B, left third maxilliped; C, right cheliped; D, left third pereiopod; E, abdomen; F, right G1; G, abdomen. Scale bars: 1.0 mm.
FIG. 1. — Neorhynchoplax elongata n in The Hymenosomatidae (Crustacea, Decapoda, Brachyura) of Timika (Irian Jaya, Indonesia)
FIG. 1. — Neorhynchoplax elongata n. sp., holotype 2.7 × 4.0 mm (MZB); A, carapace; B, left third maxilliped; C, abdomen; D, right cheliped; E, left third pereiopod. Scale bars: 1.0 mm.
Figs. 19–30 in Kartika Dewi, Hideo Hasegawa & Mitsuhiko Asakawa (2014) Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera. Raffles Bulletin of Zoology 62: 647-654
Figs. 19–30. Syphacia (Segienamsyphacia) yuniae, new species from Eropeplus canus in south Sulawesi, Indonesia. 19, male, holotype, lateral view; 20, cephalic end of male, apical view; 21, midbody in cross section of male; 22, midbody in cross section of male, higher magnification; 23, posterior portion of male, ventral view; 24, posterior portion of male; lateral view; 25, spicule and gubernaculum, lateral view; 26, female, lateral view; 27, cephalic end of female, apical view; 28, midbody in cross section of female; 29, egg; 30, excretory pore and vulva, showing poorly developed vagina
The Eclipse Between Us, by Muhammad Rayhan, Indonesia
<p>Second place in the 2021 IAU OAE Astrophotography Contest, category Total lunar eclipse.</p> <p>Total lunar eclipses belong to the rather spectacular celestial events and can be observed easily with and without a telescope. Here we see the stages of the total lunar eclipse of 31.1.2018 photographed in Indonesia: starting with the entry of the full moon disk into Earth's round umbra, the totality as Blood Moon, and the beginning of the Moon's exit from Earth's umbra until moonset.</p> <p>Credit: Muhammad Rayhan/IAU OAE</p>
Figure 7 in Electrophoretic delineation of species boundaries within the genus Chelodina (Testudines: Chelidae) of Australia, New Guinea and Indonesia
Figure 7. The phylogeny most strongly supported by our electrophoretic data. Note that C. reimanni and C. novaeguineae could not be separated electrophoretically, but we retain them as separate on the basis of morphological evidence (Philippen & Grossman, 1990; Rhodin, 1994a). The symbols + show the progressive development of robusticity in both the skull and triturating surfaces.
Figure 6 in Electrophoretic delineation of species boundaries within the genus Chelodina (Testudines: Chelidae) of Australia, New Guinea and Indonesia
Figure 6. The best-supported phylogeny for the Chelodina prior to the present electrophoretic study (Burbidge et al., 1974; Rhodin & Mittermeier, 1976; Georges & Adams, 1992; Rhodin, 1994a,b). The root was chosen on the basis of evidence presented by Georges & Adams (1992), Seddon et al. (1997) and Georges et al. (1998). This phylogeny serves as the working hypotheses against which to compare our data. Only those taxa we regard to be species are included.
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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)
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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.
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.