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1,478 results for “Sulawesi”
FIGURE 6. A, D, G, Parasesarma rahayuae n in Phylogenetic evidence and morphological diagnosis for a new species of Parasesarma De Man, 1895 (Decapoda, Brachyura, Sesarmidae) from Sulawesi, Indonesia
FIGURE 6. A, D, G, Parasesarma rahayuae n. sp., paratype, male (11.32 mm × 9.6 mm) ZRC 2019.1055, Manado; B, E, H, P. anambas Yeo, Rahayu & Ng, 2004, paratype male (7.9 mm × 6.3 mm) ZRC 2003.0726, Pulau Siantan; C, F, I, P. gemmatum Li, Shih & Ng, 2019, male (11.9 mm × 10.1 mm) ZRC 2023.0256, Cebu. A‒C, dorsal view; B‒F, apical corneous part, upper view; G‒I, apical corneous part, front view.
FIGURE 4. Parasesarma rahayuae n in Phylogenetic evidence and morphological diagnosis for a new species of Parasesarma De Man, 1895 (Decapoda, Brachyura, Sesarmidae) from Sulawesi, Indonesia
FIGURE 4. Parasesarma rahayuae n. sp., paratype, ovig. female (11.9 mm × 9.77 mm) ZRC 2019.1055, Manado. A, dorsal habitus; B, pleon, ventral view, C, vulvae, ventral view; D, left chela, outer view.
FIGURE 3. Parasesarma rahayuae n in Phylogenetic evidence and morphological diagnosis for a new species of Parasesarma De Man, 1895 (Decapoda, Brachyura, Sesarmidae) from Sulawesi, Indonesia
FIGURE 3. Parasesarma rahayuae n. sp., paratype, male (11.32 mm × 9.6 mm), ZRC 2019.1055, Manado: A, dorsal habitus; B, merus, inner surface; C, right cheliped dactylus, dorso-external view; D, right palm secondary pectinated crest, frontal view; E, right G1, full dorsal view; F, right G1 distal tip, dorsal view; G, right G1 front view of apical corneous part, H, right G1 upper view of apical corneous part.
FIGURE 2. Parasesarma rahayuae n in Phylogenetic evidence and morphological diagnosis for a new species of Parasesarma De Man, 1895 (Decapoda, Brachyura, Sesarmidae) from Sulawesi, Indonesia
FIGURE 2. Parasesarma rahayuae n. sp., holotype, male (11.47 mm ×10.11 mm), MZB 5709 (ex. ZRC 2019.1055), Manado: A, dorsal habitus; B, ventral habitus; C, carapace, dorsal view; D, frontal view; E, left chela, dorsal view; F, left chela, outer view; G, cheliped dactylar tubercles, dorsal view; H, cheliped dactylar tubercles, outer view; I, ambulatory leg, right P4, dorsal view; J, pleonal somites 1 and 2, posteroventral view.
FIGURE 1. A in Phylogenetic evidence and morphological diagnosis for a new species of Parasesarma De Man, 1895 (Decapoda, Brachyura, Sesarmidae) from Sulawesi, Indonesia
FIGURE 1. A, maximum likelihood (ML) phylogenetic consensus tree of Parasesarma based on the COX1 gene and constructed in raxml GUI. Parasesarma pictum (De Haan, 1835) and P. tripectinis (Shen, 1940) were used as outgroup (numbers on the branches correspond to bootstrap value), black arrow indicates clade of P. rahayuae n. sp.; B, maximum parsimony haplotype network (COX1 gene, 628 bp) of close congeners, P. anambas Yeo, Rahayu & Ng, 2004, P. gemmatum Li, Shih & Ng, 2019, and P. rahayuae n. sp., constructed with PopART (the numbers and hatch marks refer to mutational steps).
FIGURE 4 in A new high elevation species of Oreophryne Boettger (Anura: Microhylidae) from Sulawesi, Indonesia
FIGURE 4. Oreophryne riyantoi sp. nov., holotype, MZB. Amph. 17494. (A) Dorsal view, (B) ventral view, (C) lateral and dorsal view of head, (D) ventral view of right foot and right hand. Scale = 5 mm.
FIGURE 3 in A new high elevation species of Oreophryne Boettger (Anura: Microhylidae) from Sulawesi, Indonesia
FIGURE 3. Live specimen of Oreophryne riyantoi sp. nov. (A–B) holotype, MZB. Amph 17494. (C–D) Paratype MZB Amph. 17493. Photographed at 2528 m asl near the summit of Mount Mekongga by W.T.L.
FIGURE 1 in A new high elevation species of Oreophryne Boettger (Anura: Microhylidae) from Sulawesi, Indonesia
FIGURE 1. Map showing the known locality of Oreophryne riyantoi sp. nov. and the type localities of all other congeners in Sulawesi (from Müller 1894; Boulenger 1896; Ahl 1933).
FIGURE 2 in A new high elevation species of Oreophryne Boettger (Anura: Microhylidae) from Sulawesi, Indonesia
FIGURE 2. Phylogenetic tree inferred from ML (left) and BI tree (right) from 337 bp of 16S ribosomal RNA mitochondrial gene sequences. Numbers on branches represent bootstrap value for ML and Bayesian Inference posterior probability.
Data from: The biogeography of Sulawesi revisited: is there evidence for a vicariant origin of taxa on Wallace’s “anomalous island”?
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Data from: Evolutionary history of endemic Sulawesi squirrels constructed from UCEs and mitogenomes sequenced from museum specimens
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Data from: Adaptive radiation and ecological opportunity in Sulawesi and Philippine fanged frog (Limnonectes) communities.
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Data from: Contributions of bats to the local economy through durian pollination in Sulawesi, Indonesia
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Fig. 3 in Four new species and new records of Manota (Diptera: Mycetophilidae) from Sulawesi, Indonesia
Fig. 3. Manota loriculata sp. nov. (A, D – paratype; B, C – holotype). A – hypopygium, dorsal view; B – hypopygium, ventral view; C – gonostylus, dorsal view; D – hypoproct and aedeagus, ventral view. Scale 0.10 mm.
Fig. 2 in Four new species and new records of Manota (Diptera: Mycetophilidae) from Sulawesi, Indonesia
Fig. 2. Manota axillata sp. nov. (holotype). A – hypopygium, dorsal view; B – hypopygium, ventral view; C – gonostylus, dorsal view; D – hypoproct and aedeagus, ventral view. Scale 0.10 mm.
Fig. 1 in Four new species and new records of Manota (Diptera: Mycetophilidae) from Sulawesi, Indonesia
Fig. 1. Manota ashleyi sp. nov. (A, D – paratypes, B, C – holotype).A – hypopygium, dorsal view; B – hypopygium, ventral view; C – gonostylus, dorsal view; D – hypoproct and aedeagus, ventral view. Scale 0.10 mm. 1 = sternite 9, 2 = tergite 9, 3 = gonocoxa, 4 = ventral medial margin of gonocoxa, 5 = dorsal medial margin of gonocoxa, 6 = gonostylus, 7 = parastylar lobe, 8 = juxtagonostylar megaseta, 9 = sockets of juxtagonostylar setae, 10 = basal body of juxtagonostylar setae, 11 = paraapodemal lobe, 12 = gonocoxal apodeme, 13 = cercus, 14 = ventral part of hypoproct (sternite 10), 15 = aedeagus, 16 = lateral shoulder of aedeagus, 17 = ventrad curved apex of aedeagus, 18 = aedeagal apodeme.
Figs 20–34. 20–24 in A review of Scaphisomatini from Sulawesi, with descriptions of ten new species (Coleoptera: Staphylinidae: Scaphidiinae)
Figs 20–34. 20–24 – Scaphisoma ogawai sp. nov.: 20 – gonocoxite; 21 – male tergite 9; 22, 23 – aedeagus in dorsal and lateral views; 24 – paramere in ventral view. 25–27 – S. flavolineatum sp. nov.: 25 – male tergite 9; 26, 27 – aedeagus in dorsal and lateral views. 28–30 – S. pellax sp. nov.: 28, 29 – aedeagus in dorsal and lateral views; 30 – male tergite 9. 31–34 – S. sumpichi sp. nov.: 31, 32 – aedeagus in dorsal and lateral views; 33 – male tergite 9; 34 – gonocoxite. Scale bars: 0.1 mm (Figs 20, 28–29, 34); 0.2 mm (Figs 21–27, 30–32); 0.3 mm (Fig. 33).
Figs 50–53 in A review of Scaphisomatini from Sulawesi, with descriptions of ten new species (Coleoptera: Staphylinidae: Scaphidiinae)
Figs 50–53. Habitus of Scaphisoma. 50, 51 – S. ancora sp. nov. (50 – male, 51 – female); 52 – S. sumpichi sp. nov., male; 53 – S. versicoloreum sp. nov., male.
Figs 1–19. 1–5 in A review of Scaphisomatini from Sulawesi, with descriptions of ten new species (Coleoptera: Staphylinidae: Scaphidiinae)
Figs 1–19. 1–5 – Baeocera inoptata sp. nov.: 1 – antennomeres 3 to 10; 2–4 – aedeagus in ventral, lateral and dorsal views (laterally impressed basal buld is an artefact), scale 0.2 mm; 5 – gonocoxite. 6–12 – Scaphisoma ancora sp. nov.: 6, 7 – aedeagus in dorsal and lateral views; 8 – male protibia and protarsus in lateral view; 9 – male mesotibia in lateral view; 10 – male ventrite 6; 11 – male tergite 9; 12 – gonocoxite. 13–19 – S. hulai sp. nov.: 13 – male tergite 9; 14 – male protarsus in dorsal view; 15 – male mesotarsus; 16, 17 – aedeagus in ventral and lateral views; 18 – male ventrite 6; 19 – gonocoxite. Scale bars: 0.1 mm (Figs 1, 5, 12, 19); 0.2 mm (Figs 2–4, 6–9, 14–17); 0.3 mm (10–11, 13, 18).
Figs 35–49. 35–39 in A review of Scaphisomatini from Sulawesi, with descriptions of ten new species (Coleoptera: Staphylinidae: Scaphidiinae)
Figs 35–49. 35–39 – Scaphisoma versicoloreum sp. nov.: 35, 36 – aedeagus in dorsal and lateral views; 37 – internal sac of aedeagus; 38 – male tergite 9; 39 – gonocoxite. 40–46 – S. carinatum sp. nov.: 40 – male tergite 9; 41 – apical process of aedeagal median lobe in lateral view; 42 – tip of apical process in ventral view; 43, 44 – aedeagus in dorsal and lateral views; 45 – parameres in ventral view; 46 –internal sac of aedeagus. 47–49 – Scaphobaeocera jirkai sp. nov.: 47, 48 – aedeagus in dorsal and lateral views; 49 – gonocoxite. Scale bars: 0.1 mm (Figs 37, 39, 41–42, 46–49); 0.2 mm (Figs 35–36, 43–45); 0.3 mm (Figs 38, 40).
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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.