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1,478 results for “Sulawesi”
FIG. 21 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation
FIG. 21. Images showing the ventral surface of the hind foot and dorsal surfaces of the tail base (approximately 1 cm from rump) and tail tip from the four members of the Rhoditis Group: A, Crocidura australis, MVZ 237610 (right hind foot); B, C. pallida, FMNH 210582 (left hind foot); C, C. pseudorhoditis, LSUMZ 39040 (right hind foot); and D, C. rhoditis, LSUMZ 39296 (left hind foot). Scale bars represent 5 mm. When two scale bars are present in a panel, the upper applies to the foot and the lower to the tail.
FIG. 11 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation
FIG. 11. Bivariate plot of the first two principal components from an analysis of 12 cranial measurements from the Elongata Subgroup. Loadings and variance explained are given in table 4.
FIG. 6 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation
FIG. 6. Distribution of Jukes-Cantor distances from a character matrix with 812 samples, 312 nucleotides of cytochrome b, and no missing data. Character sampling, and to a lesser extent taxon sampling, was reduced to eliminate missing data.
FIG. 9 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation
FIG. 9. Box plots showing variation in external measurements from all species of Sulawesi shrew. Plots show the median, 1st and 3rd quartiles, the maximum value within 1.5 × interquartile range (distance between 1st and 3rd quartiles; IQR), the minimum value within 1.5 × IQR, and outliers (black circles). Sample sizes are shown along the x-axis. Species are grouped according to the species groups used in the text (Thick = Thick- Tailed Group). All measurements in mm. HBL = head-and-body length.
FIG. 5 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation
FIG. 5. Maximum likelihood estimate of the mitochondrial gene tree derived from an analysis of 14,007 characters (representing protein-coding and rRNA genes) from 83 samples. Bootstrap support values <95 are shown at nodes. Tips are labeled with the species, locality, and voucher number.
FIG. 2 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation
FIG. 2. Drawings of the skull of a Crocidura from a dorsal (upper), occlusal (middle), and lateral (lower) view showing the 12 cranial dimensions we analyzed.
FIG. 3 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation
FIG. 3. Plot of the elevational distribution of samples from each of the 12 mountains that comprise the bulk of specimens we examined. Each point represents the median elevation of a specimen we examined. The sample distribution from Mt. Gandang Dewata includes specimens from Salu Tiwo (~200 m). The number of specimens used from each mountain is given above the x-axis and the peak elevation of each mountain is shown on the x-axis.
Fig. 2 in New species and new record of the genus Amynthas Kinberg, 1867 (Oligochaeta: Megascolecidae) from Sulawesi, Indonesia
Fig. 2. Amynthas triatmowidii, new species, holotype, MZB. Oli 0067. A, spermathecal pores (sp) B, spermathecae, right side in vii–ix (amp = ampulla; dv = diverticulum) C, prostate gland D, male pore region (mp = male pore) E, intestinal caecum. Scale bars = 1 mm.
Fig. 1 in New species and new record of the genus Amynthas Kinberg, 1867 (Oligochaeta: Megascolecidae) from Sulawesi, Indonesia
Fig. 1. The map of Lake Kalimpa'a in Lore Lindu National Park, Sulawesi (a solid circle indicates the sampling locality).
Fig. 3 in New species and new record of the genus Amynthas Kinberg, 1867 (Oligochaeta: Megascolecidae) from Sulawesi, Indonesia
Fig. 3. Amynthas castaneus from Lore Lindu National Park, Central Sulawesi (UNTAD. Oli 0014). A, spermathecal pores (sp) B, spermathecae, right side in vii–ix (amp = ampulla; dv = diverticulum) C, prostate gland D, male pore region (mp = male pore, gm = genital markings) E, intestinal caecum. Scale bars = 1 mm.
Figure 3. Aerides houlletiana Rchb.f in A NEW SPECIES OF AERIDES (AERIDINAE: ORCHIDACEAE) FROM SULAWESI, INDONESIA
Figure 3. Aerides houlletiana Rchb.f. Lip (mid-lobe and side lobes): A, in natural shape (viewed from above); B, longitudinal section (side view). Photographs: Alfajaruddin.
Figure 2. Aerides obyrneana Metusala. A in A NEW SPECIES OF AERIDES (AERIDINAE: ORCHIDACEAE) FROM SULAWESI, INDONESIA
Figure 2. Aerides obyrneana Metusala. A, Inflorescence; B and C, flower with lip in natural shape (oblique views); D, flower, natural shape (back view); E, lip, mid-lobe and side lobes, natural shape. Photographs: Destario Metusala.
Figure 1 in A NEW SPECIES OF AERIDES (AERIDINAE: ORCHIDACEAE) FROM SULAWESI, INDONESIA
Figure 1. Aerides obyrneana Metusala, sp. nov. A, Habit; B, sepals and petals (DS, dorsal sepal; LS, lateral sepal; P, petal); C, lip in natural shape (viewed from above); D, lip mid-lobe, flattened; E, flower in natural shape (front view); F, flower in natural shape (side view); G, anther cap (front and side views); H, column and foot (left, side view; right, ventral view); I, two examples of the leaf apex; J, lip, longitudinal section, natural shape (side view). Drawn from living specimen and spirit collection (holotype RIO 62) by Destario Metusala.
Figure 4. Begonia kabaenensis D.C in THREE NEW SPECIES OF BEGONIA FROM THE OUTER ISLANDS OF SOUTHEASTERN SULAWESI
Figure 4. Begonia kabaenensis D.C.Thomas & Ardi, sp. nov. A, Habit in situ; B, stipule; C, male inflorescence; D, male flower (front view); E, female inflorescence; F, bract; G, female flowers (front and side views); H, fruit; I, ovary (cross-section). All photographs of W.H. Ardi WI769, taken by W. H. Ardi.
Figure 1. Begonia batusangiensis Ardi & D.C in THREE NEW SPECIES OF BEGONIA FROM THE OUTER ISLANDS OF SOUTHEASTERN SULAWESI
Figure 1. Begonia batusangiensis Ardi & D.C.Thomas, sp. nov. A, Habit; B, stipule; C, leaf lamina (abaxial surface); D, male inflorescence; E, bracts of male inflorescence; F, male flower; G, androecium; H, female flower (side view); I, female flower (front view); J, ovary (cross-section); K, fruit. Photographs: A–J (W.H. Ardi WI767), W. H. Ardi; K, Arman.
Figure 3 in THREE NEW SPECIES OF BEGONIA FROM THE OUTER ISLANDS OF SOUTHEASTERN SULAWESI
Figure 3. Map showing the distribution of Begonia batusangiensis, B. kabaenensis and B. labengkiensis.
Figure 5. Begonia labengkiensis Ardi & D.C in THREE NEW SPECIES OF BEGONIA FROM THE OUTER ISLANDS OF SOUTHEASTERN SULAWESI
Figure 5. Begonia labengkiensis Ardi & D.C.Thomas, sp. nov. A, Habit; B, stipule; C, leaf lamina (abaxial surface); D, male inflorescence; E, female flower (front view); F, female flower with bracts; G and H, fruits; I, middle part of ovary (cross-section). All photographs of W.H. Ardi WI773, taken by W. H. Ardi.
Figure 2. Begonia batusangiensis Ardi & D.C in THREE NEW SPECIES OF BEGONIA FROM THE OUTER ISLANDS OF SOUTHEASTERN SULAWESI
Figure 2. Begonia batusangiensis Ardi & D.C.Thomas, sp. nov. (A) and B. labengkiensis Ardi & D.C.Thomas, sp. nov. (B) in their natural habitats. Photographs: A (Arman s.n.), Arman; B (W.H.Ardi WI773), W. H. Ardi.
Figure 2 in DNA barcoding of two amphidromous goby postlarvae ('penja') morphotypes from Mandar River, West Sulawesi, Indonesia
Figure 2. – Neighbour-joining phylogenetic tree of amphidromous gobiid post-larvae ('penja') from the Mandar River based on Cytochrome oxydase I (COI) sequences.
Figure 3 in DNA barcoding of two amphidromous goby postlarvae ('penja') morphotypes from Mandar River, West Sulawesi, Indonesia
Figure 3. – Penja gobiid post-larvae from the Mandar River: A. 'penja alus' (Stiphodon semoni), B. 'penja mawassar' (Sicyopterus longifilis).
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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)
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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.