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FIGURE 3 in Rediscover of the Iranian endemic alpine Arenaria bulica after 139 years and note of the related species (Caryophyllaceae)
FIGURE 3. Holotype of Arenaria semiromica (TARI31703). Photo by A. Nejad Falatoury.
FIGURE 5 in Crassothonna moniliformis (Asteraceae, Senecioneae), a new species from the Albany Centre of floristic endemism, South Africa
FIGURE 5. Known distribution of Crassothonna moniliformis.
FIGURE 4 in Redescription and reevaluation of the extinction risk of Plinia renatiana (Myrtaceae), a species endemic to the state of Espírito Santo, Brazil
FIGURE 4. Geographic distribution of Plinia renatiana G.M.Barroso & Peixoto.
Figure 1 in Multilocus phylogeny and morphological analyses illuminate overlooked diversity of Soriculus (Mammalia: Eulipotyphla: Soricidae), with descriptions of two new endemic species from the eastern Himalayas
Figure 1. Sample localities of specimens used in the phylogenetic analysis.
Fig. 58. Hoplopleura ileile, female. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 58. Hoplopleura ileile, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.
Fig. 57. Hoplopleura heinrichi, female. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 57. Hoplopleura heinrichi, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.
Fig. 60 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 60. Valley of Danau Lindu, 1000 m, in the northern highlands of the western mountain block of Sulawesi's central core. Part of Tomado village is in the foreground on the shore of a small cove. Tropical lowland evergreen rain forest is at lake level and mantles hillsides of the closer ridges. Upper slopes and summits in the background are clothed in montane forest formations. The large, red tree squirrel Rubrisciurus rubriventer lives in intact forest near the lake and in forests on the ridges to about 1500 m. Montane forests on the upper slopes and summits of the higher ridges (Gunung Nokilalaki is the farthest ridge seen in the background), support one ground squirrel, Hyosciurus heinrichi, which abuts the range of the other ground squirrel H. ileile at 1400–1500 m, and that species, while uncommon, occurs throughout the region at lower altitudes. The tree squirrels Prosciurillus topapuensis and P. murinus inhabit all oldgrowth habitats, from lakeside to tops of the highest ridges. Photographed in 1976.
Fig. 53. Hoplopleura murinus, female. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 53. Hoplopleura murinus, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.
Fig. 44. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 44. A closer look at the squirrel shown in figure 43, just as it was fleeing the confines of the cage.
Fig. 42 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 42. Habitat of Hyosciurus heinrichi in upper montane forest on Gunung Nokilalaki, 2256 m. Traps set on top and beneath the rotting log in foreground took examples of H. heinrichi, which is common on the summit and upper slopes in this mossy, wet and cold forest. Photographed in 1975.
Fig. 48. Hoplopleura leucomus, female. A in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 48. Hoplopleura leucomus, female. A, dorsoventral view; B, thoracic sternal plate; C, D, paratergal plates showing slight variation between specimens from two geographic regions (C is from the holotype louse from Labuan Sore in Central Sulawesi, D is from a louse specimen from Rurukan in north Sulawesi); E, genitalia.
Fig. 38 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 38. Specimen scores representing population samples of Hyosciurus heinrichi (filled circle, Gunung Kanino and Gunung Nokilalaki; N 5 35) and H. ileile (filled triangle, Sungai Sadaunta, Gunung Kanino, and Sungai Tolewonu; N 5 11) projected onto the first and second principal components extracted from principal-components analysis. Each ellipse outlines 95% confidence limits for specimen scores of each cluster. Equations for the regression lines are: H. ileile, Y 5 20.121X+0.095 (F 5 3.20, P 5,0.10); H. heinrichi, Y 5 20.213X20.033 (F 5 18.96, P 5,0.001). The regression lines of the second principal component on the first are unambiguously distinct: their Y-intercepts are significantly different (+0.095 versus 20.033; F 5 15.38, P 5,0.001), but not their slopes (20.121 versus 20.213; F 5 1.16, P 5 0.288). The distribution of scores along the first axis is strongly influenced by length of tail, and the single point for H. ileile and the two for H. heinrichi situated far to the left of the main clouds of scores represent specimens with the shortest tails in the samples; the tails are naturally short, not damaged in traps or mangled by a predator and subsequently healed. Data were derived only from specimens captured and measured by Musser. See table 46 for correlations and percent variance.
Fig. 31 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 31. Specimen scores representing Prosciurillus murinus (filled circle; N 5 57) and P. abstrusus (filled triangle; N 5 14) projected onto the first and second principal components extracted from principalcomponents analysis. Arrow identifies holotype of abstrusus. See table 39 for correlations and percent variance.
Fig. 29. Subfossil fragment from a in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 29. Subfossil fragment from a right dentary of Prosciurillus sp. (AMNH 269955) from Ulu Leang I, a cave about 40 km northeast of Ujung Pandang in the Maros region near the tip of Sulawesi's southwestern peninsula. Size of the fragment fits with dentaries typical of species in the Prosciurillus leucomus group, which in this figure is represented by P. alstoni (bottom labial and lingual views, AMNH 101331) from Wawo in the southeastern peninsula (see gazetteer and fig. 11 for Prosciurillus sp. and P. alstoni), and not the smaller-bodied P. murinus (top set, AMNH 101388), represented here by a sample from Lombasang on the flank of Gunung Lompobatang, east of the Maros region on the southwestern peninsula (see gazetteer and map in fig. 30 for P. murinus). All views are X2. Additional information is presented in the text and table 33.
Fig. 3 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 3. The northern portion of Sulawesi's central core showing the two regions where Musser worked, the Danau Lindu (left dashed square) and Malakosa (right dashed square) areas. Three of H.C. Raven's sites where he collected squirrels are also on the map: Gunung Lehio, southwest of Kulawi; Pinedapa, west of Mapane; Rano Rano, in the mountains west of Pinedapa. Enlargement of the Danau Lindu area is shown in figure 4 on the opposite page. Figure 17 shows an enlargement of the Malakosa area.
Fig. 17 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 17. The region south of Malakosa in Sulawesi's central core, which shows Musser's two lowland camps (Kuala Navusu, Sungai Tolewonu) in lowland tropical evergreen rain forest (see the map in fig. 3 for geographic orientation within the geographically broader northern portion of the central core). Rubrisciurus rubriventer, Prosciurillus alstoni, and P. murinus were common in this region; Hyosciurus ileile also occurs here but was infrequently encountered. We designated Kuala Navusu as the type locality of Prosciurillus alstoni.
Fig. 6 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 6. Views of skull and dentary of an adult male Rubrisciurus rubriventer (AMNH 226053) from Kuala Navusu (30 m) in the central core of Sulawesi. Occipitonasal length 5 67.4 mm.
Fig. 9 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 9. Reproduction of Meyer's (1896) color plate showing ''Sciurus leucomus'' (5 Prosciurillus leucomus) at the top, ''Sciurus tonkeanus'' (5 Prosciurillus alstoni) in the center, ''Sciurus rosenbergii'' (5 Prosciurillus rosenbergii) on the bottom right and ''Sciurus tingahi'' (also 5 Prosciurillus rosenbergii) at bottom left.
Fig. 8 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 8. Habitat of Rubrisciurus rubriventer in tropical lowland evergreen rain forest at Kuala Navusu, 150 m. Two other species of tree squirrels live in the same forests: Prosciurillus alstoni prefers the upper canopy layer, and P. murinus forages through the understory trees. All three species were caught in traps set on top of tree trunks bridging streams, much like the trunk lying across the stream in the photograph. See table 2 for range of ambient temperatures recorded during the trapping period. Photographed in 1975.
Fig. 5 in Systematic Review of Endemic Sulawesi Squirrels (Rodentia, Sciuridae), with Descriptions of New Species of Associated Sucking Lice (Insecta, Anoplura), and Phylogenetic and Zoogeographic Assessments of Sciurid Lice
Fig. 5. Collection localities for samples of Rubrisciurus rubriventer. Numbers key to localities described in the gazetteer where specimens are also identified by museum initials and catalog numbers. The inset map, right (rectangle on larger map, above), contains collection sites (10–21) scattered along Musser's transect from the Sungai Oha Kecil to the slopes of Gunung Kanino. The dashed contour line at 1300 m marks the approximate boundary between tropical lowland evergreen rain forest and tropical lower montane forest.
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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
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International Brain Laboratory public data
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