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Subpixel offsets of Copernicus Sentinel 2 data, related to the displacement field of the Sulawesi Earthquake (2018, Mw 7.5)

<p><a href="https://en.wikipedia.org/wiki/Sulawesi">Sulawesi</a> lies within a complex fault system located between the <a href="https://en.wikipedia.org/wiki/Australian_Plate">Australian</a>, <a href="https://en.wikipedia.org/wiki/Pacific_Plate">Pacific</a>, <a href="https://en.wikipedia.org/wiki/Philippine_Sea_Plate">Philippine</a> and <a href="https://en.wikipedia.org/wiki/Sunda_Plate">Sunda Plates</a>. The main active structure onshore at the western part of Central Sulawesi is the left-lateral NNW-SSE trending <a href="https://en.wikipedia.org/wiki/Palu-Koro_fault">Palu-Koro</a> <a href="https://en.wikipedia.org/wiki/Strike-slip_Fault">strike-slip fault</a> that forms the boundary between the North Sula and Makassar blocks. On 28 September 2018, a large tsunamigenic <a href="https://en.wikipedia.org/wiki/Earthquake">earthquake</a> (Mw 7.5) struck the <a href="https://en.wikipedia.org/wiki/Minahasa_Peninsula">Minahasa Peninsula</a>, Indonesia. The earthquake caused massive damages near Palu city, including onshore gravitational instabilities and a tsunami.</p> <p>These data are the result of subpixel image correlation on Copernicus Sentinel-2 data (17 September 2018 and 2 October 2018) to derive the two-dimensional (East-West and North-South) horizontal co-seismic displacement field. In these data, the displacement field is expressed in meters. These results show a dominant senextral strike-slip motion on the onshore part of the Palu-Koro fault. Maximum displacement at the surface reached more than 8 meters at the location of Palu city. Processing is performed with COSI-CORR (Leprince et al., 2007). Data value higher than | 10 | meters should be considered as noise and disregarded. I used a correlation window size of 32 pixels with a sampling step of 16 pixels. A ramp has been removed from (separately) the North-South offsets and from the East-West offsets. The files are rasters of floating point values, served with a header file readable by ENVI software.</p> <p>Sign conventions:</p> <p>-North-South offsets: positive values to the North.</p> <p>- East-West offsets: &nbsp;positive values to the West.</p> <p>&nbsp;</p> <p><a href="http://www.esa.int/spaceinimages/Images/2018/10/Indonesia_earthquake_displacement_data">http://www.esa.int/spaceinimages/Images/2018/10/Indonesia_earthquake_displacement_data</a></p> <p><strong>Copyright:</strong> Contains modified Copernicus Sentinel data (2018), processed at the French Geological Survey (BRGM)</p> <p>&nbsp;</p> <p>&nbsp;</p>

opencc-by-4.0Feb 2019View details →
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Fig. 56. Hoplopleura heinrichi, male. 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. 56. Hoplopleura heinrichi, male. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 55. Hoplopleura abstrusus, 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. 55. Hoplopleura abstrusus, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 54. Hoplopleura abstrusus, male. 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. 54. Hoplopleura abstrusus, male. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 59 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. 59. Maximum parsimony majority rule consensus tree showing phylogenetic relationships among species of Hoplopleura from rodent hosts based on 43 morphological characters. Maximum parsimony bootstrap support values and Bayesian posterior probabilities are indicated above the nodes and Bremer support values are given below the nodes. Species of sucking lice parasitizing endemic Sulawesi squirrels form a monophyletic group (indicated in the gray box).

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Fig. 52. Hoplopleura murinus, male. 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. 52. Hoplopleura murinus, male. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 51. Hoplopleura topapuensis, 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. 51. Hoplopleura topapuensis, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 47. Hoplopleura rubrisciuri, 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. 47. Hoplopleura rubrisciuri, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 50. Hoplopleura topapuensis, male. 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. 50. Hoplopleura topapuensis, male. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 45 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. 45. Specimen scores representing four population samples of Hyosciurus ileile projected onto the first and second principal components extracted from principal-components analysis. Symbols identify scores for specimens from Gunung Ile-Ile (filled circle), Sungai Tolewonu (star), Sungai Sadaunta (filled square), and Gunung Kanino (filled triangle). Arrow identifies score for the holotype of ileile. See table 50 for correlations and percent variance.

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Fig. 49. Hoplopleura alstoni, 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. 49. Hoplopleura alstoni, female. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 46. Hoplopleura rubrisciuri, male. 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. 46. Hoplopleura rubrisciuri, male. A, dorsoventral view; B, thoracic sternal plate; C, paratergal plates; D, genitalia.

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Fig. 43 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. 43. An adult male Hyosciurus ileile caught at 155 m above camp on the Sungai Tolewonu in tropical lowland evergreen rain forest. The squirrel was trapped on a large decaying trunk (2 ft in diameter) forming a bridge 15 m long straddling the river, one end on a narrow bank at base of steep hillside, the other resting on river terrace 3 ft above the water surface; caught about 10:30 a.m. See account of this species for description of behavior and diet. See table 2 for range of ambient temperatures recorded during the trapping duration at the Sungai Tolewonu. Photographed in 1976.

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Fig. 40 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. 40. Specimen scores representing four population samples of Hyosciurus heinrichi projected onto the first and second principal components extracted from principal-components analysis. Ellipses outline 95% confidence limits for scores of specimens from Gunung Nokilalaki (N, filled circle), Gunung Kanino (K, star), Pegunungan Latimojong (L, filled triangle), and Pegunungan Takolekaju (T, filled square). Arrow points to score for the holotype of heinrichi. See table 48 for correlations and percent variance.

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Fig. 39 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. 39. Specimen scores representing four population samples of Hyosciurus heinrichi (filled circle, Gunung Kanino, Gunung Nokilalaki, Pegunungan Latimojong and Pegunungan Takolekaju; N 5 32) and four population samples of Hyosciurus ileile (filled triangle, Gunung Ile-Ile, Sungai Tolewonu, Sungai Sadaunta, and Gunung Kanino; N 5 13) projected onto the first and second principal components extracted from principal-components analysis. Arrows identify scores representing holotypes of ileile and heinrichi. See table 47 for correlations and percent variance.

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Fig. 41 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. 41. Habitat of Hyosciurus heinrichi in upper montane rain forest on Gunung Nokilalaki, 2256 m. The tree squirrels Prosciurillus topapuensis and P. murinus also live here. The range of ambient temperatures recorded during the sampling period is listed in table 2. Photographed in 1975.

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Fig. 37 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. 37. Views of the skull and dentary of an adult male Hyosciurus ileile (AMNH 226498) from Sungai Tolewonu (290 m). Occipitonasal length 5 63.1 mm.

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Fig. 36 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. 36. Views of the skull and dentary of an adult male Hyosciurus heinrichi (AMNH 225478) from Gunung Nokilalaki (2287 m). Occipitonasal length 5 64.9 mm.

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Fig. 35 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. 35. Collection localities for samples of Hyosciurus heinrichi and H. ileile. Numbers key to localities described in the gazetteer where specimens are also identified by museum initials and catalog numbers. The inset map, right (rectangle in larger map, above), shows collection sites (1–12) for H. heinrichi scattered along Musser's transect over Gunung Kanino and Gunung Nokilalaki, and localities (4–9) for H. ileile lying along the Sungai Sadaunta and 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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Fig. 34 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. 34. Habitat of Prosciurillus murinus in upper montane rain forest on Gunung Nokilalaki, 2200 m. The tree squirrel, Prosciurillus topapuensis, and ground squirrel, Hyosciurus heinrichi, also live here. See table 2 for range of ambient temperatures recorded during the sampling period. Photographed in 1975.

opencc-by-4.0Jun 2010View details →

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