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306 results for “Solomon Islands”
Figs 1–3 in A review of the genus Platynectes from the Solomon Islands (Coleoptera: Dytiscidae: Agabinae)
Figs 1–3. Habitus of Platynectes in dorsal (a) and frontolateral (b) view. 1 – P. barana sp. nov.; 2 – P. lunga sp. nov.; 3 – P. makira sp. nov. Not to scale.
Figure 1 in A new genus of the tribe Rhinocartini (Coleoptera, Rhynchitidae) from the Solomon Islands
Figure 1. Solomonocartus bukejsi sp. nov., female, holotype: a – body, dorsally, b – body, ventrally; c – body laterally. Scale bar = 1.0 mm.
Figure 3 in A new genus of the tribe Rhinocartini (Coleoptera, Rhynchitidae) from the Solomon Islands
Figure 3. Distribution of Rhinocartini: circle – Rhinocartus tessmanni, star – Proteugnamptus hovanus, octagon – Solomonocartus bukejsi sp. nov.
Seismic records of the April 12, 2014 Solomon Islands (Mw = 7.6) earthquake (Sadeghi-Bagherabadi et al. 2023)
<p>Seismic records of the April 12, 2014 Solomon Islands (Mw = 7.6) earthquake (Sadeghi-Bagherabadi et al. 2023), recorded by the CIGSIP temporarry network in the western Arabia-Eurasia collision zone.</p> <p>Contact:<br> Amir Sadeghi-Bagherabadi (amir.sadeghi@hotmail.com)</p> <p>It is a supplement to:</p> <p><strong>Sadeghi-Bagherabadi, A., Margheriti, L., Aoudia, A., Baccheschi, P., Lucente, F. P., Sobouti, F., (2023). Anisotropic Gradients in Iran: Quasi-Love Waves Illuminate the Deep Structure and Deformation Style of the Zagros, Alborz and Kopet Dagh. Journal of Geodynamics, <a href="https://doi.org/10.1016/j.jog.2023.101989">https://doi.org/10.1016/j.jog.2023.101989</a></strong></p> <p>If you use this dataset, please cite the following paper:</p> <p><strong>Sadeghi-Bagherabadi, A., Margheriti, L., Aoudia, A., Baccheschi, P., Lucente, F. P., Sobouti, F., (2023). Anisotropic Gradients in Iran: Quasi-Love Waves Illuminate the Deep Structure and Deformation Style of the Zagros, Alborz and Kopet Dagh. Journal of Geodynamics, <a href="https://doi.org/10.1016/j.jog.2023.101989">https://doi.org/10.1016/j.jog.2023.101989</a></strong></p> <p>_________________________________________________________________</p> <p><br> Table of contents: </p> <p>SAC_files.tar.gz : includes seismic records of the April 12, 2014 Solomon Islands (Mw = 7.6) earthquake. The SAC file names are formatted as: YYYY.MM.DD-hh.mm.ss._SSSc.sac. For example '2014.04.12-20.14.39._E01e.sac' is the E-W component of station E01</p> <p>Resp_files.tar.gz : includes the station response files. The response file names are formatted as:MSSS-resp.txt. For example 'ME01-resp.txt' is the response file for station E01.</p> <p>_________________________________________________________________</p> <p>The CIGSIP project was a trilateral undertaking by the Institute for Advanced Studies in Basic Sciences (IASBS), Geological Survey of Iran, and Chinese Academy of Sciences. CIGSIP was funded and supported by the Strategic Priority Research Program (B) (Grant number XDB03010802) and the International Partnership Program (GJHZ1776) of the Chinese Academy of Sciences.</p>
Pneumatopteris glandulifera, Kolombangara,Solomon Islands. Photo by Cheng-Wei Chen. in A Generic Classification of the Thelypteridaceae
Pneumatopteris glandulifera, Kolombangara,Solomon Islands. Photo by Cheng-Wei Chen.
dictionaria/teanu: Teanu dictionary (Solomon Islands)
<p><strong>François, Alexandre. 2021. Teanu dictionary (Solomon Islands). Dictionaria 15. 1-1877. (Available online at https://dictionaria.clld.org/contributions/teanu).</strong></p>
Solomon Islands
[Solomon Islands](https://en.wikipedia.org/wiki/Solomon_Islands) is a sovereign country consisting of six major islands and over 900 smaller islands in Oceania, to the east of Papua New Guinea and northwest of Vanuatu. It has a land area of 28,400 square kilometres (11,000 sq mi), and a population of 652,858. Its capital, Honiara, is located on the largest island, Guadalcanal. The country takes its name from the Solomon Islands archipelago, which is a collection of Melanesian islands that also includes the North Solomon Islands (a part of Papua New Guinea), but excludes outlying islands, such as the Santa Cruz Islands and Rennell and Bellona. Source: Objaverse 1.0 / Sketchfab
Figure 4 in Genus Byrsax Pascoe, 1860 (Coleoptera: Tenebrionidae) In The Solomon Islands And New Guinea With Description Of A New Species
Figure 4. Byrsax cf. crypticus sp. nov., additional ♀ from Choiseul Island, dorsal view. D. Telnov.
Figure 1 in Trismelasmos neirai sp. n. (Lepidoptera, Cossidae, Zeuzerinae) from Solomon Islands
Figure 1. Trismelasmos neirai Yakovlev & Hulsbosch, sp. n., holotype (MWM).
Fig. 25 in A review of the genus Platynectes from the Solomon Islands (Coleoptera: Dytiscidae: Agabinae)
Fig. 25. Distribution of Platynectes species in the Solomon Islands (A) and Vanuatu (B).
Fig 7 in A review of the genus Platynectes from the Solomon Islands (Coleoptera: Dytiscidae: Agabinae)
Fig 7. Habitus of Platynectes popomanaseu sp. nov. in dorsal (a) and frontolateral (b) view.
Figure 2 in A new genus of the tribe Rhinocartini (Coleoptera, Rhynchitidae) from the Solomon Islands
Figure 2. Solomonocartus bukejsi sp. nov., female, paratype, body, dorsally. Scale bar = 1.0 mm.
MUSM7011 3D Model - Solomon Islands Wooden Bowl
Model of a painted wooden bowl from the Solomon Islands. The date is unknown, however it was collected from the Solomon Islands between c. 1893-1900. Source: Objaverse 1.0 / Sketchfab
Impact of Community Scabies Treatment on Head Lice Prevalence in the Solomon Islands
ClinicalTrials.gov study NCT03236168. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
Subspecies and Distribution. S. s. sacco/awnus Temminck, 1838 — Sumatra andJava. S. s. affinis Dobson, 1875 — Borneo and offshore islands including Labuan I. S. s. crassus Blyth, 1844 — S & SE Asia from India (including Great Nicobar I) and Sri Lanka to Indochina and Peninsular Malaysia. S. s. nudicluniatus De Vis, 1905 - New Guinea (including Yapen and Trobriand Is), Bismarck Archipelago (New Britain I), Solomon Is (Bougainville and Guadalcanal), and N & NE Australia (Top End and NE Queensland); possibly also on Timor I. S. s. pluto G. S. Miller, 1910 — Philippines (Luzon, Catanduanes, Mindoro, Negros, and Mindanao Is). in Emballonuridae
Subspecies and Distribution. S. s. sacco/awnus Temminck, 1838 — Sumatra andJava. S. s. affinis Dobson, 1875 — Borneo and offshore islands including Labuan I. S. s. crassus Blyth, 1844 — S & SE Asia from India (including Great Nicobar I) and Sri Lanka to Indochina and Peninsular Malaysia. S. s. nudicluniatus De Vis, 1905 - New Guinea (including Yapen and Trobriand Is), Bismarck Archipelago (New Britain I), Solomon Is (Bougainville and Guadalcanal), and N & NE Australia (Top End and NE Queensland); possibly also on Timor I. S. s. pluto G. S. Miller, 1910 — Philippines (Luzon, Catanduanes, Mindoro, Negros, and Mindanao Is).
FIGURE 3. Eumunida turbulenta n in New occurrences of squat lobsters of the genus Eumunida Smith, 1883 (Decapoda Eumunididae) in New Caledonia, the Solomon Islands and Papua-New Guinea with the description of a new species
FIGURE 3. Eumunida turbulenta n. sp., holotype, ov. F 16.0 mm, Chesterfield Islands (MNHN-IU-2014-23780). A, right P1, dorsal. B, right P1, ventral. C, right P2, lateral. D, right P2 dactylus, lateral. E, right P3, lateral. F, right P4, lateral. Scale: A–C, E, F = 2.0 mm; D = 1.0 mm.
FIGURE 2. Eumunida turbulenta n in New occurrences of squat lobsters of the genus Eumunida Smith, 1883 (Decapoda Eumunididae) in New Caledonia, the Solomon Islands and Papua-New Guinea with the description of a new species
FIGURE 2. Eumunida turbulenta n. sp., A–E, H, holotype, ov. F 16.0 mm, Chesterfield Islands (MNHN-IU-2014-23780); F, E. annulosa, F 16.0 mm, New Caledonia (MNHN-IU-2014-23761); G, E. sternomaculata, F 14.7 mm, New Caledonia (MNHN- IU-2011-4533). A, carapace and abdomen, dorsal. B, carapace, right side, lateral. C, sternal plastron. D, telson. E–G, left antenna, ventral. H, right Mxp3 ischium to carpus, lateral. Scale: A–D = 2.0 mm; E–H = 1.0 mm.
Data from: High Rates of Asymptomatic, Sub-microscopic Plasmodium vivax Infection and Disappearing Plasmodium falciparum Malaria in an Area of Low Transmission in Solomon Islands
Introduction: Solomon Islands is intensifying national efforts to achieve malaria elimination. A long history of indoor spraying with residual insecticides, combined recently with distribution of long lasting insecticidal nets and artemether-lumefantrine therapy, has been implemented in Solomon Islands. The impact of these interventions on local endemicity of Plasmodium spp. is unknown. Methods: In 2012, a cross-sectional survey of 3501 residents of all ages was conducted in Ngella, Central Islands Province, Solomon Islands. Prevalence of Plasmodium falciparum, P. vivax, P. ovale and P. malariae was assessed by quantitative PCR (qPCR) and light microscopy (LM). Presence of gametocytes was determined by reverse transcription quantitative PCR (RT-qPCR). Results: By qPCR, 468 Plasmodium spp. infections were detected (prevalence=13.4%; 463 P. vivax, five mixed P. falciparum/P. vivax, no P. ovale or P. malariae) versus 130 by LM (prevalence=3.7%; 126 P. vivax, three P. falciparum and one P. falciparum/P. vivax). The prevalence of P. vivax infection varied significantly among villages (range 3.0-38.5%, p<0.001) and across age groups (5.3-25.9%, p<0.001). Of 468 P. vivax infections, 72.9% were sub-microscopic, 84.5% afebrile and 60.0% were both sub-microscopic and afebrile. Local residency, low education level of the household head and living in a household with at least one other P. vivax infected individual increased the risk of P. vivax infection. Overall, 23.5% of P. vivax infections had concurrent gametocytaemia. Of all P. vivax positive samples, 29.2% were polyclonal by MS16 and msp1F3 genotyping. All five P. falciparum infections were detected in residents of the same village, carried the same msp2 allele and four were positive for P. falciparum gametocytes. Conclusion: P. vivax infection remains endemic in Ngella, with the majority of cases afebrile and below the detection limit of LM. P. falciparum has nearly disappeared, but the risk of re-introductions and outbreaks due to travel to nearby islands with higher malaria endemicity remains.
FIGURE 10 in Simuliidae (Diptera) of the Solomon Islands: new records and species, ecology, and biogeography
FIGURE 10. Simulium (M.) nr. selwynense, Makira (Santa Cristobal). Penultimate/early lastinstar larva. a, left lateral view. b, pharate pupal gill. c, hypostomal teeth. d, mandible teeth, sensillum, and serrations. e, dorsal view of head, probably female. f, hypostoma and postgenal cleft. g, anal sclerite and circlet of hooks.
FIGURE 5a–c in Simuliidae (Diptera) of the Solomon Islands: new records and species, ecology, and biogeography
FIGURE 5a–c. Simulium (M.) nr. selwynense, Santa Isobel. Lastinstar larvae. a, left lateral views, female upper, male lower. b, dorsal view of female larva head. c, dorsal view of male larva head.
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