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333 results for “Kyrgyzstan”
Figs 1–5 in A new species of Scathophaga Meigen, 1803 (Diptera: Scathophagidae) from Kyrgyzstan
Figs 1–5. Scathophaga ferganensis, sp. n., male: 1 – abdominal sternite 5; 2 – abdominal sternite 4; 3 – aedeagus; 4 – epandrium, cercal plate and surstyli, dorsal view; 5 – same, lateral view.
Figs 6–10 in A new species of Scathophaga Meigen, 1803 (Diptera: Scathophagidae) from Kyrgyzstan
Figs 6–10. Scathophaga lapponica (Ringdahl), male: 6 – abdominal sternite 5; 7 – abdominal sternite 4; 8 – aedeagus; 9 – epandrium, cercal plate and surstyli, dorsal view; 10 – same, lateral view.
MicromAsia: small mammal surveys in Western China and Kyrgyzstan (1994-2014)
<p>This dataset corresponds to surveys carried out in Asia (western China and Kyrgyzstan) between May 1994 and August 2014 as part of the research expeditions of Patrick Giraudoux and his team. It includes:</p> <ul> <li>Traplines set up and small mammal captured. The corresponding collection of skulls, specimens and tissues has been donated to the <em>Museum National d'Histoire Naturelle</em>, Paris since the 22nd of November 2022.</li> <li>Activity index transect walked to provide abundance estimates over a larger range than possible using trapping methods</li> <li>Miscellaneous supplementary files and trapline photos.</li> </ul> <p><strong>Main files</strong></p> <p><a href="https://zenodo.org/record/7614879/files/Traplines.txt?download=1">Traplines.txt </a> <a href="https://zenodo.org/api/files/17e03137-dc8a-4b79-bd1c-4a9752fe0a9d/Traplines.txt"> </a><br>This file is a table that describes the 787 traplines or trap clusters or circumstances by which small mammal specimens have been captured. Some traplines can have no capture. This is a point to consider when trapping success is computed joining the trapline table to the capture table. Those two tables can be joined using the field 'idLine'. For more details about sampling design, trap types, distance between two traps, etc. please refer to the articles published using those data (see references on this web page).</p> <ul> <li>nameStudysite, name of the survey site</li> <li>country, country ISO code</li> <li>countryName, country name</li> <li>province, province name</li> <li>idLine, trapline ID code: digits #1-2 location ID, digits #3-4 year, digits #5-6 month, digits #7-8 line number. The two latter digits can be coded on numbers 01, 02, 03... or on letters AA, AB, AC,...</li> <li>sLongitude, longitude of the trapline beginning (for surveys carried out before 1998 included, GPS receivers were not available: geographical coordinates are those of the nearest village, whose name is given in the field 'nameStudysite', and the position of trapline is given relative to this village (see field 'emplacementMethod' = CoordCloserVillage and 'distVillage' and 'azimuthVillage')</li> <li>sLatitude, latitude of the trapline beginning (for surveys carried out before 1998 included, GPS receivers were not available: geographical coordinates are those of the nearest village, whose name is given in the field 'nameStudysite', and the position of trapline is given relative to this village (see field 'emplacementMethod' = CoordCloserVillage and 'distVillage' and 'azimuthVillage')</li> <li>eLongitude, longitude of the trapline end</li> <li>eLatitude, latitude of the trapline beginning</li> <li>cLongitude, longitude of the trapline centroid (for surveys carried out before 1998 included, GPS receivers were not available: geographical coordinates are those of the nearest village, whose name is given in the field 'nameStudysite', and the position of trapline is given relative to this village (see field 'emplacementMethod' = CoordCloserVillage and 'distVillage' and 'azimuthVillage')</li> <li>cLatitude, latitude of the trapline beginning (for surveys carried out before 1998 included, GPS receivers were not available: geographical coordinates are those of the nearest village, whose name is given in the field 'nameStudysite', and the position of trapline is given relative to this village (see field 'emplacementMethod' = CoordCloserVillage and 'distVillage' and 'azimuthVillage')</li> <li>altitude, altitude</li> <li>emplacementMethod, way location is recorded: CoordCloserVillage, distance and direction of the nearest village (used on a time when GPS receivers were nor available); GPS, geographical coordinates; unknown</li> <li>distVillage, distance to the nearest village (in m)</li> <li>azimuthVillage, bearing direction to the nearest village</li> <li>habitat, habitat description</li> <li>campagneObs, month and year of the survey</li> <li>campagneObsBegin, date of the beginning of the survey</li> <li>campagneObsEnd, date of the end of the survey</li> <li>traptype, trap type (see e.g. <a href="https://zenodo.org/record/7614879/files/Traptypes.pdf?download=1">Traptypes.pdf</a> for some illustrations): <ul> <li>INRA, INRA trap</li> <li>sbbt, small break back trap</li> <li>apporté, brought by people</li> <li>apporté (?), possibly brought by people</li> <li>BBBT, big break back trap</li> <li>sSherman, small Sherman trap</li> <li>BSHERMAN, big Sherman trap</li> <li>CAGE, cage trape</li> <li>tong, tong trap</li> <li>attrapé à la main, caught by hand</li> <li>road, found dead along a road</li> <li>trouvés, found</li> <li>assommoir, deadfall trap</li> <li>tong trap, tong trap</li> <li>bbbt, small break back trap</li> <li>child, brought by a child</li> <li>collet, snare</li> <li>BBBT ou jaw, big break back trap or jaw trap</li> <li>jaw, jaw trap</li> </ul> </li> <li>remarks, remarks</li> <li>nbControlNights, number of control nights (traps were set up during the day and controlled every morning)</li> <li>nbTrapsInstal1, number of traps set up</li> <li>nbTrapsRecov1, number of traps recovered on first control</li> <li>nbTrapsRecov2, number of traps recovered on control #2</li> <li>nbTrapsRecov3, number of traps recovered on control #3</li> <li>nbTrapsRecov4, number of traps recovered on control #4</li> <li>nbTrapsRecov5, number of traps recovered on control #5</li> </ul> <p><a href="https://zenodo.org/records/14246016/files/capturesV2.txt?download=1">CapturesV2.txt</a></p> <p>This file is a table that describes the 2178 animals captured. As a table, it can be joined to the trapline table using the field 'idLine'. Animals with an idMNHN have had their skulls and sometimes other body parts deposited at the <em>Museum National d'Histoire Naturelle</em> in Paris.</p> <ul> <li>country, country ISO code</li> <li>idCapture, Capture ID code: digits #1-8 trapline ID, see field 'idLine' of <a href="https://zenodo.org/record/7614879/files/Traplines.txt?download=1">Traplines.txt</a> for details, digits #9-10 capture ID in the trapline</li> <li>numControlNight, number of the control night</li> <li>dateControlNight, date of the control night</li> <li>labCode, code for the laboratory</li> <li>speciesField, species as identified in the field; for abbreviations see <a href="https://zenodo.org/record/7614879/files/SpeciesNames.txt?download=1">SpeciesNames.txt </a></li> <li>species, species as confirmed in the lab</li> <li>sex, M male; F female.</li> <li>reproducing T true; F False</li> <li>remarks</li> <li>HeadBodyLength, head-body length</li> <li>UterusDiameter (mm)</li> <li>WholeBodyWetmass, body mass (g)</li> <li>EarLength (mm)</li> <li>ToesForelegNb, number of toes (foreleg)</li> <li>ToesHindlegNb, number of toes (hintleg)</li> <li>ClawLength (mm)</li> <li>TailLength (mm)</li> <li>TailQuiffLength (mm)</li> <li>HindFootLength (mm)</li> <li>CristallineLensNb, number of crystalline lens weighed (sometimes only one could be taken)</li> <li>CristallineLensDrymass, dry mass of the crystalline lens weighed (one or two together according to 'CristallineLensNb'</li> <li>TesticleLength (mm)</li> <li>TesticleWidth (mm)</li> <li>SeminalVesicleLength (mm)</li> <li>SeminalVesicleWidth (mm)</li> <li>PlacentaScarsNb, number of placental scares</li> <li>EmbryosNb, number of embryos</li> <li>idLine, ID of the trapline where the animal was caught</li> <li>idMNHN, MNHN ID</li> </ul> <p><a href="https://zenodo.org/record/7614879/files/Parasites.txt?download=1">Parasites.txt </a></p> <p>Livers and general cavity were generally examined visually to identify macroparasites such as cestode kysts or nematodes with a particular attention for <em>Echinococcus multilocularis</em> metacestodes. Additionnal informations on parasites might have been reported in the field 'remarks' of <a href="https://zenodo.org/record/7614879/files/Captures.txt?download=1">Captures.txt</a>. As a table, it can be joined to the capture table using the field 'idCapture'</p> <ul> <li>country, country ISO code</li> <li>idCapture, Capture ID code see field idCapture of <a href="https://zenodo.org/record/7614879/files/Captures.txt?download=1">Captures.txt</a><a href="https://zenodo.org/api/files/17e03137-dc8a-4b79-bd1c-4a9752fe0a9d/Captures.txt"> </a></li> <li>species, parasite species name: "?" or "99" = unknown (generally a small unidentifiable white dot); "CH" = Capillaria hepatica (sometimes in full "Capillaria hepatica"); "Em" = Echinococcus multilocularis (sometimes in full "Echinococcus multilocularis"); "Taenia" ; "Taenia crassiceps"; "Taenia taeniformis"</li> <li>number</li> </ul> <p><a href="https://zenodo.org/record/7614879/files/Transects.zip?download=1">Transects.zip </a></p> <p>Transects were used to sample open habitats such as grassland, arable fields etc., for species that leave conspicuous activity indices on the ground surface, in order to provide abundance estimates over a larger range than possible using trapping methods. For each transect, 10 paces intervals were surveyed with activity indicators identifiable to species or genus level (including foraging corridors, ground holes, earth tumuli and small mammal faeces) recorded. Except for Sary Mogol, Kyrgyzstan, where transect were walked on twenty 10-paces intervals centred on the nodes of a grid, transect routes were selected opportunistically under accessibility constraints in order to cross the largest portion of each habitat patch. They were recorded via Global Positioning System receivers with an approximate 15 m accuracy. The zip file includes the followings:</p> <ul> <li>Transect file descriptions.rtf, the description of the fields of each transect table</li> <li>Transects_Honlong_2007_09.txt, transects walked near HongLong, China, in September 2007</li> <li>Transects_Narati_2006_09.txt, transects walked near Narati, China, in September 2006</li> <li>Transects_Ningxia_2003_09.txt, transects walked in Ningxia, China, in September 2003</li> <li>Transects_SaryMoghul_2012_2014.txt, transects walked near Sary Moghul, Kyrgyzstan, in May 2012 and August 2014</li> <li>Transects_Serxu_2002_07.txt, transects walked near Serxu, China, in July 2002</li> <li>Transects_Tuotuohe_2006_07.txt, transects walked on the way from Xining to Tuotuo He, China, in July 2006</li> </ul> <p><strong>Supplementary files</strong></p> <p><a href="https://zenodo.org/record/7614879/files/1MapStudyAreas.jpg?download=1">1MapStudyAreas.jpg</a> Map of the main areas surveyed</p> <p><a href="https://zenodo.org/record/7614879/files/DNA_sequencing.txt?download=1">DNA_sequencing.txt </a>table of the specimens whose DNA has been sequenced</p> <ul> <li>ind_number, Capture ID code: see field 'idCapture' in <a href="https://zenodo.org/record/7614879/files/Captures.txt?download=1">Captures.txt </a></li> <li>ID_lab, lab identification label</li> <li>Species_DNA, species as identified by DNA sequencing</li> <li>laboratory, people and/or lab who performed the analysis</li> <li>ID morphometry/karyotype, species as identified by morphology + karyotype</li> </ul> <p><a href="https://zenodo.org/record/7614879/files/Photos_traplines.zip?download=1">Photos_traplines.zip</a> Photos of traplines and habitats for the following surveys</p> <ul> <li>Honglong, CN, September 2007</li> <li>Maerkang, CN, September 2005</li> <li>Narati, CN, September 2006</li> <li>Ningxia, CN, September 2003, July 2012</li> <li>Rantang, CN, June 2004</li> <li>Sary Mogol, KG, April 2008</li> <li>Serxu, CN, July 2002</li> </ul> <p><a href="https://zenodo.org/record/7614879/files/SpeciesNames.txt?download=1">SpeciesNames.txt</a> Abbreviations, latin, English, French names of species</p> <ul> <li>Code, code on 4 digits</li> <li>Nom latin, latin name</li> <li>Nom commun (Anglais), common name (English)</li> <li>Nom commun (Français), common name (French)</li> <li>Remark</li> </ul> <p><a href="https://zenodo.org/record/7614879/files/Small_mammal_measurements.pdf?download=1">Small_mammal_measurements.pdf</a> Method for small mammal sampling and measurements.</p> <p><a href="https://zenodo.org/record/7614879/files/TrapLocationCodes.txt?download=1">TrapLocationCodes.txt</a> Codes for the location of traplines</p> <ul> <li>Location, location name</li> <li>Symbol, symbol (first two digits of idLine in <a href="https://zenodo.org/record/7614879/files/Traplines.txt?download=1">Traplines.txt </a></li> <li>Province, province name</li> <li>Trapping, remarks about sampling design</li> </ul> <p><a href="https://zenodo.org/record/7614879/files/Traptypes.pdf?download=1">Traptypes.pdf</a> Samples of small and big break back traps, tong trap and INRA trap.<br> </p>
National Checklists: Kyrgyzstan Species List
Data from: GBIF.org (23 January 2025) GBIF Occurrence Download <a href="https://doi.org/10.15468/dl.vd2ajk" target="_blank" rel="noopener">https://doi.org/10.15468/dl.vd2ajk</a>
Fig. 29 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Fig. 29. Turkmenocampa edaphica Sendra & Sánchez-García sp. nov., ♀, holotype (MZB (MCNB) 2021-2340), lateral posterior view of mesonotum.
Fig. 1 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Fig. 1. Relief map of part of Asia with detail of Kyrgyzstan and adjacent regions with the localities at which diplurans were found; Kyrgyzstancampa sanare Sendra & Ferreira gen. et sp. nov. (yellow square); Campodea (Dicampa) catalana Denis, 1930 (red square); Turkmenocampa edaphica Sendra & Sánchez-García sp. nov. (black square).
Figs 30–31 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Figs 30–31. Turkmenocampa edaphica Sendra & Sánchez-García sp. nov., urosternite I, lateral side. 30. ♂, paratype (MZB (MCNB) 2021-2341). 31. ♀, holotype (MZB (MCNB) 2021-2340). Abbreviation: a 1 = glandular setae in distal portion of appendages.
Figs 27−28 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Figs 27−28. Turkmenocampa edaphica Sendra & Sánchez-García sp., ♂, paratype (Coll. AS). 27. Cupuliform organ in the last antennomere. 28. Medial antennomere with gouge sensilla.
Figs 19−24 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Figs 19−24. Kyrgyzstancampa sanare Sendra & Ferreira gen. et sp. nov., ♂, paratype (Coll. AS). 19. Lateral view of end portion of metathorax and first and second abdominal segments with methatoracic legs. 20. Large, deep joint between femur and tibia with a longitudinal protrusion on the inner side in a metathoracic leg. 21. Lateral view of pretarsus in metathoracic leg. 22. Lateral view of pretarsus in metathoracic leg, here they observed the ventral spines on the claws. 23. Dorsal view of pretarsus in metathoracic leg. 24. Detail of lateral processes on pretarsus.
Figs 13−15 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Figs 13−15. Kyrgyzstancampa sanare Sendra & Ferreira gen. et sp. nov. 13. ♂, paratype (Coll. AS), 3rd antennomere. 14. ♂, paratype (Coll. AS), sensillum of 3rd antennomere. 15. ♀, holotype (IBB 92101), left portion of the head at dorsal view.
Fig. 3 in A New Species Of The Genus Tephritis (Diptera, Tephritidae) With Shining Abdominal Tergites From Kyrgyzstan
Fig. 3. Heringina guttata (1–2) and T. sauterina (3–4). 1, 3 — aculeus tip, ventral view; 2, 4 —wing.
Fig. 1 in A New Species Of The Genus Tephritis (Diptera, Tephritidae) With Shining Abdominal Tergites From Kyrgyzstan
Fig. 1. Tephritis heringinella sp. n. (1–3, 5 — holotype, 4, 6–7 — paratypes): 1–2 — habitus (1 — left, 2 —dorsal view); 3 — head and thorax, left view; 4 — wing; 5 — head, anterior view; 6–7 — abdomen (6 — Ơ; 7 — ♀).
Fig. 2 in A New Species Of The Genus Tephritis (Diptera, Tephritidae) With Shining Abdominal Tergites From Kyrgyzstan
Fig. 2. Tephritis heringinella sp. n. (paratypes, 1–4 — ♀, 5–7 — Ơ): 1 — aculeus, ventral view; 2 — aculeus tip, ventral view; 3 — eversible membrane, ventral view; 4 — spermathecae; 5 — epandrium; 6 — glans of phallus; 7 — ejaculatory apodeme.
Fig. 2 in The genus Drymeia Meigen, 1826 (Diptera: Muscidae) in Kyrgyzstan: new records and new species
Fig. 2. Angelica brevicaulis (Rupr.) covered with muscoid flies at Kalmak-Anshun Pass, Kyrgyzstan. Photo: J. Ziegler (Berlin, Germany).
Fig. 5 in The genus Drymeia Meigen, 1826 (Diptera: Muscidae) in Kyrgyzstan: new records and new species
Fig. 5. The type-locality of Drymeia ziegleri sp. nov. (Kyrgyzstan, Kalmak-Anshun Pass). Photo: J. Ziegler (Berlin, Germany).
Fig. 4 in The genus Drymeia Meigen, 1826 (Diptera: Muscidae) in Kyrgyzstan: new records and new species
Fig. 4. Drymeia ziegleri sp. nov., ♂, holotype (ZMHU), lateral view. Photo: K. Child (UK, formerly OUMNH).
Figs 3–5 in The latest record of the genus Belmophenopterum (Eoblattida: Mesorthopteridae) from the Middle Triassic of Kyrgyzstan
Figs 3–5. Belmophenopterum rasnitsyni sp. n. (holotype, PIN no. 2555/820, forewing; Kyrgyzstan: Osh Region, Batken District, Madygen Stow, Madygen locality; Middle Triassic, Ladinian-Carnian Stage, Madygen Formation): 3 – photograph; 4 – drawing; 5 – reconstruction.
Figs 1, 2. Sylviodes perloides Martynov, 1940 in The latest record of the genus Belmophenopterum (Eoblattida: Mesorthopteridae) from the Middle Triassic of Kyrgyzstan
Figs 1, 2. Sylviodes perloides Martynov, 1940 (PIN no. 1700/3991, forewing; Russia: Perm region, Suksun district, left bank of the Sylva River near the village of Tshekarda, Tshekarda locality; Lower Permian, Kungurian Stage, Koshelevka Formation): 1 – photo-
FIGURE 1 in Endemism and migration in the Kochkor Basin? Identification and description of Adcrocuta eximia (Mammalia: Carnivora: Hyaenidae) and c.f. Paramachaerodus (Mammalia: Carnivora: Felidae) fossils at the Miocene locality of Ortok, Kyrgyzstan
FIGURE 1. Maps of Kyrgyzstan showing the location of Ortok and important topographical structures. A, Google Earth imagery (accessed May 2018) of the Kochkor and Issyk Kul Basins showing major basins, main bodies of water, Tien Shan mountains, and major fault lines for Kyrgyzstan. The Tien Shan mountains run roughly east to west, leaving high altitude basins infilled with Cenozoic sediments between each sub range. The Kochkor Basin is roughly 80 km long and 24 km wide. Map data: Google, Mapabc.com. Scale equals 96 km; B, additional zoomed in map of Kochkor Basin with fossil localities. Furthest left star is the Ortok site, other fossil collections are from both Tarasov (1970) and McLaughlin (2018). Map data: Google, Digital Globe. Scale equals 16.2 km; C, zoomed in Google Earth map of Kochkor Basin showing main body of water and topographic features. Likely, the Kochkor Basin was connected to the Issyk Kul Basin (the large lake in the figure) until geologically very recently, as shown by the low hills dividing the two basins. Map data: Google, Landsat Copernicus. Scale equals 65 km; D, Google Earth imagery of the Ortok. Base of measured stratigraphic and paleomagnetostratigraphic section (see McLaughlin, 2018) marked with a blue star. Fossiliferous outcrop extends to east and north of the star in the pale tan exposure. To the east, a gorge cut into reddish Paleozoic granite with the thin layer of Chu unconformably resting on it. Strata at Ortok are dipping very gently to the north and are the least deformed structurally of any site included in this study. Additionally, the fossils are the least diagenically altered, indicating little to no diagenic alteration to the site as well. Map data: Google, Digital Globe.Map Scale equals 300 m.
FIGURE 5. Specimen UOMNH F-70508 in Endemism and migration in the Kochkor Basin? Identification and description of Adcrocuta eximia (Mammalia: Carnivora: Hyaenidae) and c.f. Paramachaerodus (Mammalia: Carnivora: Felidae) fossils at the Miocene locality of Ortok, Kyrgyzstan
FIGURE 5. Specimen UOMNH F-70508, Adcrocuta eximia, in occlusal view with insets of morphological features discussed in text. A, occlusal schematic diagram of preserved dentition and p1 alveolus (arrow); B, occlusal view of m1 (anterior to the left) illustrating early stage wear on paraconid and protoconid, respectively; C, occlusal of preserved specimen; D, buccal view of p3 showing examples of transitional acute-angle Hunter-Schreger Bands. These are associated with robust hyaenines (Tseng, 2011); E, detail oblique lingual view of talonid of carnassial (m1) with reduced hypoconid and entoconid. Abbreviations: Encd, entoconid; Hypcd, hypoconid; Ptd, protoconid. Scale bar A and C, equals 5 cm, B, equals 5 mm, D, equals 20 mm, and E, equals 10 mm.
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