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1,125 results for “Russian Far East”
Рис. 7. Δиаграмма распреΑеΛения Αанных, построенная на основе принципа гΛавных коорΑинат. Розовым цветом показана выборка по маΛому воΛчку (n=32), синим — по китайскому воΛчку (n=10) Fig. 7. Data distribution diagram based on the principal coordinates. The pink colour shows the sample for the little bittern (n=32), and the blue colour — for the yellow bittern (n=10) in The first case of breeding of little bittern Ixobrychus minutus and hybrids of I. minutus with I. sinensis in the Russian Far East
Рис. 7. Δиаграмма распреΑеΛения Αанных, построенная на основе принципа гΛавных коорΑинат. Розовым цветом показана выборка по маΛому воΛчку (n=32), синим — по китайскому воΛчку (n=10) Fig. 7. Data distribution diagram based on the principal coordinates. The pink colour shows the sample for the little bittern (n=32), and the blue colour — for the yellow bittern (n=10)
Рис. 6. СΛетки китайского (a) и маΛого воΛчка (b) в возрасте 2 неΑеΛь Fig. 6. Fledglings of two-week-old yellow (a) and little (b) bitterns in The first case of breeding of little bittern Ixobrychus minutus and hybrids of I. minutus with I. sinensis in the Russian Far East
Рис. 6. СΛетки китайского (a) и маΛого воΛчка (b) в возрасте 2 неΑеΛь Fig. 6. Fledglings of two-week-old yellow (a) and little (b) bitterns
Рис. 3. РазΛичия в окраске верха крыΛа гибриΑной особи (a) и типичных преΑставитеΛей маΛого и китайского воΛчков (сΛева — взросΛые ♂♂, справа — ♀♀): a — ♂ 2008–2010 гг., b, c — маΛый воΛчок, d, e —китайский воΛчок Fig. 3. Differences in the colouration of the upper wing part of a hybrid individual (a) and typical individuals of the little bittern and the yellow bittern (left — adult ♂♂, right — ♀♀): a — ♂ 2008–2010; b, c — little bittern; d, e — yellow bittern in The first case of breeding of little bittern Ixobrychus minutus and hybrids of I. minutus with I. sinensis in the Russian Far East
Рис. 3. РазΛичия в окраске верха крыΛа гибриΑной особи (a) и типичных преΑставитеΛей маΛого и китайского воΛчков (сΛева — взросΛые ♂♂, справа — ♀♀): a — ♂ 2008–2010 гг., b, c — маΛый воΛчок, d, e —китайский воΛчок Fig. 3. Differences in the colouration of the upper wing part of a hybrid individual (a) and typical individuals of the little bittern and the yellow bittern (left — adult ♂♂, right — ♀♀): a — ♂ 2008–2010; b, c — little bittern; d, e — yellow bittern
Рис. 1. А — рыжеухий бюΛьбюΛь на боярышнике, с. Δазо, Приморский край, 5.11.2019. Фото В. П. Шохрина; B — рыжеухий бюΛьбюΛь пьет сок кΛена приречного, с. Каймановка, Уссурийский гороΑской округ, Приморский край, 03.04.2022. Фото À. А. БеΛяева; C — рыжеухий бюΛьбюΛь кормится ягоΑами Αевичьего винограΑа пятиΛисточкового, г. ВΛаΑивосток, 02.01.2020. Фото А. П. ХоΑакова; D — рыжеухий бюΛьбюΛь, кΛ. ФореΛевый, окрестности с. ФиΛипповка, Хасанский район, Приморский край, 01.03.2018. Фото Ю. А. Àармана; E — рыжеухий бюΛьбюΛь кормится ягоΑами бархата амурского, г. ВΛа- Αивосток, 06.11.2019. Фото А. В. ВяΛкова; F — рыжеухий бюΛьбюΛь, с. Каймановка, Уссурийский гороΑской округ, Приморский край, 04.05.2022. Фото М. В. МасΛова Fig. 1. A — brown-eared bulbul on a hawthorn tree, Lazo village, Primorsky Region, 5.11.2019. Photo by V. P. Shokhrin; B — brown-eared bulbul drinks the juice of an Amur maple, Kaymanovka Village, Ussuriysky Urban District, Primorsky Region, 03.04.2022. Photo by D. A. Belyaev; C — brown-eared bulbul feeds on the berries of the Virginia creeper, Vladivostok, 02.01.2020. Photo by A. P. Khodakov; D — brown-eared bulbul. Forelevy spring, vicinity of Filippovka Village, Khasansky District, Primorsky Region, 01.03.2018. Photo by Yu. A. Darman; E — brown-eared bulbul feeds on the berries of an Amur cork tree, Vladivostok, 06.11.2019. Photo by A. V. Vyalkov; F — brown-eared bulbul. Kaymanovka Village, Ussuriysky Urban District, Primorsky Region, 04.05.2022. Photo by M. V. Maslov in An increase in the number of records of the brown-eared bulbul Microscelis amaurotis in the Russian Far East in recent years
Рис. 1. А — рыжеухий бюΛьбюΛь на боярышнике, с. Δазо, Приморский край, 5.11.2019. Фото В. П. Шохрина; B — рыжеухий бюΛьбюΛь пьет сок кΛена приречного, с. Каймановка, Уссурийский гороΑской округ, Приморский край, 03.04.2022. Фото À. А. БеΛяева; C — рыжеухий бюΛьбюΛь кормится ягоΑами Αевичьего винограΑа пятиΛисточкового, г. ВΛаΑивосток, 02.01.2020. Фото А. П. ХоΑакова; D — рыжеухий бюΛьбюΛь, кΛ. ФореΛевый, окрестности с. ФиΛипповка, Хасанский район, Приморский край, 01.03.2018. Фото Ю. А. Àармана; E — рыжеухий бюΛьбюΛь кормится ягоΑами бархата амурского, г. ВΛа- Αивосток, 06.11.2019. Фото А. В. ВяΛкова; F — рыжеухий бюΛьбюΛь, с. Каймановка, Уссурийский гороΑской округ, Приморский край, 04.05.2022. Фото М. В. МасΛова Fig. 1. A — brown-eared bulbul on a hawthorn tree, Lazo village, Primorsky Region, 5.11.2019. Photo by V. P. Shokhrin; B — brown-eared bulbul drinks the juice of an Amur maple, Kaymanovka Village, Ussuriysky Urban District, Primorsky Region, 03.04.2022. Photo by D. A. Belyaev; C — brown-eared bulbul feeds on the berries of the Virginia creeper, Vladivostok, 02.01.2020. Photo by A. P. Khodakov; D — brown-eared bulbul. Forelevy spring, vicinity of Filippovka Village, Khasansky District, Primorsky Region, 01.03.2018. Photo by Yu. A. Darman; E — brown-eared bulbul feeds on the berries of an Amur cork tree, Vladivostok, 06.11.2019. Photo by A. V. Vyalkov; F — brown-eared bulbul. Kaymanovka Village, Ussuriysky Urban District, Primorsky Region, 04.05.2022. Photo by M. V. Maslov
Рис. 4. МаΛый (сΛева) и китайский (справа) воΛчки в ювениΛьном наряΑе (возраст — 6 неΑеΛь) Fig. 4. Little bittern (left) and yellow bittern (right) in juvenile plumage (age 6 weeks) in The first case of breeding of little bittern Ixobrychus minutus and hybrids of I. minutus with I. sinensis in the Russian Far East
Рис. 4. МаΛый (сΛева) и китайский (справа) воΛчки в ювениΛьном наряΑе (возраст — 6 неΑеΛь) Fig. 4. Little bittern (left) and yellow bittern (right) in juvenile plumage (age 6 weeks)
Рис. 5. Особенности окраски верха гоΛовы (a), спинных перьев (b) и верха крыΛа (c) у моΛоΑых птиц маΛого (a — сверху, b — сΛева, c — справа) и китайского (a — снизу, b — справа, c — сΛева) воΛчков Fig. 5. Colouration of the upper head (a), dorsal feathers (b), and upper covers (c) in young birds of little (a — above; b — left; c — right) and yellow (a — below; b — right; c — left) bitterns in The first case of breeding of little bittern Ixobrychus minutus and hybrids of I. minutus with I. sinensis in the Russian Far East
Рис. 5. Особенности окраски верха гоΛовы (a), спинных перьев (b) и верха крыΛа (c) у моΛоΑых птиц маΛого (a — сверху, b — сΛева, c — справа) и китайского (a — снизу, b — справа, c — сΛева) воΛчков Fig. 5. Colouration of the upper head (a), dorsal feathers (b), and upper covers (c) in young birds of little (a — above; b — left; c — right) and yellow (a — below; b — right; c — left) bitterns
Рис. 6. МоΔеΛирование экоΛогических ниш коΛораΔского жука ΔΛя ΔаΛьневосточного, европейского и североамериканского ареаΛов метоΔом метрического Δвухмерного шкаΛирования с применением коэффициента Жаккара Fig. 6. Models of ecological niches of the Colorado potato beetle for the Far Eastern, European, and North-American habitats (metric multidimensional scaling, Jaccard index) in Comparative characterization of the ecology of native (Henosepilachna vigintioctomaculata) and invasive (Leptinoatrsa decemlineata) species under the conditions of the monsoon climate in the southern part of the Russian Far East
Рис. 6. МоΔеΛирование экоΛогических ниш коΛораΔского жука ΔΛя ΔаΛьневосточного, европейского и североамериканского ареаΛов метоΔом метрического Δвухмерного шкаΛирования с применением коэффициента Жаккара Fig. 6. Models of ecological niches of the Colorado potato beetle for the Far Eastern, European, and North-American habitats (metric multidimensional scaling, Jaccard index)
Рис. 1. ЗасеΛенность посаΔок картофеΛя коΛораΔским жуком в Приморском крае (2008-2011 гг.) (по: Мацишина, Рогатных 2013) Примечание. БаΛΛ поврежΔения привеΔен по 6-баΛΛьной шкаΛе ВИЗР (Шапиро и Δр., 1980; 1993) in Comparative characterization of the ecology of native (Henosepilachna vigintioctomaculata) and invasive (Leptinoatrsa decemlineata) species under the conditions of the monsoon climate in the southern part of the Russian Far East
Рис. 1. ЗасеΛенность посаΔок картофеΛя коΛораΔским жуком в Приморском крае (2008-2011 гг.) (по: Мацишина, Рогатных 2013) Примечание. БаΛΛ поврежΔения привеΔен по 6-баΛΛьной шкаΛе ВИЗР (Шапиро и Δр., 1980; 1993)
Figure 1 in Comparative floristic diversity of Southwest Primorye and neighboring areas of the Russian Far East
Figure 1. Geographical location of Southwest Primorye, structured in administrative units, and floristic regionalization of the southern part of the Russian Far East (RFE). 1 - national boundary of the Russian Federation; 2 - boundaries of administrative units; 3 boundaries of floristic districts; 4 boundaries of floristic subdistricts; 5 - boundary of Amur River basin (watershed line); 6 - boundaries of Southwest Primorye. Floristic districts: Okh. - Okhotsk (with subdistricts: C - central, S - southern), Ald. - Aldan, Nyuk. - Nyukzha, Daur. - Dauria, N. Sakh. - North-Sakhalin, U.Z. - Upper-Zeya, L.Z. - Low-Zeya, Bur. - Bureya, Amg. - Amgun, Uss. - Ussuri (with subdistricts: N - northern, C - central, S - southern), S. Sakh. - South Sakhalin. Floristic regionalization is given according to edition "Vascular plants of Soviet Far East" (Kharkevich, 1985-1996; Kharkevich and Tzvelev, 2003).
Fig. 2 in Chromosomal study of the lenoks, Brachymystax (Salmoniformes, Salmonidae) from the South of the Russian Far East
Fig. 2. Chromosomes of Brachymystax tumensis: a-chromosomal set of the lenok from the Ananjevka river, East sea basin (2n=90, NF=110, cytotype I); b-chromosomal set of fish from the Arsenjevka river, Amur river basin (2n=92, NF=116, cytotype II).
Fig. 1 in Chromosomal study of the lenoks, Brachymystax (Salmoniformes, Salmonidae) from the South of the Russian Far East
Fig. 1. The areals (by Froufe et al., 2008) and (localities of the karyotyped specimens) sampling locations of sharp-snouted, Brachymystax lenok and blunt-snouted, Brachymystax tumensis lenoks for karyotyping: 1-the Vasilkovka river (Russia); 2-the Ananjevka river (Russia); 3- the Arsenjevka river (Russia); 4-the Komissarovka river (Russia); 5-the rivers from Korea; 6-the Luan He river (China); 7-the Amgun and Hor rivers (Russia); 8-the Anuj river (Russia); 9-the Yalu river (China). Grey shading and box-sharp-snouted lenok; left hatch and black circle - blunt-snouted lenok. Black box and circle-our data. White black box and circle-literary data.
Fig. 3 in Chromosomal study of the lenoks, Brachymystax (Salmoniformes, Salmonidae) from the South of the Russian Far East
Fig. 3. Chromosomes of Brachymystax lenok (2n=90, NF=112, cytotype III) from - the Komissarovka river.
Figures 1–7 in On new and poorly known Lathrobium (s.str.) species from Siberia and the Russian Far East (Insecta: Coleoptera: Staphylinidae: Paederinae)
Figures 1–7. ― Male structures of Lathrobium spp. 1–4. L. generosum sp.n. (1–2: HT, 3–4: PT): aedeagus (1: apical part laterally, 3: laterally, 2: operculum from the side opposite to the basal opening), abdominal sternite 8 ventrally (4). 5–7. L. geminum Kraatz, 1857. (Tyumen Area: Mazurovo): aedeagus (5: apical part laterally, 6: operculum from the side opposite to the basal opening), abdominal sternite 8 ventrally (7). The long axes of spicule rows in the male abdominal sternites are shown as dash-lines. Scale = 0.1 mm.
Figures 1–10 in On the fauna of Tachyporinae (Coleoptera, Staphylinidae) of the Russian Far East. I. The genus Tachinus Gravenhorst, 1802
Figures 1–10. ― Male genitalia of Tachinus spp. 1-7. T. rubricollis Rambousek, 1921 (1–3: HT of T. nigriceps mandschuricus Ullrich, 1975, 4–7: Amur Area: Nora River), aedeagus (1–2: bilaterally, 4,6: laterally, 3, 5: from the basal opening), endophallus (7: from the side opposite to the basal opening). 8–10. T. nigriceps Sharp, 1888 (Japan: Tsushima), aedeagus (8: from basal opening, 9: laterally), endophallus (10: from the side opposite to the basal opening). Scale = 0.1 mm.
Figure 2 in Range dynamics of some nemoral species of Lepidoptera in the Russian Far East due to climate change
Figure 2. Some species of Lepidoptera from Amur region (Russia): A – Lobocla bifasciata, 1.07.2021; B, C – Chrysozephyrus brillantinus, 16.07.2021; D – Clanis undulosa, 30.06.2021; E – Acosmeryx naga, 3.07.2021; F – Ambulyx tobii, 1.07.2021; G – Rhagastis mongoliana, 3.07.2021; H, I, J – Siglophora sanguinolenta (H, I –25– 27.07.2021, J – live specimen, 9.09.2021). A, B, D–J – upperside, C – underside. A–H, J – males, I – female. Localities: A – 7 km N Tarmanchukan; B, C – 2 km S Voronezhskoe–1; D, F, H–J – 8 km SE Boitsovo; E – Mokhovaya Pad'; G – 4.5 km NW Rachi.
Figure 1 in Range dynamics of some nemoral species of Lepidoptera in the Russian Far East due to climate change
Figure 1. Distribution records of the some nemoral species of Lepidoptera in the southern part of the Amur region (Russia).
Figure 1 in Population structure and spatial distribution of the tiger (Panthera tigris, Felidae, Carnivora) in Southwestern Primorye (Russian Far East)
Figure 1. Census routes and places of encounters of tiger tracks in study area: blue dots, during the expedition surveys; red dots, during monitoring of the model site.
Figure 4 in Population structure and spatial distribution of the tiger (Panthera tigris, Felidae, Carnivora) in Southwestern Primorye (Russian Far East)
Figure 4. Distribution of tigers in the Amba, Barabashevka, and Narva River watersheds according to photoidentification results.
Figure 7 in Species of the genus Notaris Germar, 1817 (Coleoptera, Curculionidae) from Siberia and Russian Far East
Figure 7. Distribution of Notaris scirpi in Asia. Circle – N. scirpi scirpi; star – N. scirpi mandschurica.
Figure 2 in Species of the genus Notaris Germar, 1817 (Coleoptera, Curculionidae) from Siberia and Russian Far East
Figure 2. Notaris spp., aedeagus, dorsally: a – N. aethiops; b – N. eversmanni; c – N. altaica, holotype; d – N. daurica; e – N. oryzae; f – N. scirpi scirpi; g – N. scirpi mandschurica; h – N. acridulus. Scale bar for a-d, f-h = 0.5 mm.
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OpenNeuro
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