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110 results for “Biotope”
Fig. 6 in Species Composition And Biotopical Distribution Of Blackflies (Diptera, Simuliidae) On The South-Western Macroslope Of The Ukrainian Carpathians
Fig. 6. Species diversity of blackflies (according to Simpson's index) on the south-western macroslope of the Ukrainian Carpathians. (The numeration of altitudinal vegetative groups corresponds to that one given in fig. 4.)
Fig. 5 in Species Composition And Biotopical Distribution Of Blackflies (Diptera, Simuliidae) On The South-Western Macroslope Of The Ukrainian Carpathians
Fig. 5. Cluster analysis of similarity of blackflies species composition in altitudinal vegetation groupings on the south-western macroslope of the Ukrainian Carpathians. (The numeration of altitudinal vegetative groups corresponds to that one given in fig. 4).
Fig. 4 in Species Composition And Biotopical Distribution Of Blackflies (Diptera, Simuliidae) On The South-Western Macroslope Of The Ukrainian Carpathians
Fig. 4. Geobotanical subdivision of the Ukrainian Carpathians (Holubets, 2003). І — subdivision of oak-beech and oak submontane Transcarpathian forests (1): 1a — district of beech-oak and oak-beech submontane forests of the Volcanic Range, 1b — district of oak-beech and beech-oak forests of Marmaros basin; ІІ — subdivision of beech Carpathian forests: 2 — district of fur-beech Verkhouzhotski forests, 3 — district of hornbeam-beech and beech Dubrynychi-Svaliava forests, 4 — districts of the beech forests of southern megaslope of the Polonynian Beskyd, 5 — Mizhhirskiy (Intermountain) and 6 — Rakhiv subdistricts in the district of spruce-fir-beech, spruce-beech-fir and spruce-beech Transcarpathian forests; III — subdivision of spruce Carpathian mountain forests: 7 — subdistrict of the Upper Tysa beech-fir-spruce forests of the district of Chornohora-Marmaros forests. • — places of sample collection.
FIGURE 17. a, typical biotope for O in Immature stages of the genus Oxythyrea (Coleoptera: Scarabaeidae: Cetoniinae) with a key to third instar larvae, and notes on the biology of the genus
FIGURE 17. a, typical biotope for O. pantherina in North Africa (Tunisia: Bou Hedma, March 2014) © D. Vondráček; b, adults of O. pantherina on acaccia (Morocco: Оualidia, March 2013) © D. Vondráček; c, death Ƒachellia raddiana with freshly hatched adults of O. pantherina in decaying wood (Tunisia: Bou Hedma, March 2014) © P. Šípek; d, typical biotope for O. subcalva in North Africa (Tunisia: Gabes, March 2014) © P. Šípek; e, palmeria with Cistanche sp. and O. subcalva inside (Tunisia: Douz, March 2014) © P. Šípek; f, Cistanche sp. with O. subcalva adults inside (Tunisia: Gabes, March 2014) © D. Král; g, sandy coastal dunes with O. tripolitana (Tunisia: Djerba, March 2014) © P. Šípek; h, O. tripolitana on Cakile sp. (Tunisia: Djerba, March 2014) © P. Šípek.
FIGURE 4 in A new species of Colacus Ohaus, 1910 (Coleoptera: Scarabaeidae: Dynastinae) from the Mata Seca biotope of Brazil, and notes on Colacus morio Ohaus, 1910
FIGURE 4. Male genitalia of Colacus rubrofemoratus. A, Aedeagus in lateral view, white arrow indicating a ventral carina; B, parameres in dorsal view. Scale bars: 1 mm.
FIGURE 1 in A new species of Colacus Ohaus, 1910 (Coleoptera: Scarabaeidae: Dynastinae) from the Mata Seca biotope of Brazil, and notes on Colacus morio Ohaus, 1910
FIGURE 1. Male of Colacus rubrofemoratus. A, Habitus in dorsal view, black arrow indicating the fourth protibial tooth; B, habitus in ventral view; C, living specimen on a log. Scale bars: 3 mm.
FIGURE 6 in A new species of Colacus Ohaus, 1910 (Coleoptera: Scarabaeidae: Dynastinae) from the Mata Seca biotope of Brazil, and notes on Colacus morio Ohaus, 1910
FIGURE 6. Female of Colacus morio. A, Habitus in dorsal view; B, habitus in ventral view. Scale bars: 3 mm.
FIGURE 7 in A new species of Colacus Ohaus, 1910 (Coleoptera: Scarabaeidae: Dynastinae) from the Mata Seca biotope of Brazil, and notes on Colacus morio Ohaus, 1910
FIGURE 7. Female of Colacus morio. A, Head and anterior portion of pronotum in dorsal view; B, head in ventral view, black arrow indicating outer side of right mandible, white arrows indicating apical projections of mentum; C, canthus in dorsal view; D, head and pronotum in lateral view, black arrows indicating cephalic tubercle and pronotal tubercle. Scale bars: A–C, 1 mm; D, 3 mm.
FIGURE 2 in A new species of Colacus Ohaus, 1910 (Coleoptera: Scarabaeidae: Dynastinae) from the Mata Seca biotope of Brazil, and notes on Colacus morio Ohaus, 1910
FIGURE 2. Head and pronotum of Colacus rubrofemoratus. A, Head in frontal view, white arrow indicating the apex of cephalic tubercle; B, head and anterior portion of pronotum in dorsal view, white arrow indicating the pronotal fovea; C, canthus in dorsal view; D, head and pronotum in lateral view, black arrow indicating pronotal tubercles. Scale bars: A–C, 1 mm; D, 3 mm.
Рис. 2. ОΑин из типичных вариантов гнезΑового биотопа скаΛьного гоΛубя Columba rupestris в Приморском крае. Уссурийский гороΑской округ, окрестности сеΛа Монакино, 01.01.2009. Фото À. В. Коробова Fig. 2. One of the typical breeding biotopes of the hill pigeon Columba rupestris in Primorsky Krai. Ussuriysky City District, vicinity of the village of Monakino, 01.01.2009. Photo by D. V. Korobov in About breeding biology of the hill pigeon Columba rupestris in Primorsky Krai
Рис. 2. ОΑин из типичных вариантов гнезΑового биотопа скаΛьного гоΛубя Columba rupestris в Приморском крае. Уссурийский гороΑской округ, окрестности сеΛа Монакино, 01.01.2009. Фото À. В. Коробова Fig. 2. One of the typical breeding biotopes of the hill pigeon Columba rupestris in Primorsky Krai. Ussuriysky City District, vicinity of the village of Monakino, 01.01.2009. Photo by D. V. Korobov
FIGURES 9–14. ssp. male genitalia and biotope. 9. C in A new species of Catocala Schrank, 1802 (Lepidoptera, Erebidae) from China
FIGURES 9–14. ssp. male genitalia and biotope. 9. C. borthi sp. n., holotype, prep. BJ 1866; 10. C. koreana, prep. BJ 812; 11. C. fulminea, Hungary, prep. BJ 110; 12. C. fulminea, Primorje, Russia, prep. BJ 1910; 13. C. fulminea, Sichuan, China, prep. BJ 1913; 14. China, Sichuan, N 33°18.855', E 103°55.531', near Jiuzhaigou. Type locality of Catocala borthi sp. n.
FIGURE 9. A in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 9. A stridulating male at the mouth of its burrow. The wide mouth of the burrow serves as an 'acoustic chamber' for amplification (Photo: J.J. Borg).
FIGURE 8 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 8. Correlation between atmospheric pressure and the count interval (difference in the count between successive, weekly observation periods) with trendlines for all points (grey) and when not considering the only outlier (blue).
FIGURE 1 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 1. Aerial image of the area of study and its surrounding terrain (Source: Google Earth—imagery 23/5/2021).
FIGURE 6 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 6. Sustained wind speed (main chart) and accompanying wind gusts (inset) are practically aligned, which indicates a quasi-constant wind during observation periods.
FIGURE 7. Humidity chart across observation periods with a range varying from 75 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 7. Humidity chart across observation periods with a range varying from 75% to 94%. Notwithstanding the high level of humidity registered on some days, no precipitation was recorded during or immediately prior to field sessions.
FIGURE 3 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 3. Abundance across the eleven weeks of field observations on the area of study and its immediate surroundings.
FIGURE 2 in An investigation of patch occupancy and dispersal by third to final instar nymphs of Brachytrupes megacephalus Lefèbvre, 1827 (Orthoptera: Gryllidae: Gryllinae) across the sand dune biotope at the Għadira Nature Reserve, Malta
FIGURE 2. The high concentration of individuals on the sand dune biotope patch devoid of trees demonstrates a preference for such habitat conditions (each orange dot represents a single sighting record).
FIGURE 1 in Bathyal Mollusca from the cold-water coral biotope of Santa Maria di Leuca (Apulian margin, southern Italy)
FIGURE 1. Map of the study area. Inset map after Hans Braxmeier (www.maps-for-free.com).
Рис. 1. Приморские склоны в б. МелководнаЯ, поросШие травой – место обнаружениЯ Deroceras caucasicum на о-ве Русский. Fig. 1. Maritime slopes in Melkovodnaya Bay covered by grass – the biotope locality of Deroceras caucasicum in Russky Island. in Invasion of the pest slug Deroceras caucasicum (Simroth, 1901) to the islands of Peter the Great Bay (Sea of Japan)
Рис. 1. Приморские склоны в б. МелководнаЯ, поросШие травой – место обнаружениЯ Deroceras caucasicum на о-ве Русский. Fig. 1. Maritime slopes in Melkovodnaya Bay covered by grass – the biotope locality of Deroceras caucasicum in Russky Island.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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