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223 results for “Caspian Sea”
FIGURE 4 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 4. Number of gobiid species from the South Caspian Sea sub-basin in each ecological group.
FIGURE 12 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 12. Benthophilus leobergius. ZM-CBSU S037-1, 64.2 mm SL, off Anzali, Gilan Province, Iran.
FIGURE 2 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 2. Species richness of gobiid genera in the South Caspian Sea sub-basin.
FIGURE 9 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification
FIGURE 9. Benthophilus baeri. ZM-CBSU S002-14, 54.8 mm SL; Off Anzali, Gilan Province, Iran.
Figure 7 in Effects of climatic parameters on Tetranychus urticae (Acari: Tetranychidae) populations based on remote sensing in the southeastern Caspian Sea
Figure 7. The relationship between daily Land Surface Temperature and spider mite population (mean score of each window) from June 9, 2020 to September 17, 2020. (First window, May 30 to June 9 was not spider mite distribution data), … and -- are Day and night LST, respectively.
Figure 9 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 9 - Uncatalogued live specimen of Capoeta capoeta. Iran: Ajab Shir town, Ghale Chay River, Urmia basin.
Figure 7 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 7 - Last simple dorsal-fin rays, Capoeta razii sp. n. (Below, IMNRF-UT-1066-9, SL: 116) and C. capoeta (Above, IMNRF-UT-1067-13, SL: 121 mm).
Figure 6 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 6 - Capoeta razii sp. n., paratypes; A IMNRF-UT-4, SL: 130 mm B IMNRF-UT-12, SL: 115 mm C IMNRF-UT-3, SL: 99 mm.
Figure 8 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 8 - Kheyroud River, near Chalos city, Caspian Sea basin, type locality of Capoeta razii sp. n.
Figure 5 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 5 - Ventral view of Head. Capoeta razii sp. n. (right, IMNRF-UT-1072-11, SL: 109 mm) and C. capoeta (left, IMNRF-UT-1067-6, SL: 110 mm).
Figure 4 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 4 - Capoeta razii sp. n., IMNRF-UT-1072-9, holotype, SL: 142.6 mm, Iran: Mazandaran Prov., Chalos city, Kheyroud River, Caspian Sea basin.
Figure 3 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 3 - Haplotype networks of available specimens of Caspian Sea basin. Each independent river system is represented by a different colour. Data from Ghanavi et al. 2016.
Figure 11 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 11 - Principal component analysis of relative morphometric characters of the Capoeta razii sp. n. (+) C. fusca (•) and C. capoeta (◾) populations.
Figure 10 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 10 - Live specimen of Capoeta fusca, IMNRF-UT-1065-1, SL: 124 mm, Iran: North Khorasan prov.: Near Farooj town, at segonbadan village, Qanat-e Segonbadan, Hari basin.
Figure 12 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 12 - Correspondence analysis of meristic characters of the Capoeta razii sp. n. (+) C. fusca (•) and C. capoeta (◾) populations.
Figure 1 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 1 - Map of the southern Caspian Sea basin and sampling points. Numbers of the sampling sites correspond to the numbers of sampling sites in Table 1, circle: Capoeta razii sp. n., triangle: C. fusca, square: C. capoeta.
Figure 2 from: Jouladeh-Roudbar A, Eagderi S, Ghanavi HR, Doadrio I (2017) A new species of the genus Capoeta Valenciennes, 1842 from the Caspian Sea basin in Iran (Teleostei, Cyprinidae). ZooKeys 682: 137-155. https://doi.org/10.3897/zookeys.682.12670
Figure 2 - Capoeta genus; Values at nodes correspond to BI posterior probability/ML bootstrap. Grey bars represent the species delimitations performed with bPTP software.
Fig. 6 in Ponto-Caspian And Mediterranean Faunal And Floral Records Of Upper Pleistocene-Holocene Sediments From The İzmit Gulf (Marmara Sea, Turkey)
Fig. 6 Scanning electron micrographs of selected benthic foraminiferal species identified from the İzmit Gulf drilling cores. a. Cassidulina carinata, 206/33 m. b. Cibicidoides lobatulus, 206/37.5 m: b1, spiral view; b2, umbilical view. c. Cribroelphidium gerthi, 208/1 m: c1, side view; c2, apertural edge view. d. Cribroelphidium poeyanum, 207/31 m: d1, side view; d2, apertural edge view. e. Cribroelphidium poeyanum, 208/9 m. f. Cycloforina villafranca, 208/1 m. g. Discorbinella bertheloti, 205/1.5 m: g1, spiral view; g2, umbilical view. h. Elphidium aculeatum, 208/18 m. i. Elphidium crispum, 208/1 m. j. Elphidium crispum, 206/41 m. k. Elphidium macellum, 207/22.75 m. l. Elphidium macellum, 206/41 m. m. Elphidium punctatum, 208/1 m: m1, side view; m2, apertural edge view. n. Elphidium sp. 208/1 m. o. Eponides concameratus, 206/41 m: o1, spiral view; o2, umbilical view.
Fig. 9 in Ponto-Caspian And Mediterranean Faunal And Floral Records Of Upper Pleistocene-Holocene Sediments From The İzmit Gulf (Marmara Sea, Turkey)
Fig. 9 Scanning electron micrographs of selected benthic foraminiferal species identified from the İzmit Gulf drilling cores. Three planktic species rarely observed in the drillings are illustrated in m, n and o. a. Sigmoilopsis schlumbergeri, 201/1 m. b. Siphonaperta sp., 208/5. c. Spirophthalmidium tenuiseptatum, 201/1 m. d. Stomatorbina concentrica, 207/5 m. e. Textularia aglutinans, 208/9 m. f. Textularia calva, 201/1 m. g. Textularia pala, 205/1.5 m. h. Textularia sagittula, 201/1 m. i. Triloculina marioni, 207/1 m. j. Triloculina plicata, 208/1 m. k. Triloculina tricarinata, 205/1.5 m. l. Valvulineria bradyana, 206/37.5 m: l1, spiral view; l2, umbilical view. m. Globigerina bulloides, 207/22 m. n. Globigerinoides ruber, 201/1 m. o. Turborotalita quinqueloba, 201/1 m.
Figure 11 in Main Pattern of the Caspian Sea Surface Oil Pollution Revealed by Satellite Data
Figure 11. Main pattern and sources of sea surface oil pollution of the Caspian sea, revealed on the basis of satellite remote sensing data: 1 – Natural leakages of liquid hydrocarbons; 2 – Seabed mud volcanoes; 3 – Natural hydrocarbon seafloor seeps off the Sefid Rud Cape; 4 – Natural hydrocarbon seafloor seeps westward of Cheleken Peninsula; 5 – offshore oil-producing platforms in the Cheleken oil field; 6 – Kashagan oil field; 7 – LUKOIL oil-producing area. Main shipping routes depicted by green lines.
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OpenNeuro
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