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68 results for “Capoeta capoeta”
Fig. 1 in Capoeta saadii
Fig. 1. Gonadal differentiation in embryos exposed to E2 or PPT. (A–D) Representative cross-sections of HE stained gonads at stage 26 for the control male (A), control female (B), E2-exposed male (C) and PPT-exposed male (D). Control testis showing well-developed seminiferous tubules (*); the control ovary shows thicker cortex (#) and lacunae structure (arrowheads). Gonads from E2- and PPT-exposed males did not form seminiferous tubules or similar characteristics to the control ovary. Scale bar = 100 μm.
Fig. 2 in Capoeta saadii
Fig. 2. Trichomycterus vitalbrazili. Brazil: Rio de Janeiro State: Nova Friburgo Municipality: Rio Paraíba do Sul basin. (a) UFRJ 12151, 88.0 mm SL (preserved holotype), left lateral view; (b) UFRJ 12151, 88.0 mm SL (live holotype), left lateral view. Caudal-fin margin of holotype is damaged, see figure 6 for correct information of caudal morphology.
Fig. 5 in Capoeta shajariani Jouladeh-Roudbar, Eagderi, Murillo-Ramos, Ghanavi and Doadrio 2017
Fig. 5. Boxplots of wing ratios among 11 Neotropical bat guilds. Comparisons include (a) LD3/FL ratio, (b) LD5/FL ratio, and (c) LD3/LD5 ratio. Acronyms for bat guilds are defined in table 1.
Fig. 6 in Capoeta shajariani Jouladeh-Roudbar, Eagderi, Murillo-Ramos, Ghanavi and Doadrio 2017
Fig. 6. Multidimensional Scaling (MDS) ordination plot showing variation of individual bone structures among bat guilds. Each dot represents a species and the relative distance between two points reflect the relative dissimilarity. Polygons represents each one of the bat guilds. Metacarpals and phalanges are scaled to size (i.e., wing structure /FL ratio) and are found in figure 1. Acronyms for bat guilds are defined in table 1.
Fig. 75. Capoeta fusca. Photograph from Qanat-e in Fig. 4 in Fig. 4 in Fig. 3 in Fig. 21. Sesarmops mora n in Paralbunea dayriti
Fig. 75. Capoeta fusca. Photograph from Qanat-e Segonbadan, Caspian Sea basin (According to data of Iran basins from Diva GIS, it is located in the Caspian Sea basin).
Figure 3 in Capoeta aydinensis, a new species of scraper from southwestern Anatolia, Turkey (Teleostei: Cyprinidae)
Figure 3. Capoeta aydinensis, holotype, FFR 01926, 171 mm SL, female (a); FFR 01897, 158 mm SL, female (b), 133 mm SL, male (c), Büyük Menderes River.
Figure 1 in Capoeta aydinensis, a new species of scraper from southwestern Anatolia, Turkey (Teleostei: Cyprinidae)
Figure 1. Last simple dorsal-fin rays of: Capoeta aydinensis, paratype, FFR 01897, 120 mm SL (a), 130 mm SL (b), Büyük Menderes River; C. bergamae, FFR 00741, 132 mm SL (c), 125 mm SL (d), Gediz River; C. damascina, FFR 00731, 150 mm SL (e), 120 mm SL (f), Orontes River.
Figure. Lateral view and mouth shape of (A) Capoeta damascina, NUIC-1519, 158.9 mm SL; Malatya prov.: Sürgü Stream. TigrisEuphrates basin (B) C. damascina, NUIC-1520, 163.5 mm SL; Gaziantep prov.: Merzimen Stream, Tigris-Euphrates basin (C) C. damascina, NUIC-1521, 152.3 mm SL; Adıyaman prov.: Input of Atatürk Dam Lake, Tigris-Euphrates basin (D) C. damascina, NUIC-1817, 127.3 mm SL; Kilis prov.: Sapkanlı Pond, Orontes basin (E) C. kosswigi, NUIC-1907, 179.3 mm SL; Van prov.: Karasu Stream, Lake Van basin (All from Turkey). in Capoeta kosswigi Karaman, 1969 a junior synonym of Capoeta damascina (Valenciennes, 1842) (Teleostei: Cyprinidae)
Figure. Lateral view and mouth shape of (A) Capoeta damascina, NUIC-1519, 158.9 mm SL; Malatya prov.: Sürgü Stream. TigrisEuphrates basin (B) C. damascina, NUIC-1520, 163.5 mm SL; Gaziantep prov.: Merzimen Stream, Tigris-Euphrates basin (C) C. damascina, NUIC-1521, 152.3 mm SL; Adıyaman prov.: Input of Atatürk Dam Lake, Tigris-Euphrates basin (D) C. damascina, NUIC-1817, 127.3 mm SL; Kilis prov.: Sapkanlı Pond, Orontes basin (E) C. kosswigi, NUIC-1907, 179.3 mm SL; Van prov.: Karasu Stream, Lake Van basin (All from Turkey).
Figure 3 in Effects of nitrogen fertilizer on Capoeta capoeta: an immunohistopathological and biochemical investigation
Figure 3. Immunohistochemistry for SOD. No SOD immunoreactivity in liver tissue in group 1 (a). Moderate and strong SOD immunoreactivity (arrows) in hepatocytes in group 2 (b) and group 3 (c), respectively. In gill tissue, no SOD immunoreactivity in group 1 (d) while few lamellar epithelial cells show light to moderate SOD immunoreactivity (arrows) in group 2 (e) and group 3 (f). In intestine tissue, no SOD immunoreactivity in group 1 (g) while moderate to strong reactivity (arrows) in intestinal villi epithelia in group 2 (h) and group 3 (i). Group 1: control, group 2: fish exposed to 15 mg/L nitrogen fertilizer for 15 days, and group 3: fish exposed to 30 mg/L nitrogen fertilizer for 15 days.
Figure 2 in Effects of nitrogen fertilizer on Capoeta capoeta: an immunohistopathological and biochemical investigation
Figure 2. Immunohistochemistry for catalase. In liver tissue, no catalase immunoreactivity in group 1 (a) while there are many hepatocytes showing strong immunoreactivity (arrows) in group 2 (b) and group 3 (c). No catalase immunoreactivity is present in gill tissue in group 1 (d). Light to moderate catalase immunoreactive cells were seen in lamellar epithelia (arrows) in group 2 (e) and group 3 (f). No catalase immunoreactivity in intestine tissue in group 1 (g), group 2 (h), and group 3 (i). Group 1: control, group 2: fish exposed to 15 mg/L nitrogen fertilizer for 15 days, and group 3: fish exposed to 30 mg/L nitrogen fertilizer for 15 days.
Figure 1 in Effects of nitrogen fertilizer on Capoeta capoeta: an immunohistopathological and biochemical investigation
Figure 1. Histopathology of liver tissue in group 1 (a), group 2 (b), and group 3 (c). Hydropic degeneration in hepatocytes (black arrows) in nitrogen fertilizer exposed fish. In gill tissue, normal histomorphology in group 1 (d) while blunting and association in some secondary lamellae (black arrows) and some vacuolated epithelia (white arrows) in group 2 (e) and group 3 (f). Normal intestinal morphology in group 1 (g) while occasional blunting in intestinal villi (black arrows) in group 2 (h) and group 3 (i). Group 1: control, group 2: fish exposed to 15 mg/L nitrogen fertilizer for 15 days, and group 3: fish exposed to 30 mg/L nitrogen fertilizer for 15 days. Hematoxylin-eosin.
Figure 3 in Capoeta raghazensis, a new species of algae-scraping cyprinid from the Raghaz Canyon in Hormuz basin, southern Iran (Teleostei: Cyprinidae)
Figure 3. Ventral view of Head. Capoeta raghazensis sp. n. (A: IMNRF-UT-1105-4, 114 mm SL, male; B: IMNRF-UT-1105-7, 231 mm SL, female; C: IMNRF-UT-1105-6, 200 mm SL, female; D: IMNRF-UT-1105-4, 111.8 mm SL, male).
Figure 2 in Capoeta raghazensis, a new species of algae-scraping cyprinid from the Raghaz Canyon in Hormuz basin, southern Iran (Teleostei: Cyprinidae)
Figure 2. Capoeta raghazensis sp. n., paratypes; A, IMNRF-UT-1105-7; 231 mm SL; B, IMNRF-UT-1105-6; 200 mm SL; C, IMNRF-UT- 1105-4; 114 mm SL.
Figure 2 in Capoeta raghazensis, a new species of algae-scraping cyprinid from the Raghaz Canyon in Hormuz basin, southern Iran (Teleostei: Cyprinidae)
Figure 2. Capoeta raghazensis sp. n., IMNRF-UT-1105-4, holotype, 112 mm SL. Iran: Hormuzgan prov., Darab City, Raghaz Canyon, Hormuz basin.
Figure 4 in Capoeta raghazensis, a new species of algae-scraping cyprinid from the Raghaz Canyon in Hormuz basin, southern Iran (Teleostei: Cyprinidae)
Figure 4. Raghaz Canyon, near Darab City, Hormuz basin, type locality of Capoeta raghazensis, sp. n..
Fig. 1 in Capoeta Svanetica (Teleostei, Cyprinidae), A New Species From The Luchunis River (Rioni River Drainage) In Georgia
Fig. 1. Genus Capoeta distribution in river basins of Georgia and some neighbors.
Fig. 3 in Capoeta Svanetica (Teleostei, Cyprinidae), A New Species From The Luchunis River (Rioni River Drainage) In Georgia
Fig. 3. Mouth shape male (left) SL = 136 mm and female (right) SL = 118 mm.
FIGURE 4 in Capoeta anamisensis, a new species from the Minab and Hasan Langhi River drainages in Iran (Teleostei: Cyprinidae)
FIGURE 4. Capoeta anamisensis, paratypes; a, ZM-CBSU Z128; 134 mm SL; b, ZM-CBSU Z132, 150 mm SL; c, ZM-CBSU Z126, 134 mm SL; Iran: Moradabad River.
FIGURE 2 in Capoeta anamisensis, a new species from the Minab and Hasan Langhi River drainages in Iran (Teleostei: Cyprinidae)
FIGURE 2. Condensed Bayesian tree inferred from COI sequences. Numbers left of the slash, indicate the posterior probabilities of the Bayesian analysis, using MrBayes, while numbers right of the slash are the bootstrap support for 10,000 replicates in the Maximum Likelihood tree, using RaxML. Asterisks (*) indicate less than 50% Maximum Likelihood support for the node.
FIGURE 1. Condensed Bayesian tree inferred from cyt b in Capoeta anamisensis, a new species from the Minab and Hasan Langhi River drainages in Iran (Teleostei: Cyprinidae)
FIGURE 1. Condensed Bayesian tree inferred from cyt b. Numbers right of the slash, indicate the posterior probabilities of the Bayesian analysis, using MrBayes, while numbers left of the slash are the bootstrap support for 10,000 replicates in the Maximum Likelihood tree, using RaxML. Asterisks (*) indicate less than 50% Maximum Likelihood support for the node.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.