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588 results for “157”
Figures 157-162 from: Johnson N, Yoder M, Valerio A, Polaszek A, van Noort S, Masner L (2014) Monograph of the Afrotropical species of Scelio Latreille (Hymenoptera, Platygastridae), egg parasitoids of acridid grasshoppers (Orthoptera, Acrididae). ZooKeys 380: 1-188. https://doi.org/10.3897/zookeys.380.5755
Figures 157-162 - 140 Scelio balo sp. n., holotype female (OSUC 212375). 157 Habitus, dorsal view 158 Habitus, lateral view 159 Mesosoma, dorsal view 160 Mesosoma, lateral view 161 Head, anterior view 162 Metasoma, dorsal view. Scale bars in millimeters.
Figures 157-160 from: Mathis W, Zatwarnicki T (2013) A revision of the shore-fly genus Hydrochasma Hendel (Diptera, Ephydridae). ZooKeys 363: 1-161. https://doi.org/10.3897/zookeys.363.6482
Figures 157-160 - Hydrochasma capsum sp. n. (Puerto Rico. Rio Hoconuco) 157 epandrium and cerci, posterior view 158 same, lateral view 159 internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite, hypandrium), ventral view 160 same, lateral view. Scale bar = 0.1 mm.
Figures 4-6 from: Men Q-L, Yu D-P (2015) One new species of the subgenus Hexatoma (Eriocera) Macquart (Diptera, Limoniidae) from China with a key to Chinese species. ZooKeys 477: 157-171. https://doi.org/10.3897/zookeys.477.7570
Figures 4-6 - Hexatoma (Eriocera) cleopatroides Men, sp. n. 4 ovipositor, ventral view 5 aedeagal complex, dorsal view 6 aedeagal complex, lateral view. Abbreviations: aed=aedeagus, cerc=cercus, hyva=hypovalva, pm=paramere.
Figures 1-3 from: Men Q-L, Yu D-P (2015) One new species of the subgenus Hexatoma (Eriocera) Macquart (Diptera, Limoniidae) from China with a key to Chinese species. ZooKeys 477: 157-171. https://doi.org/10.3897/zookeys.477.7570
Figures 1-3 - Hexatoma (Eriocera) cleopatroides Men, sp. n. 1 habitus of male adult, lateral view 2 hypopygium, dorsal view 3 ovipositor, lateral view. Abbreviations: aed=aedeagus, cerc=cercus, goncx=gonocoxite, hyva=hypovalva, i gonst=inner gonostylus, o gonst=outer gonostylus, pm=paramere, t=tergite.
Figure 20 from: Kirichenko N, Huemer P, Deutsch H, Triberti P, Rougerie R, Lopez-Vaamonde C (2015) Integrative taxonomy reveals a new species of Callisto (Lepidoptera, Gracillariidae) in the Alps. ZooKeys 473: 157-176. https://doi.org/10.3897/zookeys.473.8543
Figure 20 - Genitalia measurements (mean values ± standard error) for the two Callisto species studied. The bars marked by an asterisk are significantly different from each other (MWT: Z = 2.36, N = 16, p = 0.02); in others cases, there is no difference between the species.
Figure 21 from: Kirichenko N, Huemer P, Deutsch H, Triberti P, Rougerie R, Lopez-Vaamonde C (2015) Integrative taxonomy reveals a new species of Callisto (Lepidoptera, Gracillariidae) in the Alps. ZooKeys 473: 157-176. https://doi.org/10.3897/zookeys.473.8543
Figure 21 - A neighbor joining tree based on the COI barcode fragment and B based on the histone H3 gene. The two specimens (ISSIK141-14, ISSIK274-14) with the Callisto basistrigella phenotype, but branching within the Callisto coffeella DNA barcode and within the Callisto basistrigella histone H3 cluster are marked with red triangles (as in Fig. 19) in both trees.
Figures 17-18 from: Kirichenko N, Huemer P, Deutsch H, Triberti P, Rougerie R, Lopez-Vaamonde C (2015) Integrative taxonomy reveals a new species of Callisto (Lepidoptera, Gracillariidae) in the Alps. ZooKeys 473: 157-176. https://doi.org/10.3897/zookeys.473.8543
Figures 17-18 - Callisto, female genitalia. 17 Callisto coffeella, Austria, Vorarlberg, Brandnertal, Böser Tritt, 1700–1800 m, 02.VII.1983, leg. Huemer gen. slide TIN 9 (TLMF) 18 Callisto basistrigella sp. n., Prov. Udine, Montasio, 16.IX.1951, leg. Pinker gen. slide TIN 8 (TLMF).
Figure 19 from: Kirichenko N, Huemer P, Deutsch H, Triberti P, Rougerie R, Lopez-Vaamonde C (2015) Integrative taxonomy reveals a new species of Callisto (Lepidoptera, Gracillariidae) in the Alps. ZooKeys 473: 157-176. https://doi.org/10.3897/zookeys.473.8543
Figure 19 - A sampling area of Callisto coffeella and Callisto basistrigella in Europe. B close up of the distribution of Callisto coffeella (green circles) and Callisto basistrigella (white squares) in the Alps; two Callisto basistrigella specimens (red triangles) show evidence of introgression. On Figs 19A, 19B, the 35 barcoded specimens are shown with numbers (1-5). The red circle on Fig. 19B shows the contact zone where both species occur together (Leitnertal, Eastern Tyrol, Austria and Sappada, Italy). When several samples were investigated per locality, the samples with the same coordinates have been slightly shifted in order to visualize overlapping data points on Fig. 19B.
Figures 13-16 from: Kirichenko N, Huemer P, Deutsch H, Triberti P, Rougerie R, Lopez-Vaamonde C (2015) Integrative taxonomy reveals a new species of Callisto (Lepidoptera, Gracillariidae) in the Alps. ZooKeys 473: 157-176. https://doi.org/10.3897/zookeys.473.8543
Figures 13-16 - Callisto, male, segment 8. 13 Callisto coffeella, Vorarlberg Zürs, 1800 m, 29.VI.1939, leg. Burmann, gen. slide TIN 1 (TLMF) 14 Callisto coffeella, Teriol sept., Vent 2000 m, e.l. 01.III.1956, leg. Burmann, gen. slide TIN 4 (TLMF) 15 Callisto basistrigella sp. n., Italia sept. Prov. Udine, Mte. Sernio, Forcella Nuviernulis 1700 m, 16.VII.1988, leg. Huemer, gen. slide TIN 2 (TLMF) 16 Callisto basistrigella sp. n., Italia sept. Prov. Udine, Mte. Sernio, Forcella Nuviernulis 1700 m, 16.VII.1988 leg. Huemer gen. slide TIN 3 (TLMF).
Figures 9-12 from: Kirichenko N, Huemer P, Deutsch H, Triberti P, Rougerie R, Lopez-Vaamonde C (2015) Integrative taxonomy reveals a new species of Callisto (Lepidoptera, Gracillariidae) in the Alps. ZooKeys 473: 157-176. https://doi.org/10.3897/zookeys.473.8543
Figures 9-12 - Callisto, male genitalia. 9 Callisto coffeella, Vorarlberg Zürs, 1800 m, 29.VI.1939, leg. Burmann, gen. slide TIN 1 (TLMF) 10 Callisto coffeella Teriol sept., Vent 2000 m, e.l. 01.III.1956, leg. Burmann, gen. slide TIN 4 (TLMF) 11 Callisto basistrigella sp. n., Italia sept. Prov. Udine, Mte. Sernio, Forcella Nuviernulis 1700 m, 16.VII.1988 leg. Huemer gen. slide TIN 2 (TLMF) 12 Callisto basistrigella sp. n. Italia sept. Prov. Udine, Mte. Sernio, Forcella Nuviernulis 1700 m, 16.VII.1988 leg. Huemer gen. slide TIN 3(TLMF).
Figures 1-8 from: Kirichenko N, Huemer P, Deutsch H, Triberti P, Rougerie R, Lopez-Vaamonde C (2015) Integrative taxonomy reveals a new species of Callisto (Lepidoptera, Gracillariidae) in the Alps. ZooKeys 473: 157-176. https://doi.org/10.3897/zookeys.473.8543
Figures 1-8 - Callisto adults in dorsal view. 1 Callisto coffeella, male, Austria, Leitnertal, Oberer Stuckensee, 2150 m, 07.IX.2013, leg. Deutsch (PCHD) | voucher specimen № 3 | sample ID – NK318 | process ID CALCO003-14 2 Callisto coffeella, male, Austria, Nordtirol, Bodenalpe, 2000 m, 9.–10.VII.1984, leg. Burmann (TLMF); 3 Callisto coffeella, male, Austria, Vorarlberg, Brandnertal, Böser Tritt, 1700-1800 m, 04.VII.1983, leg. Huemer (TLMF) 4 Callisto coffeella, female, Austria, Nordtirol, Obergurgl, 2000 m, e.l. M.III.1970, leg. Burmann (TLMF) 5 Callisto basistrigella sp. n., male, East Tyrol, Lienzer Dolomiten, Laserz, Dolomitenhütte, 1600 m, 12.VII.2013, leg. Deutsch (TLMF) | voucher specimen № 10 | sample ID – NK325 | process ID CALCO010-14 6 Callisto basistrigella sp. n., male, Italy, Prov. Udine, Mte. Sernio, Forcella Nuviernulis, 1700 m, 16.VII.1988, leg. Huemer (TLMF) 7 Callisto basistrigella sp. n., male, Italy, Prov. Udine, Mt. Canin N, Rif. Gilberti, 1850–1950 m, 29.VII.2001, leg. Huemer (TLMF) 8 Callisto basistrigella sp. n., female, Italy, Prov. Udine, Montasio, 16.IX.1951, leg. Pinker (TLMF).
Figure 2 from: Dixie B, White H, Hassall M (2015) Effects of microclimate on behavioural and life history traits of terrestrial isopods: implications for responses to climate change. In: Taiti S, Hornung E, Štrus J, Bouchon D (Eds) Trends in Terrestrial Isopod Biology. ZooKeys 515: 145–157. https://doi.org/10.3897/zookeys.515.9399
Figure 2 - Responses of relative growth rates to temperature and relative humidity. Responses to differences in temperature by a) Oniscus asellus, (F1, 36 = 0.905, P = 0.348) and. b) by Porcellio dilatatus, (F1, 36 = 5.112, P = 0.030); to differences in relative humidity of c) Oniscus asellus, (F1, 36 = 17.125, P < 0.001) and d) Porcellio dilatatus, (F1, 36 = 84.326, P < 0.001). Asterisks denote differences signficance at P < 0.05.
Figure 3 from: Dixie B, White H, Hassall M (2015) Effects of microclimate on behavioural and life history traits of terrestrial isopods: implications for responses to climate change. In: Taiti S, Hornung E, Štrus J, Bouchon D (Eds) Trends in Terrestrial Isopod Biology. ZooKeys 515: 145–157. https://doi.org/10.3897/zookeys.515.9399
Figure 3 - Response of mortality to temperature and relative humidity. Responses to temperature by a) Oniscus asellus, (U = 3097.0, P = 0.640. and b) by Porcellio dilatatus, (U = 2254.5, P = 0.016) and to relative humidity by c) Oniscus asellus (U = 1851.5, P < 0.001) and d) by Porcellio dilatatus (U = 2277.5 P < 0.001). Asterisks denote differences signficance at P < 0.05.
Figure 1 from: Dixie B, White H, Hassall M (2015) Effects of microclimate on behavioural and life history traits of terrestrial isopods: implications for responses to climate change. In: Taiti S, Hornung E, Štrus J, Bouchon D (Eds) Trends in Terrestrial Isopod Biology. ZooKeys 515: 145–157. https://doi.org/10.3897/zookeys.515.9399
Figure 1 - Responses in aggregation index to differences in temperatures and relative humidity: Responses to different temperatures by a) Oniscus asellus, (F 4, 249 = 12.22; P < 0.001) and b) by Porcellio scaber (F4,249 = 3.76; P < 0.001). and to different relative humidies by c) Oniscus asellus, (F 4, 230 = 25.39; P < 0.001) and d) by Porcellio dilatatus (F4,171 = 16.85; P < 0.001). Means sharing the same letter are not significantly different from each other at P < 0.05.
Figure 9 from: Jouladeh Roudbar A, Eagderi S, Esmaeili HR, Coad BW, Bogutskaya N (2016) A molecular approach to the genus Alburnoides using COI sequences data set and the description of a new species, A. damghani, from the Damghan River system (the Dasht-e Kavir Basin, Iran) (Actinopterygii, Cyprinidae). ZooKeys 579: 157-181. https://doi.org/10.3897/zookeys.579.7665
Figure 9 - Uncatalogued Alburnoides coadi, 84.0 mm SL; Iran, Tehran Prov., Nam River, at Firoz Koh, 35°43'20.8"N 52°39'20.0"E.
Figure 8 from: Jouladeh Roudbar A, Eagderi S, Esmaeili HR, Coad BW, Bogutskaya N (2016) A molecular approach to the genus Alburnoides using COI sequences data set and the description of a new species, A. damghani, from the Damghan River system (the Dasht-e Kavir Basin, Iran) (Actinopterygii, Cyprinidae). ZooKeys 579: 157-181. https://doi.org/10.3897/zookeys.579.7665
Figure 8 - Results of a DMS analysis showing observed similarities/dissimilarities (distances) between the examined groups of samples of Alburnoides, from the Caspian Sea basin and adjacent endorheic basins, based on meristic characters (Table 5). 1 Alburnoides eichwaldii 2 Alburnoides cf. eichwaldii: west of Safid River 3 Alburnoides samiii 4 Alburnoides tabarestanensis 5 Alburnoides parhami 6 Alburnoides parhami (data from Mousavi-Sabet et al. 2015b) 7 Alburnoides holciki 8 Alburnoides varentsovi 9 Alburnoides sp. Amu Darya River 10 Alburnoides damghani sp. n. 11 Alburnoides namaki 12 Alburnoides coadi (data from Mousavi-Sabet et al. 2015b) 13 Alburnoides petrubanarescui.
Figure 6 from: Jouladeh Roudbar A, Eagderi S, Esmaeili HR, Coad BW, Bogutskaya N (2016) A molecular approach to the genus Alburnoides using COI sequences data set and the description of a new species, A. damghani, from the Damghan River system (the Dasht-e Kavir Basin, Iran) (Actinopterygii, Cyprinidae). ZooKeys 579: 157-181. https://doi.org/10.3897/zookeys.579.7665
Figure 6 - Alburnoides damghani sp. n., radiograph of a paratype (ZM-CBSU 2011-1) showing 20+20 vertebral formula.
Figure 5 from: Jouladeh Roudbar A, Eagderi S, Esmaeili HR, Coad BW, Bogutskaya N (2016) A molecular approach to the genus Alburnoides using COI sequences data set and the description of a new species, A. damghani, from the Damghan River system (the Dasht-e Kavir Basin, Iran) (Actinopterygii, Cyprinidae). ZooKeys 579: 157-181. https://doi.org/10.3897/zookeys.579.7665
Figure 5 - Live specimen of Alburnoides damghani sp. n., Iran, Semnan Prov., Cheshmeh Ali, Damghan River tributary.
Figure 4 from: Jouladeh Roudbar A, Eagderi S, Esmaeili HR, Coad BW, Bogutskaya N (2016) A molecular approach to the genus Alburnoides using COI sequences data set and the description of a new species, A. damghani, from the Damghan River system (the Dasht-e Kavir Basin, Iran) (Actinopterygii, Cyprinidae). ZooKeys 579: 157-181. https://doi.org/10.3897/zookeys.579.7665
Figure 4 - Alburnoides damghani sp. n., paratypes CMNFI 2015-0091A, a, 67.6 mm SL, b, 60.5 mm SL, Iran, Semnan Prov., Cheshmeh Ali, Damghan River tributary.
Figure 3 from: Jouladeh Roudbar A, Eagderi S, Esmaeili HR, Coad BW, Bogutskaya N (2016) A molecular approach to the genus Alburnoides using COI sequences data set and the description of a new species, A. damghani, from the Damghan River system (the Dasht-e Kavir Basin, Iran) (Actinopterygii, Cyprinidae). ZooKeys 579: 157-181. https://doi.org/10.3897/zookeys.579.7665
Figure 3 - Alburnoides damghani sp. n., CMNFI 2015-0091, holotype, female, 67.0 mm SL; Iran, Semnan Prov., Cheshmeh Ali, Damghan River tributary.
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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.