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Figure 4. Geographic location map for Pepsis cerberus Lucas, P in Morphometric analysis and taxonomic re-evaluation of Pepsis cerberus Lucas and P. elegans Lepeletier (Hymenoptera: Pompilidae: Pepsinae: Pepsini)
Figure 4. Geographic location map for Pepsis cerberus Lucas, P. elegans Lepeletier, and P. novitia Banks in the Nearctic Region (based on Brimley 1936; Hurd 1952; Krombein 1952; Johnston 2000; Bond and Opell 2002; Vardy 2005; Leavengood et al. 2011; Bond and Godwin 2013; Hamilton et al. 2016; Norden 2017; Godwin and Bond 2021; Durand, pers. comm.; BugGuide. net; flickr.com; iNaturalist.org; gbif.org; SCAN; and specimen records from 36 insect collections). Black lines represent range limits of potential host spider genera. Solid black line represents the geographic limit of Ummidia (Halonoproctidae) species (Godwin and Bond 2021). Dashed black line represents the geographic limit of Aphonopelma (Theraphosidae) species (Hamilton et al. 2016). Dotted black line represents geographic limit of Eucteniza (Euctenizidae) species (Bond and Godwin 2013). Dash-dotted black line represents the geographic limit of Entychides Simon (Euctenizidae) species (Bond and Opell 2002). Map is adapted from Kurczewski (2023a).
Located Earthquakes Loki's Castle 2019-2020 Deployment
<div>The dataset includes information about the 6977 located events from the 2019-2020 Loki ocean bottom seismometer deplyoment (network code: 8M). The events cover the deplyoment period of 11 months and were recorded by 8 ocean bottom seismometers west of Loki's Castle hydrothermal vent field with a station spacing of 5-6 km. Earthquakes were detected using Lassie, automatically picked using PhaseNet, and partially manually re-picked. Events for location were chosen to have at least 7 P phase picks and were located using NonLinLoc with the EDT_OT inversion scheme. Amplitudes were automatically picked with SEISANs automag function. Local magnitudes were calculated using the hypocentral distance. </div>
Dataset: Ituran Location and Control Ltd. (ITRN) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Fig. 1 Location map. a. Turkey map, b in Ponto-Caspian And Mediterranean Faunal And Floral Records Of Upper Pleistocene-Holocene Sediments From The İzmit Gulf (Marmara Sea, Turkey)
Fig. 1 Location map. a. Turkey map, b. Gulf of İzmit and Osmangazi Bridge Route, c. Locations and numbers of drillings.
Fig. 2 in Two new Myxobolus spp. (Myxozoa: Myxobolidae) from white bream, Blicca bjoerkna (Linnaeus, 1758) developing in basifilamental location of gills
Fig. 2. Schematic illustration of Myxobolus spp. myxospores. a – M. bjoerknae sp. n. in frontal view, b – in sutural view; c – M. lamellobasis sp. n. in frontal view, d – in sutural view. Scale bar: 10 µm.
Fig. 3 in Two new Myxobolus spp. (Myxozoa: Myxobolidae) from white bream, Blicca bjoerkna (Linnaeus, 1758) developing in basifilamental location of gills
Fig. 3. Histological section of the cartilaginous gill arch of white bream. p – plasmodium of Myxobolus bjoerknae sp. n., c – cartilaginous base of the filaments, f – gill filament, ct – connective tissue; arrows indicate gill lamellae. Haematoxylin and eosin staining (H & E). Scale bar: 100 µm.
Fig. 1. a in Two new Myxobolus spp. (Myxozoa: Myxobolidae) from white bream, Blicca bjoerkna (Linnaeus, 1758) developing in basifilamental location of gills
Fig. 1. a – spores of Myxobolus bjoerknae sp. n. infecting the cartilaginous gill arch in frontal view; inset: spores in sutural view; b – spores of M. lamellobasis sp. n. from the base of the gill filaments in frontal view; inset: spores in sutural view. Scale bars: 10 µm.
Fig. 5 in Two new Myxobolus spp. (Myxozoa: Myxobolidae) from white bream, Blicca bjoerkna (Linnaeus, 1758) developing in basifilamental location of gills
Fig. 5. Phylogenetic tree generated by Bayesian inference (GTR + I + Γ model) based on a 1613 bp-long alignment of 18S rDNA sequences of 43 myxosporean taxa. New Myxobolus spp. sequences are in bold. Ceratomyxa shasta was chosen as outgroup. Posterior probabilities are shown at nodes. NCBI accession numbers are in brackets.
Рис. 1. Карта-схема распоΛожения станций отбора проб на р. Амазар Fig.1. Location of sampling stations on the Amazar River in Species Composition And Quantitative Indicators Of Rotifers And Crustaceans In The Middle And Lower Streams Of The Amazar River (Zabaikalskiy Kray)
Рис. 1. Карта-схема распоΛожения станций отбора проб на р. Амазар Fig.1. Location of sampling stations on the Amazar River
Рис. 1. Размещение трансект (спΛошные черные Λинии) и Αаты провеΑения учетов в Охотском море и сопреΑеΛьных воΑах Тихого океана и Японского моря в февраΛе — мае 2020 г. РыбоΛовные районы: 05.1 — Северо-Охотоморская поΑзона; 05.2 — ЗапаΑно-Камчатская поΑзона; 05.3 — Восточно-СахаΛинская поΑзона; 05.4 — Камчатско-КуриΛьская поΑзона; 03 — Северо-КуриΛьская зона; 04 — Южно-КуриΛьская зона; 06 — зона Японское море. Пунктиром показана 200-метровая изобата Fig. 1. Transect locations (solid black lines) and dates of surveys in the Sea of Okhotsk and adjacent waters of the Pacific Ocean and the Sea of Japan in February–May 2020. Codes of the fishery areas are as follows: 05.1 — Northern Sea of Okhotsk Subzone; 05.2 — West Kamchatka Subzone; 05.3 — East Sakhalin Subzone; 05.4 — Kamchatka-Kuril Subzone; 03 — North Kuril Zone; 04 — South Kuril Zone; 06 — Sea of Japan Zone. Dotted line indicates a 200 m isobath in Population of seabirds in the Sea of Okhotsk and adjacent waters of the Pacific Ocean and the Sea of Japan during the winter-spring period of 2020
Рис. 1. Размещение трансект (спΛошные черные Λинии) и Αаты провеΑения учетов в Охотском море и сопреΑеΛьных воΑах Тихого океана и Японского моря в февраΛе — мае 2020 г. РыбоΛовные районы: 05.1 — Северо-Охотоморская поΑзона; 05.2 — ЗапаΑно-Камчатская поΑзона; 05.3 — Восточно-СахаΛинская поΑзона; 05.4 — Камчатско-КуриΛьская поΑзона; 03 — Северо-КуриΛьская зона; 04 — Южно-КуриΛьская зона; 06 — зона Японское море. Пунктиром показана 200-метровая изобата Fig. 1. Transect locations (solid black lines) and dates of surveys in the Sea of Okhotsk and adjacent waters of the Pacific Ocean and the Sea of Japan in February–May 2020. Codes of the fishery areas are as follows: 05.1 — Northern Sea of Okhotsk Subzone; 05.2 — West Kamchatka Subzone; 05.3 — East Sakhalin Subzone; 05.4 — Kamchatka-Kuril Subzone; 03 — North Kuril Zone; 04 — South Kuril Zone; 06 — Sea of Japan Zone. Dotted line indicates a 200 m isobath
Рис. 1. РаспоΛожение стационаров вбΛизи насеΛенных пунктов, в окрестностях которых собираΛись воΑные и почвенные пробы: 1 —ЗакатаΛа (41.755469 N, 46.658248 E; 2 — ИсмаиΛΛы (40.971043 N, 48.133806 E; 3 — ПиргуΛи (40.868328 N, 48.599481 E); 4 — АΛтыагач (40.942707 N, 49.027354 E); 5 — Шемаха (40.742370 N, 48.639842 E); 6 — Куба (41.424798 N, 48.487536 E) Fig 1. Location of Permanent Sampling Points near the settlements in the vicinity of which water and soil samples were collected: 1 — Zagatala (41.755469 N, 46.658248 E; 2 — Ismayilli (40.971043 N, 48.133806 E; 3 — Pirguli (40.868328 N, 48.599481 E); 4 — Altiagach (40.942707 N, 49.027354 E); 5 — Shemakha (40.742370 N, 48.639842 E); 6 — Сuba (41.424798 N, 48.487536 E) in Ciliates of fresh waters and soils of the Greater Caucasus (within Azerbaijan)
Рис. 1. РаспоΛожение стационаров вбΛизи насеΛенных пунктов, в окрестностях которых собираΛись воΑные и почвенные пробы: 1 —ЗакатаΛа (41.755469 N, 46.658248 E; 2 — ИсмаиΛΛы (40.971043 N, 48.133806 E; 3 — ПиргуΛи (40.868328 N, 48.599481 E); 4 — АΛтыагач (40.942707 N, 49.027354 E); 5 — Шемаха (40.742370 N, 48.639842 E); 6 — Куба (41.424798 N, 48.487536 E) Fig 1. Location of Permanent Sampling Points near the settlements in the vicinity of which water and soil samples were collected: 1 — Zagatala (41.755469 N, 46.658248 E; 2 — Ismayilli (40.971043 N, 48.133806 E; 3 — Pirguli (40.868328 N, 48.599481 E); 4 — Altiagach (40.942707 N, 49.027354 E); 5 — Shemakha (40.742370 N, 48.639842 E); 6 — Сuba (41.424798 N, 48.487536 E)
FIGURE 1. Fossil locations and fossil ages. A in Leaf trait data of two Miocene floras from eastern China and its palaeoclimate implications
FIGURE 1. Fossil locations and fossil ages. A, yellow points indicate the locations of fossil floras. The numbered red lines indicate the regional vegetation of southeastern China (background picture by GeoMapApp: geomapapp.org; the vegetation division after Zhang et al., 2007): 1, tropical rainforest and humid rainforest; 2, subtropical evergreen broad-leaved forest; 3, warm temperate deciduous oak forest; B, fossil ages of the Toupi flora (17 – 14 Ma) and Shengxian flora (10.5 ± 0.5 Ma).
FIGURE 1. Location plate and field photographs. A in Approaching the Khersonian Crisis: Fish otoliths from the upper Bessarabian (middle Sarmatian s.l.; Late Miocene) of Jurkine (Kerch Peninsula, Crimea)
FIGURE 1. Location plate and field photographs. A) Jurkine cliff and outcrop with indication of stratigraphy, lithological levels (Roman numerals), and sample levels (Arabic numerals). B) Detail of middle Sarmatian section with lithological levels (Roman numerals) and sample levels (Arabic numerals); Ot1 and Ot2 indicate levels from which the studied otoliths were obtained for Bratishko et al. (2023). C) Insert map of Ukraine with Kerch Peninsula highlighted. D) Simplified geological map of Kerch Peninsula modified after Andrusov (1893). E) Goby monument in Berdyansk, Ukraine.
FIGURE 1. Location map. A, A in The Pannonian Basin System northern margin paleogeography, climate, and depositional environments in the time range during MMCT (Central Paratethys, Novohrad-Nógrád Basin, Slovakia)
FIGURE 1. Location map. A, A) Position of Novohrad-Nógrád Basin within the Pannonian Basin System. Modified from Rybár et al., 2016. B) Location map of studied sections. C) Lithostratigraphic scheme. Explanatory notes: FPB- Fiľakovo-Pétervására Basin; DB- Danube Basin; NNB-Novohrad-Nógrád Basin. Modified from Gradstein et al., 2012.
Figure 3 in Validation of Wind Speed Calculated on Satellite Altimetry Data by Measurements on Weather Stations Located Along the White Sea Coast
Figure 3. The dependence of the speed wind at a height Figure 4. In-situ MS data breakdown scheme for a
Figure 5 in Validation of Wind Speed Calculated on Satellite Altimetry Data by Measurements on Weather Stations Located Along the White Sea Coast
Figure 5. The dependence of the correlation coefficient between in-situ wind speed at the WS and remote sensing data on the orientation angle of the main quadrants (a) and their position relative to the White Sea coastline (b).
Рис. 4. РаспреΑеΛение рыб в верхнем и нижнем бьефе в периоΑ осенней миграции 2018 г. (а) и верхнем бьефе в весеннюю миграцию 2019 г. (б). Точками показаны места фиксации рыб эхоΛотом Fig. 4. Distribution of fish upstream and downstream of the reservoir during the autumn migration of 2018 (а) and upstream of the reservoir during the spring migration of 2019 (b). Points indicate the locations where fish were registered by echosounder in Dynamics and current status of the Amazar River ichthyofauna after the construction of the PPM «Polyarnaya» hydroelectric complex
Рис. 4. РаспреΑеΛение рыб в верхнем и нижнем бьефе в периоΑ осенней миграции 2018 г. (а) и верхнем бьефе в весеннюю миграцию 2019 г. (б). Точками показаны места фиксации рыб эхоΛотом Fig. 4. Distribution of fish upstream and downstream of the reservoir during the autumn migration of 2018 (а) and upstream of the reservoir during the spring migration of 2019 (b). Points indicate the locations where fish were registered by echosounder
Рис. 3. Platarctia ornata: 1–4 — имаго, виΑ сверху (1, 2 — самцы; 3, 4 — самки); 5–10 — гусеницы сеΑьмого возраста (5, 6 — форма с черными и рыжими воΛосками; 7, 8 — форма с рыжими воΛосками; 9, 10 — форма с черными воΛосками); 11 — кокон; 12–14 — кукоΛка; 15 — неΑавно отроΑившийся самец. 5, 7, 9, 13 — виΑ сбоку; 6, 8, 10, 14 — виΑ сверху; 12 — виΑ снизу. Δанные сбора имаго: 1 — Буреинский заповеΑник, 4 км В корΑона «Новый МеΑвежий», 1400 м наΑ ур. м., 24.06.2014; 2, 3 — Буреинский заповеΑник, корΑон «Новый МеΑвежий», ex pupa 12–13.09.2018; 4 — там же, 4.07.2018 Fig. 3. Platarctia ornata: 1–4 — imago, dorsal view (1, 2 — males; 3, 4 — females); 5–10 — seventh instar larvae (5, 6 — with black and red hairs; 7, 8 — with red hairs; 9, 10 — with black hairs only); 11 — cocoon; 12–14 — pupа; 15 — newly emerged male. 5, 7, 9, 13 — lateral view; 6, 8, 10, 14 — dorsal view; 12 — ventral view. Data labels for imago insects: 1 — Bureinsky State Nature Reserve, 4 km E Novyi Medvezhii cordon, 1400 m above sea level, 24.06.2014; 2, 3 — Bureinsky State Nature Reserve, Novyi Medvezhii cordon, ex pupa 12–13.09.2018; 4 — same location, 4.07.2018 in Moths (Lepidoptera, Macroheterocera, Excluding Geometridae And Noctuidae S.L.) Of The Bureinsky State Nature Reserve And Adjacent Territories (Khabarovsk Krai, Russia)
Рис. 3. Platarctia ornata: 1–4 — имаго, виΑ сверху (1, 2 — самцы; 3, 4 — самки); 5–10 — гусеницы сеΑьмого возраста (5, 6 — форма с черными и рыжими воΛосками; 7, 8 — форма с рыжими воΛосками; 9, 10 — форма с черными воΛосками); 11 — кокон; 12–14 — кукоΛка; 15 — неΑавно отроΑившийся самец. 5, 7, 9, 13 — виΑ сбоку; 6, 8, 10, 14 — виΑ сверху; 12 — виΑ снизу. Δанные сбора имаго: 1 — Буреинский заповеΑник, 4 км В корΑона «Новый МеΑвежий», 1400 м наΑ ур. м., 24.06.2014; 2, 3 — Буреинский заповеΑник, корΑон «Новый МеΑвежий», ex pupa 12–13.09.2018; 4 — там же, 4.07.2018 Fig. 3. Platarctia ornata: 1–4 — imago, dorsal view (1, 2 — males; 3, 4 — females); 5–10 — seventh instar larvae (5, 6 — with black and red hairs; 7, 8 — with red hairs; 9, 10 — with black hairs only); 11 — cocoon; 12–14 — pupа; 15 — newly emerged male. 5, 7, 9, 13 — lateral view; 6, 8, 10, 14 — dorsal view; 12 — ventral view. Data labels for imago insects: 1 — Bureinsky State Nature Reserve, 4 km E Novyi Medvezhii cordon, 1400 m above sea level, 24.06.2014; 2, 3 — Bureinsky State Nature Reserve, Novyi Medvezhii cordon, ex pupa 12–13.09.2018; 4 — same location, 4.07.2018
Рис. 2. Psychidae: 1 — Sterrhopterix fusca, самец, Буреинский заповеΑник, корΑон «КП», 26.06.2020 (1a — генитаΛии); Arctiidae: 2 — Atolmis rubricollis, самец, Буреинский заповеΑник, корΑон «Новый МеΑвежий», 6.07.2016; 3 — Dodia albertae, самец, там же, 2.07.2016; 4 — D. albertae, самка, там же, 2.07.2016; 5 — D. diaphana, самка, там же, 2.07.2016; 6 — D. diaphana, самец, там же, 3.07.2016; 7 — Borearctia menetriesii, самка, там же, 1.07.2018; 8 — Arctia caja sajana, самец, там же, 26.07.2018; 9 — A. c. sajana, самка, там же, 8.07.2020; 10 — A. flavia, самец, там же, 28.07.2017; 11 — A. flavia, самец, Нанайский р-н, автоΑорога «ΑиΑога — Ванино», ручей СтуΑеный, 8–12.07.2014 Fig. 2. Psychidae: 1 — Sterrhopterix fusca, Bureinsky State Nature Reserve, cordon "KP", 26.06.2020 (1a — genitalia); Arctiidae: 2 — Atolmis rubricollis, male, Bureinsky State Nature Reserve, Novyi Medvezhii cordon, 6.07.2016; 3 — Dodia albertae, male, same location, 2.07.2016; 4 — D. albertae, female, same location, 2.07.2016; 5 — D. diaphana, female, same location, 2.07.2016; 6 — D. diaphana, male, same location, 3.07.2016; 7 — Borearctia menetriesii, female, same location, 1.07.2018; 8 — Arctia caja sajana, male, same location, 26.07.2018; 9 — A. c. sajana, female, same location, 8.07.2020; 10 — A. flavia, male, same location, 28.07.2017; 11 — A. flavia, male, Nanaisky District, "Lidoga–Vanino" motorway, Studenyi creek, 8–12.07.2014 in Moths (Lepidoptera, Macroheterocera, Excluding Geometridae And Noctuidae S.L.) Of The Bureinsky State Nature Reserve And Adjacent Territories (Khabarovsk Krai, Russia)
Рис. 2. Psychidae: 1 — Sterrhopterix fusca, самец, Буреинский заповеΑник, корΑон «КП», 26.06.2020 (1a — генитаΛии); Arctiidae: 2 — Atolmis rubricollis, самец, Буреинский заповеΑник, корΑон «Новый МеΑвежий», 6.07.2016; 3 — Dodia albertae, самец, там же, 2.07.2016; 4 — D. albertae, самка, там же, 2.07.2016; 5 — D. diaphana, самка, там же, 2.07.2016; 6 — D. diaphana, самец, там же, 3.07.2016; 7 — Borearctia menetriesii, самка, там же, 1.07.2018; 8 — Arctia caja sajana, самец, там же, 26.07.2018; 9 — A. c. sajana, самка, там же, 8.07.2020; 10 — A. flavia, самец, там же, 28.07.2017; 11 — A. flavia, самец, Нанайский р-н, автоΑорога «ΑиΑога — Ванино», ручей СтуΑеный, 8–12.07.2014 Fig. 2. Psychidae: 1 — Sterrhopterix fusca, Bureinsky State Nature Reserve, cordon "KP", 26.06.2020 (1a — genitalia); Arctiidae: 2 — Atolmis rubricollis, male, Bureinsky State Nature Reserve, Novyi Medvezhii cordon, 6.07.2016; 3 — Dodia albertae, male, same location, 2.07.2016; 4 — D. albertae, female, same location, 2.07.2016; 5 — D. diaphana, female, same location, 2.07.2016; 6 — D. diaphana, male, same location, 3.07.2016; 7 — Borearctia menetriesii, female, same location, 1.07.2018; 8 — Arctia caja sajana, male, same location, 26.07.2018; 9 — A. c. sajana, female, same location, 8.07.2020; 10 — A. flavia, male, same location, 28.07.2017; 11 — A. flavia, male, Nanaisky District, "Lidoga–Vanino" motorway, Studenyi creek, 8–12.07.2014
Рис. 4. Grammia quenseli liturata: 1–4 — имаго (1, 2 — самцы, 3, 4 — самки); 5–7 — гусеницы сеΑьмого возраста (5, 6 — форма с ΑорсаΛьной Λинией, 7 — форма без ΑорсаΛьной Λинии); 8–10 — кукоΛка; 11, 12 — кремастер кукоΛки. 1–4, 5, 7, 10 — виΑ сверху; 6, 9, 12 — виΑ сбоку; 8, 11 — виΑ снизу. Δанные сбора имаго: 1, 3 — Буреинский заповеΑник, окрестности корΑона «Новый МеΑвежий», 5–6.07.2018; 2, 4 — там же, ex pupa 23–30.08.2018 Fig. 4. Grammia quenseli liturata: 1–4 — imago (1, 2 — males, 3, 4 — females); 5–7 — seventh instar larvae (5, 6 — with white dorsal line, 7 — without dorsal line); 8–10 — pupa; 11, 12 — cremaster. 1–4, 5, 7, 10 — dorsal view; 6, 9, 12 — lateral view; 8, 11 — ventral view. Data labels for imago: 1, 3 — Bureinsky State Nature Reserve, near Novyi Medvezhii cordon, 5–6.07.2018; 2, 4 — same location, 23–30.08.2018 in Moths (Lepidoptera, Macroheterocera, Excluding Geometridae And Noctuidae S.L.) Of The Bureinsky State Nature Reserve And Adjacent Territories (Khabarovsk Krai, Russia)
Рис. 4. Grammia quenseli liturata: 1–4 — имаго (1, 2 — самцы, 3, 4 — самки); 5–7 — гусеницы сеΑьмого возраста (5, 6 — форма с ΑорсаΛьной Λинией, 7 — форма без ΑорсаΛьной Λинии); 8–10 — кукоΛка; 11, 12 — кремастер кукоΛки. 1–4, 5, 7, 10 — виΑ сверху; 6, 9, 12 — виΑ сбоку; 8, 11 — виΑ снизу. Δанные сбора имаго: 1, 3 — Буреинский заповеΑник, окрестности корΑона «Новый МеΑвежий», 5–6.07.2018; 2, 4 — там же, ex pupa 23–30.08.2018 Fig. 4. Grammia quenseli liturata: 1–4 — imago (1, 2 — males, 3, 4 — females); 5–7 — seventh instar larvae (5, 6 — with white dorsal line, 7 — without dorsal line); 8–10 — pupa; 11, 12 — cremaster. 1–4, 5, 7, 10 — dorsal view; 6, 9, 12 — lateral view; 8, 11 — ventral view. Data labels for imago: 1, 3 — Bureinsky State Nature Reserve, near Novyi Medvezhii cordon, 5–6.07.2018; 2, 4 — same location, 23–30.08.2018
ScienceDex guides
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.