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95 results for “Bohemia”
Seismological dataset for 2018 West Bohemia earthquake swarm
<p>Dataset used in the study: T. Eulenfeld (2020), Toward source region tomography with inter-source interferometry: Shear wave velocity from 2018 West Bohemia swarm earthquakes, <em>Journal of Geophysical Research: Solid Earth</em>, 125, e2020JB019931, doi: <a href="https://dx.doi.org/10.1029/2020JB019931">10.1029/2020JB019931</a>.</p> <p>The dataset includes</p> <ul> <li>HYPODD pha file with relocated earthquake catalog</li> <li>HYPODD pha file with relocated earthquake catalog of selected high quality events (Eulenfeld, 2020)</li> <li>Text file with focal mechanisms of 13 largest earthquakes</li> <li>Text file with coordinates of 9 WEBNET stations</li> <li>StationXML file with coordinate and response information of 9 WEBNET stations (prepared from RESP files by T. Eulenfeld)</li> <li>MSEED files of waveforms of earthquakes</li> </ul> <p>Citation for waveforms:</p> <p>Institute of Geophysics, Academy of Sciences of the Czech Republic (1991): West Bohemia Local Seismic Network. International Federation of Digital Seismograph Networks. Dataset/Seismic Network. <a href="https://www.doi.org/10.7914/SN/WB">10.7914/SN/WB</a></p> <p>Citation for earthquake catalog:</p> <p>Bachura M, Fischer T, Doubravová J, Horálek J, From earthquake swarm to a main shock–aftershocks: the 2018 activity in West Bohemia/Vogtland (2021), <em>Geophysical Journal International</em>, 224 (33): 1835–1848, doi: <a href="https://doi.org/10.1093/gji/ggaa523">10.1093/gji/ggaa523</a></p> <p>Citation for focal mechanisms:</p> <p>Plenefisch T and Barth L (2019), The May 2018 earthquake swarm in Vogtland/NW-Bohemia: Spatiotemporal evolution and focal mechanism determinations, in Geophysical Research Abstracts, volume 21, EGU2019–9356</p> <p> </p> <p>Version 2:</p> <ul> <li>Version 1 of the data set included only waveforms for earthquakes with magnitude larger than 1.8, version 2 of the data set includes almost all waveforms for earthquakes listed in the catalog</li> <li>Added StationXML file</li> <li>Added catalog with selected high quality events</li> </ul>
Broad One Health Endectocide-based Malaria Intervention in Africa (BOHEMIA)
ClinicalTrials.gov study NCT04966702. IPD Sharing: YES. Countries: 2. Publications: 6.
Supplementary material 3 from: Krajewski Ł, Adamec L, Saługa M, Bednarek-Ochyra H, Plášek V (2020) Welcome to the Czech Republic again! Rare northern mosses Calliergon megalophyllum and Drepanocladus sordidus (Amblystegiaceae) in South Bohemia in light of their European distribution and habitat preferences. PhytoKeys 154: 111-136. https://doi.org/10.3897/phytokeys.154.51454
Sample information and GenBank accession numbers
Figure 2 from: Krajewski Ł, Adamec L, Saługa M, Bednarek-Ochyra H, Plášek V (2020) Welcome to the Czech Republic again! Rare northern mosses Calliergon megalophyllum and Drepanocladus sordidus (Amblystegiaceae) in South Bohemia in light of their European distribution and habitat preferences. PhytoKeys 154: 111-136. https://doi.org/10.3897/phytokeys.154.51454
Figure 2 Distribution of Drepanocladus sordidus in Europe. The new locations in the Czech Republic are marked by the triangle. Occurrence on the northern coast of Spitsbergen beyond the map is indicated by the arrow.
Supplementary material 1 from: Krajewski Ł, Adamec L, Saługa M, Bednarek-Ochyra H, Plášek V (2020) Welcome to the Czech Republic again! Rare northern mosses Calliergon megalophyllum and Drepanocladus sordidus (Amblystegiaceae) in South Bohemia in light of their European distribution and habitat preferences. PhytoKeys 154: 111-136. https://doi.org/10.3897/phytokeys.154.51454
List of 44 sites in the Třeboň Basin, S Bohemia, Czech Republic
Figure 1 from: Krajewski Ł, Adamec L, Saługa M, Bednarek-Ochyra H, Plášek V (2020) Welcome to the Czech Republic again! Rare northern mosses Calliergon megalophyllum and Drepanocladus sordidus (Amblystegiaceae) in South Bohemia in light of their European distribution and habitat preferences. PhytoKeys 154: 111-136. https://doi.org/10.3897/phytokeys.154.51454
Figure 1 Distribution of Calliergon megalophyllum in Europe. The new locations in the Czech Republic are marked by the triangle and the extinct type locality of Hypnum moldavicum (cf. Velenovský 1903) is marked by the asterisk.
FIGURE 2 in Rubus violaceifrons (Rosaceae), a new bramble species from Bohemia (Central Europe, Czech Republic)
FIGURE 2. Holotype of Rubus violaceifrons (PR 973722 – primocane leaves).
Figures 4-6 from: Prokop J, Dehon M, Michez D, Engel M (2017) An Early Miocene bumble bee from northern Bohemia (Hymenoptera, Apidae). ZooKeys 710: 43-63. https://doi.org/10.3897/zookeys.710.14714
Figures 4-6 - Line drawings of wing venation of holotype of Bombus (Cullumanobombus) trophonius, sp. n., as preserved. 4 Left forewing 5 Right forewing 6 Right hind wing.
Figure 1 from: Prokop J, Dehon M, Michez D, Engel M (2017) An Early Miocene bumble bee from northern Bohemia (Hymenoptera, Apidae). ZooKeys 710: 43-63. https://doi.org/10.3897/zookeys.710.14714
Figure 1 - Photograph of holotype of Bombus (Cullumanobombus) trophonius, sp. n., from the Early Miocene of Bílina Mine in northern Bohemia, Czech Republic.
Figures 2-3 from: Prokop J, Dehon M, Michez D, Engel M (2017) An Early Miocene bumble bee from northern Bohemia (Hymenoptera, Apidae). ZooKeys 710: 43-63. https://doi.org/10.3897/zookeys.710.14714
Figures 2-3 - Photographs of wings of holotype of Bombus (Cullumanobombus) trophonius, sp. n. 2 Left forewing and right forewing and hind wing 3 Right hind wing.
Figure 7 from: Prokop J, Dehon M, Michez D, Engel M (2017) An Early Miocene bumble bee from northern Bohemia (Hymenoptera, Apidae). ZooKeys 710: 43-63. https://doi.org/10.3897/zookeys.710.14714
Figure 7 - Ordination of the fossil along the two axes of the PCA (PC1 = 28.42% and PC2 = 20.12%) in the Bombus s.l. dataset, with extant specimens of Cullumanobombus highlighted in blue.
Text-fig. 2. Čestmír Bůžek and Zlatko Kvaček during the field work in the Kristina Mine in 1964 (photo by František Holý). in A Review Of The Early Miocene Mastixioid Flora Of The Kristina Mine At Hrádek Nad Nisou In North Bohemia (The Czech Republic)
Text-fig. 2. Čestmír Bůžek and Zlatko Kvaček during the field work in the Kristina Mine in 1964 (photo by František Holý).
Text-fig. 1. Geographical position of the studied locality of Hrádek/N. (Kristina Mine) and other floras compared in detail. Symbols: 1. Hrádek/N. (Kristina Mine), 2. Bogatynia (Turów Mine), 3. Hartau, 4. Berzdorf, 5. Wiesa, 6. Libkovice Mb. of the Most Fm. (Most Basin), 7. Cypris Shale (Sokolov Basin), 8. Cypris Shale (Cheb Basin), 9. České Budějovice and Třeboň basins, 10. Wackersdorf, 11. Köflach (Oberdorf Mine). in A Review Of The Early Miocene Mastixioid Flora Of The Kristina Mine At Hrádek Nad Nisou In North Bohemia (The Czech Republic)
Text-fig. 1. Geographical position of the studied locality of Hrádek/N. (Kristina Mine) and other floras compared in detail. Symbols: 1. Hrádek/N. (Kristina Mine), 2. Bogatynia (Turów Mine), 3. Hartau, 4. Berzdorf, 5. Wiesa, 6. Libkovice Mb. of the Most Fm. (Most Basin), 7. Cypris Shale (Sokolov Basin), 8. Cypris Shale (Cheb Basin), 9. České Budějovice and Třeboň basins, 10. Wackersdorf, 11. Köflach (Oberdorf Mine).
Text-fig. 2. Caryanthus sp., no. F03286, locality Zliv-Řídká Blana A – Inflorescence, three bisexual flowers / fruits, central flower inserted slightly higher than the two lateral ones, scale bar 0.5 mm; B – Lateral flowers arranged at an angle of about 45˚ relative to each other, hp. – hypanthium with grooves, scale bar 0.5 mm; C – Epidermal cells of hypanthium, scale bar 0.1 mm; D – Detail of epidermal cells, scale bar 50 µm; E – Lateral flower, basal parts of six filaments and basal parts of two anthers styles, f – filaments, s – styles, scale bar 0.3 mm; F – Central flower, scale bar 0.3 mm; G – Stoma, scale bar 30 µm. in A New Record Of The Genus Caryanthus From The Cretaceous Of South Bohemia (Czech Republic)
Text-fig. 2. Caryanthus sp., no. F03286, locality Zliv-Řídká Blana A – Inflorescence, three bisexual flowers / fruits, central flower inserted slightly higher than the two lateral ones, scale bar 0.5 mm; B – Lateral flowers arranged at an angle of about 45˚ relative to each other, hp. – hypanthium with grooves, scale bar 0.5 mm; C – Epidermal cells of hypanthium, scale bar 0.1 mm; D – Detail of epidermal cells, scale bar 50 µm; E – Lateral flower, basal parts of six filaments and basal parts of two anthers styles, f – filaments, s – styles, scale bar 0.3 mm; F – Central flower, scale bar 0.3 mm; G – Stoma, scale bar 30 µm.
Text-fig. 2. Dr. R. Horný and Dr. S. Štamberg at the Poniklá locality (Northern Bohemia). Photo V. Turek 2009. in Radvan Horný Octogenarian
Text-fig. 2. Dr. R. Horný and Dr. S. Štamberg at the Poniklá locality (Northern Bohemia). Photo V. Turek 2009.
Text-fig. 5. Exploitation section on the northern slope of the Trupelník Hill. Photo M. Čada 1963. Height of the section ca. 2.5 m. a) – coaly clay, b) – diatomaceous breccia, c) – yellow-green diatomaceous clay, d) – diatomaceous chert. in Geology Of The Site Kučlín, Trupelník Hill Near Bílina In North Bohemia
Text-fig. 5. Exploitation section on the northern slope of the Trupelník Hill. Photo M. Čada 1963. Height of the section ca. 2.5 m. a) – coaly clay, b) – diatomaceous breccia, c) – yellow-green diatomaceous clay, d) – diatomaceous chert.
Text-fig. 1. Geological map of the site Kučlín, Trupelník Hill. 1 – dumpsite body, exploitation faces, 2 – landslide body, 3 – occurrence of the basalt in the landslide body, 4 – tuff, tuffite with gneiss particles, 5 – 11 – Late Eocene rocks. 5 – basalts, 6 – tuff, tufite, 7 – diatomaceous cherts layer enclosing lenses of diatomaceous earth, 8 – diatomitic breccia, 9 – diatomaceous shale, 10 – diatomaceous clays to diatomites, 11 – calcareous diatomaceous clays to diatomaceous limestones and re-deposited Cretaceous material, 12 – Late Turonian marlstone to limestone, 13 – Middle Turonian marlstone, 14 – Middle Turonian organo-detritic limestone to conglomerate, 15 – Late Proterozoic orthogneiss, 16 – Syčivka creek, 17 – road, field drives, 18 – Kučlín village. in Geology Of The Site Kučlín, Trupelník Hill Near Bílina In North Bohemia
Text-fig. 1. Geological map of the site Kučlín, Trupelník Hill. 1 – dumpsite body, exploitation faces, 2 – landslide body, 3 – occurrence of the basalt in the landslide body, 4 – tuff, tuffite with gneiss particles, 5 – 11 – Late Eocene rocks. 5 – basalts, 6 – tuff, tufite, 7 – diatomaceous cherts layer enclosing lenses of diatomaceous earth, 8 – diatomitic breccia, 9 – diatomaceous shale, 10 – diatomaceous clays to diatomites, 11 – calcareous diatomaceous clays to diatomaceous limestones and re-deposited Cretaceous material, 12 – Late Turonian marlstone to limestone, 13 – Middle Turonian marlstone, 14 – Middle Turonian organo-detritic limestone to conglomerate, 15 – Late Proterozoic orthogneiss, 16 – Syčivka creek, 17 – road, field drives, 18 – Kučlín village.
Text-fig. 2. Stratigraphic column of the Trupelník Hill: (GG) – green-gray diatomaceous clay, (YG) – yellow-green diatomaceous clay, (DE) – diatomaceous earth. in Geology Of The Site Kučlín, Trupelník Hill Near Bílina In North Bohemia
Text-fig. 2. Stratigraphic column of the Trupelník Hill: (GG) – green-gray diatomaceous clay, (YG) – yellow-green diatomaceous clay, (DE) – diatomaceous earth.
Text-fig. 3. Cyclurus macrocephalus REUSS. Specimen NMP Pc 2847. Ventral surface of the parasphenoid, showing its tooth patch. in Complements To The Anatomical Knowledge Of Reuss (Pisces, Actinopterygii) From The Eocene Of Kučlín, Bohemia, Czech Republic
Text-fig. 3. Cyclurus macrocephalus REUSS. Specimen NMP Pc 2847. Ventral surface of the parasphenoid, showing its tooth patch.
Text-fig. 2 Photos of palynomorphs. AP: 1.-2. Picea (B4-2, depth 0.35 m), 3.-4. Abies (B9, depth 0.10 m, B11-3, depth 0.01 m), 5.-8. Pinus (B8, depth 0.15 m, B9, depth 0.10 m), 9.-11. Alnus (B8, depth 0.15 m, B11, depth 0.01 m), NAP: 16.-17. Asteraceae Liguliflorae (B4-2, depth 0.35 m), 18.-20. Cyperaceae (B9, depth 0.10 m, B11-3, depth 0.01 m), 21.-22. Artemisia (B8, depth 0.15 m), Pteridophyta: 23.-26. Polypodiaceae (B4-2, depth 0.35 m, B8, depth 0.15 m), 27.-28. Equisetum (B7, depth 0.20 m), 29.-30. Sphagnum (B4-2, depth 0.35 m). Photo E. Břízová. in Reconstruction Of Vegetation Development On The Floodplain Of The Litavka River In The Holocene (Central Bohemia, Brdy Mts.)
Text-fig. 2 Photos of palynomorphs. AP: 1.-2. Picea (B4-2, depth 0.35 m), 3.-4. Abies (B9, depth 0.10 m, B11-3, depth 0.01 m), 5.-8. Pinus (B8, depth 0.15 m, B9, depth 0.10 m), 9.-11. Alnus (B8, depth 0.15 m, B11, depth 0.01 m), NAP: 16.-17. Asteraceae Liguliflorae (B4-2, depth 0.35 m), 18.-20. Cyperaceae (B9, depth 0.10 m, B11-3, depth 0.01 m), 21.-22. Artemisia (B8, depth 0.15 m), Pteridophyta: 23.-26. Polypodiaceae (B4-2, depth 0.35 m, B8, depth 0.15 m), 27.-28. Equisetum (B7, depth 0.20 m), 29.-30. Sphagnum (B4-2, depth 0.35 m). Photo E. Břízová.
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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.
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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