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Рис. 2. Japonactaeon nipponensis ussuriensis ssp. nov.: A – голотип (высота 5.6 мм, ЗоомуЗей ДВФУ), B – паратип (высота 4.6 мм, МуЗей ИБМ); C – раковина (СЭМ, высота 1.9 мм); D, E – скульптура раковины (СЭМ). МасШтаб: 200 мкм. in Japonactaeon nipponensis (Yamakawa, 1911) (Gastropoda: Heterobranchia) - single species of the family Acteonidae in the Russian seas with description of a new subspecies
Рис. 2. Japonactaeon nipponensis ussuriensis ssp. nov.: A – голотип (высота 5.6 мм, ЗоомуЗей ДВФУ), B – паратип (высота 4.6 мм, МуЗей ИБМ); C – раковина (СЭМ, высота 1.9 мм); D, E – скульптура раковины (СЭМ). МасШтаб: 200 мкм.
Dataset: The E.W. Scripps Company (SSP) 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.
Рис. 1–7. Cynaeda gigantea (Staudinger, 1880): 1 — C. gigantea gigantea (Staudinger, 1880), топотип; 2 — C. gigantea cobaini Korb, ssp. n., гоΛотип; 3 — C. gigantea cobaini Korb, ssp. n., генитаΛии гоΛотипа (эΔеагус уΔаΛен); 4 — C. gigantea cobaini Korb, ssp. n., эΔеагус гоΛотипа; 5 — C. gigantea cobaini Korb, ssp. n., вершина эΔеагуса гоΛотипа; 6 — C. gigantea cobaini Korb, ssp. n., в прироΔе (фото: Е. Комаров); 7 — C. gigantea cobaini Korb, ssp. n., биотоп Figs 1–7. Cynaeda gigantea (Staudinger, 1880): 1 — C. gigantea gigantea (Staudinger, 1880), topotype; 2 — C. gigantea cobaini Korb, ssp. n., holotype; 3 — C. gigantea cobaini Korb, ssp. n., holotype's genitalia (aedoeagus removed). 4 — C. gigantea cobaini Korb, ssp. n., holotype's aedoeagus; 5 — C. gigantea cobaini Korb, ssp. n., holotype's aedoeagus apex; 6 — C. gigantea cobaini Korb, ssp. n., in nature (photo: E. Komarov); 7 — C. gigantea cobaini Korb, ssp. n., habitat in Two New Subspecies Of Snout Moths Of The Genus Hübner, [1825] (Lepidoptera: Crambidae) From Kyrgyzstan
Рис. 1–7. Cynaeda gigantea (Staudinger, 1880): 1 — C. gigantea gigantea (Staudinger, 1880), топотип; 2 — C. gigantea cobaini Korb, ssp. n., гоΛотип; 3 — C. gigantea cobaini Korb, ssp. n., генитаΛии гоΛотипа (эΔеагус уΔаΛен); 4 — C. gigantea cobaini Korb, ssp. n., эΔеагус гоΛотипа; 5 — C. gigantea cobaini Korb, ssp. n., вершина эΔеагуса гоΛотипа; 6 — C. gigantea cobaini Korb, ssp. n., в прироΔе (фото: Е. Комаров); 7 — C. gigantea cobaini Korb, ssp. n., биотоп Figs 1–7. Cynaeda gigantea (Staudinger, 1880): 1 — C. gigantea gigantea (Staudinger, 1880), topotype; 2 — C. gigantea cobaini Korb, ssp. n., holotype; 3 — C. gigantea cobaini Korb, ssp. n., holotype's genitalia (aedoeagus removed). 4 — C. gigantea cobaini Korb, ssp. n., holotype's aedoeagus; 5 — C. gigantea cobaini Korb, ssp. n., holotype's aedoeagus apex; 6 — C. gigantea cobaini Korb, ssp. n., in nature (photo: E. Komarov); 7 — C. gigantea cobaini Korb, ssp. n., habitat
Рис. 8–13. Cynaeda forsteri de Lattin, 1951: 8 — C. forsteri forsteri de Lattin, 1951, гоΛотип; 9 — C. forsteri komarovi Korb, ssp. n., гоΛотип; 10 — C. forsteri komarovi Korb, ssp. n., генитаΛии гоΛотипа (эΔеагус уΔаΛен); 11 — C. forsteri komarovi Korb, ssp. n., эΔеагус гоΛотипа; 12 — C. forsteri komarovi Korb, ssp. n., вершина эΔеагуса гоΛотипа; 13 — C. forsteri komarovi Korb, ssp. n., биотоп Figs 8–13. Cynaeda forsteri de Lattin, 1951: 8 — C. forsteri forsteri de Lattin, 1951, holotype; 9 — C. forsteri komarovi Korb, ssp. n., holotype; 10 — C. forsteri komarovi Korb, ssp. n., holotype's genitalia (aedoeagus removed); 11 — C. forsteri komarovi Korb, ssp. n., holotype's aedoeagus; 12 — C. forsteri komarovi Korb, ssp. n., holotype's aedoeagus apex; 13 — C. forsteri komarovi Korb, ssp. n., habitat in Two New Subspecies Of Snout Moths Of The Genus Hübner, [1825] (Lepidoptera: Crambidae) From Kyrgyzstan
Рис. 8–13. Cynaeda forsteri de Lattin, 1951: 8 — C. forsteri forsteri de Lattin, 1951, гоΛотип; 9 — C. forsteri komarovi Korb, ssp. n., гоΛотип; 10 — C. forsteri komarovi Korb, ssp. n., генитаΛии гоΛотипа (эΔеагус уΔаΛен); 11 — C. forsteri komarovi Korb, ssp. n., эΔеагус гоΛотипа; 12 — C. forsteri komarovi Korb, ssp. n., вершина эΔеагуса гоΛотипа; 13 — C. forsteri komarovi Korb, ssp. n., биотоп Figs 8–13. Cynaeda forsteri de Lattin, 1951: 8 — C. forsteri forsteri de Lattin, 1951, holotype; 9 — C. forsteri komarovi Korb, ssp. n., holotype; 10 — C. forsteri komarovi Korb, ssp. n., holotype's genitalia (aedoeagus removed); 11 — C. forsteri komarovi Korb, ssp. n., holotype's aedoeagus; 12 — C. forsteri komarovi Korb, ssp. n., holotype's aedoeagus apex; 13 — C. forsteri komarovi Korb, ssp. n., habitat
Рис. 4. Распространение Japonactaeon nipponensis ussuriensis ssp. nov. (треугольники – местонахождениЯ в бухтах Суходол и ТелЯковского). in Japonactaeon nipponensis (Yamakawa, 1911) (Gastropoda: Heterobranchia) - single species of the family Acteonidae in the Russian seas with description of a new subspecies
Рис. 4. Распространение Japonactaeon nipponensis ussuriensis ssp. nov. (треугольники – местонахождениЯ в бухтах Суходол и ТелЯковского).
Fig. 4 in Límites y posición sistemática de Iberodorcadion mosqueruelense Escalera, 1902, I. grustani González, 1992 e I. seguntianum ssp. belbezei Escalera, 1914 (Coleoptera, Cerambycidae).
Fig. 4. - Mapa de distribución de I. grustani (líneas rojas), I. zarcoi (líneas azules) e I. terolense ssp. albarium (líneas amarillas).
Fig. 2 in Límites y posición sistemática de Iberodorcadion mosqueruelense Escalera, 1902, I. grustani González, 1992 e I. seguntianum ssp. belbezei Escalera, 1914 (Coleoptera, Cerambycidae).
Fig. 2. – Mapa de distribución de I. mosqueruelense (líneas azules), I. terolense (líneas amarillas) e I. pseudomolitor (líneas rojas).
Fig. 7 in Límites y posición sistemática de Iberodorcadion mosqueruelense Escalera, 1902, I. grustani González, 1992 e I. seguntianum ssp. belbezei Escalera, 1914 (Coleoptera, Cerambycidae).
Fig. 7.- Mapa de distribución de I. seguntianum (líneas rojas), I. seguntianum belbezei (líneas azules) e I. zarcoi (líneas amarillas).
Fig. 5 in Límites y posición sistemática de Iberodorcadion mosqueruelense Escalera, 1902, I. grustani González, 1992 e I. seguntianum ssp. belbezei Escalera, 1914 (Coleoptera, Cerambycidae).
Fig. 5. - Holotipos de D. zarcoi m. presuturalebivittatum y D. zarcoi m. suturaleconnexum. Col. Lepesme, Musée des Confluences de Lyon. Ọ H. Labrique.
Fig. 2 Projected future changes for Dermacentor reticulatus until 2080–2100. a SSP 126. b SSP 245. c SSP 370. d SSP 585 in Ticks on the move-climate change-induced range shifts of three tick species in Europe: current and future habitat suitability for Ixodes ricinus in comparison with Dermacentor reticulatus and Dermacentor marginatus
Fig. 2 Projected future changes for Dermacentor reticulatus until 2080–2100. a SSP 126. b SSP 245. c SSP 370. d SSP 585. In dark blue: area projected as suitable under current climatic conditions but unsuitable under future climatic conditions (i.e., potential extinction). In light blue: area projected as unsuitable under current climatic conditions as well as under future climatic conditions (i.e., stable absence). In orange: area projected as suitable under current climatic conditions as well as under future climatic conditions (i.e., stable range). In red: area projected as unsuitable under current climatic conditions but suitable under future climatic conditions (i.e., potential new range). AUC = 0.8333 (average over 10 replicates using cross-validation, standard deviation = 0.001113603). Threshold to transform the logistic model output: 0.3816 (10% omission rate threshold). Maps were built using ESRI ArcGIS (Release 10.7, www.esri.com). Projection: Europe Albers Equal Area Conic
Fig. 2 Projected future changes for Dermacentor reticulatus until 2080–2100. a SSP 126. b SSP 245. c SSP 370. d SSP 585 in Ticks on the move-climate change-induced range shifts of three tick species in Europe: current and future habitat suitability for Ixodes ricinus in comparison with Dermacentor reticulatus and Dermacentor marginatus
Fig. 2 Projected future changes for Dermacentor reticulatus until 2080–2100. a SSP 126. b SSP 245. c SSP 370. d SSP 585. In dark blue: area projected as suitable under current climatic conditions but unsuitable under future climatic conditions (i.e., potential extinction). In light blue: area projected as unsuitable under current climatic conditions as well as under future climatic conditions (i.e., stable absence). In orange: area projected as suitable under current climatic conditions as well as under future climatic conditions (i.e., stable
Fig. 1 Projected future changes for Ixodes ricinus until 2081–2100. a SSP 126. b SSP 245. c SSP 370. d SSP 585 in Ticks on the move-climate change-induced range shifts of three tick species in Europe: current and future habitat suitability for Ixodes ricinus in comparison with Dermacentor reticulatus and Dermacentor marginatus
Fig. 1 Projected future changes for Ixodes ricinus until 2081–2100. a SSP 126. b SSP 245. c SSP 370. d SSP 585. In dark blue: area projected as suitable under current climatic conditions but unsuitable under future climatic conditions (i.e., potential extinction). In light blue: area projected as unsuitable under current climatic conditions as well as under future climatic conditions (i.e., stable absence). In orange: area projected as suitable under current climatic conditions as well as under future climatic conditions (i.e., stable range). In red:
Fig. 3 Projected future changes for Dermacentor marginatus until 2080–2100. a SSP 126. b SSP 245. c SSP 370. d SSP 585 in Ticks on the move-climate change-induced range shifts of three tick species in Europe: current and future habitat suitability for Ixodes ricinus in comparison with Dermacentor reticulatus and Dermacentor marginatus
Fig. 3 Projected future changes for Dermacentor marginatus until 2080–2100. a SSP 126. b SSP 245. c SSP 370. d SSP 585. In dark blue: area projected as suitable under current climatic conditions but unsuitable under future climatic conditions (i.e., potential extinction). In light blue: area projected as unsuitable under current climatic conditions as well as under future climatic conditions (i.e., stable absence). In orange: area projected as suitable under current climatic conditions as well as under future climatic conditions (i.e., stable range). In red: area projected as unsuitable under current climatic conditions but suitable under future climatic conditions (i.e., potential new range). AUC = 0.8229 (average over 10 replicates using cross-validation, standard deviation = 0.001121953). Threshold to transform the logistic model output: 0.4298 (10% omission rate threshold). Maps were built using ESRI ArcGIS (Release 10.7, www.esri.com). Projection: Europe Albers Equal Area Conic
De novo transcriptome of Dryopteris affinis ssp. affinis
<p>Supplementary data for </p> <p><em>Differential gene expression profiling of one- and two-dimensional apogamous gametophytes of the fern Dryopteris affinis ssp. affinis</em></p> <p> </p> <ul> <li>Transcript sequence in FASTA format (166'191 transcripts)</li> </ul>
Figuras 9-14. Metacrisia courregesi mutabilis Grados, ssp. nov. 9-10. Holotipo macho, vistas dorsal y ventral. 11-12. Paratipo macho, vistas dorsal y ventral. 13-14. Paratipo macho, vistas dorsal y in El género Metacrisia Hampson (Lepidoptera: Erebidae: Arctiinae: Phaegopterina) en los Andes peruanos, con la descripción de una nueva subespecie y especie
Figuras 9-14. Metacrisia courregesi mutabilis Grados, ssp. nov. 9-10. Holotipo macho, vistas dorsal y ventral. 11-12. Paratipo macho, vistas dorsal y ventral. 13-14. Paratipo macho, vistas dorsal y ventral. Escala: 5 mm.
Figuras 15-18. Metacrisia courregesi mutabilis Grados ssp. nov. 15-16. Paratipo hembra, vistas dorsal y ventral. 17-18. Paratipo hembra, vistas dorsal y in El género Metacrisia Hampson (Lepidoptera: Erebidae: Arctiinae: Phaegopterina) en los Andes peruanos, con la descripción de una nueva subespecie y especie
Figuras 15-18. Metacrisia courregesi mutabilis Grados ssp. nov. 15-16. Paratipo hembra, vistas dorsal y ventral. 17-18. Paratipo hembra, vistas dorsal y ventral. Escala: 5 mm.
Figures 1-5. Cortodera pumila sarigolensis ssp. n in New Cortodera (Coleoptera, Cerambycidae) taxa from Turkey
Figures 1-5. Cortodera pumila sarigolensis ssp. n.: 1 – holotype, male; 2-3 – paratypes, females; 4 – aedeagus; 5 – parameres.
Figure 1 in Laothoe amurensis zolotuhini ssp. nov. from Kunashir Island, Russia (Lepidoptera: Sphingidae)
Figure 1. Laothoe amurensis ssp.: A-B) L. a. amurensis from Primorsky Krai: (A) male; (B) female. (C-F) L. a. zolotuhini Spitsyn, Bolotov & Spitsyna ssp. nov. from Kunashir Island: (C, E) holotype male RMBH Sph0928: (C) upperside; (E) underside; (D, F) paratype female RMBH Sph0927: (D) upperside; (F) underside. Scale bar = 10 mm.
Figure 3 in Laothoe amurensis zolotuhini ssp. nov. from Kunashir Island, Russia (Lepidoptera: Sphingidae)
Figure 3. Phylogenetic position of Laothoe amurensis zolotuhini Spitsyn, Bolotov & Spitsyna ssp. nov. on the basis of the COI sequences. Scale bar on the tree indicates the branch lengths. Numbers near nodes are bootstrap support values.
Figure 1 in Tagoropsis sabulosa zanzibarica ssp. nov. from Zanzibar Island (Lepidoptera: Saturniidae)
Figure 1. Type specimens of Tagoropsis sabulosa zanzibarica ssp. nov. from Zanzibar Island, Tanzania: A-B) Holotype male RMBH Sph0920: (A) Upperside. (B) Underside; C-D) Paratype female RMBH Sph0921: (C) Upperside. (D) Underside. Scale bar = 10 mm. Photos: Elizaveta A. Spitsyna.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.