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Рис. 5. Αичинка A. sexmaculata изозера Арейского: а — общий виΑ; б — гоΛова и груΑь ΑорсаΛьно; в — гоΛова и груΑь ΛатераΛьно; г — Αомик Λичинки. ΔΛина Λичинки 4,5 мм Fig. 5. Larva of A. sexmaculata from Lake Areyskoye: а — general appearance; б — thoracs dorsally; в — thoracs laterally; г — larvae house. Larva length 4.5 mm in macroinvertebrates of the Lake Areyskoye
Рис. 5. Αичинка A. sexmaculata изозера Арейского: а — общий виΑ; б — гоΛова и груΑь ΑорсаΛьно; в — гоΛова и груΑь ΛатераΛьно; г — Αомик Λичинки. ΔΛина Λичинки 4,5 мм Fig. 5. Larva of A. sexmaculata from Lake Areyskoye: а — general appearance; б — thoracs dorsally; в — thoracs laterally; г — larvae house. Larva length 4.5 mm
Рис. 1. Helcystogramma spp., внешний виΑ: A — H. ornata sp. nov.; B — H. delocosma (Meyrick); C — H. similigena sp. nov. Fig. 1. Helcystogramma spp., general appearance: A—H. ornata sp. nov.; B—H. delocosma (Meyrick); C— H. similigena sp. nov. in New and interesting species of gelechiid moths of the genus Helcystogramma Zeller 1877 (Lepidoptera, Gelechiidae) from Laos and Malaysia
Рис. 1. Helcystogramma spp., внешний виΑ: A — H. ornata sp. nov.; B — H. delocosma (Meyrick); C — H. similigena sp. nov. Fig. 1. Helcystogramma spp., general appearance: A—H. ornata sp. nov.; B—H. delocosma (Meyrick); C— H. similigena sp. nov.
Рис. 1. Внешний виΔ бабочек. A, B — Edwardia aliena M. Omelko et N. Omelko comb. nov. (A — самец, B — самка), C, D — Photodotis decolorata M. Omelko et N. Omelko (C — самец, D — самка), E, F — Ph. strigosa sp. nov., самец Fig. 1. General appearance of moths. Edwardia aliena M. Omelko et N. Omelko comb. nov. (A — male, B — female), C, D — Photodotis decolorata M. Omelko et N. Omelko (C — male, D — female), E, F — Ph. strigosa sp. nov., male in New data on the fauna of gelechiid moths of the genus Photodotis Meyrick (Lepidoptera, Gelechiidae) from Borneo and the description of a new genus
Рис. 1. Внешний виΔ бабочек. A, B — Edwardia aliena M. Omelko et N. Omelko comb. nov. (A — самец, B — самка), C, D — Photodotis decolorata M. Omelko et N. Omelko (C — самец, D — самка), E, F — Ph. strigosa sp. nov., самец Fig. 1. General appearance of moths. Edwardia aliena M. Omelko et N. Omelko comb. nov. (A — male, B — female), C, D — Photodotis decolorata M. Omelko et N. Omelko (C — male, D — female), E, F — Ph. strigosa sp. nov., male
Рис. 3. Battaristis chagresi M. Omelko et N. Omelko sp. nov.: A, B — внешний виΑ бабочки; C, D — генитаΛии самца (D — винкуΛум, юкста и эΑеагус) Fig. 3. Battaristis chagresi M. Omelko et N. Omelko sp. nov.: A, B — general appearance of moth; C, D — male genitals (D — vinculum, juxta and aedeagus) in New species of gelechiid moths of the genera Photodotis Meyrick 1911 and Battaristis Meyrick 1914 (Lepidoptera, Gelechiidae) from Panama
Рис. 3. Battaristis chagresi M. Omelko et N. Omelko sp. nov.: A, B — внешний виΑ бабочки; C, D — генитаΛии самца (D — винкуΛум, юкста и эΑеагус) Fig. 3. Battaristis chagresi M. Omelko et N. Omelko sp. nov.: A, B — general appearance of moth; C, D — male genitals (D — vinculum, juxta and aedeagus)
Рис. 2. Battaristis conifera M. Omelko et N. Omelko sp. nov.: A–C — внешний виΑ бабочки (C — гоΛова и нижнегубной щупик); D, E — генитаΛии самца Fig. 2. Battaristis conifera M. Omelko et N. Omelko sp. nov.: A–C — general appearance of moth (C — head and labial palpus); D, E — male genitals in New species of gelechiid moths of the genera Photodotis Meyrick 1911 and Battaristis Meyrick 1914 (Lepidoptera, Gelechiidae) from Panama
Рис. 2. Battaristis conifera M. Omelko et N. Omelko sp. nov.: A–C — внешний виΑ бабочки (C — гоΛова и нижнегубной щупик); D, E — генитаΛии самца Fig. 2. Battaristis conifera M. Omelko et N. Omelko sp. nov.: A–C — general appearance of moth (C — head and labial palpus); D, E — male genitals
Рис. 1. Внешний виΑ бабочек: A, B, C, D — Anicilla bicornuta M. Omelko et N. Omelko nom. nov., sp. nov. (A — гоΛова и нижнегубной щупик; B, C — самцы; D — самка), E — Semipsoricoptera longiaurita gen. nov., sp. nov., самец Fig. 1. General appearance of moths: A, B, C, D — Anicilla bicornuta M. Omelko et N. Omelko nom. nov., sp. nov. (A — head and labial palpus; B, C — males; D — female); E — Semipsoricoptera longiaurita gen. nov., sp. nov., male in A new genus and two new species of gelechiid moths from the subfamily Gelechiinae (Lepidoptera, Gelechiidae) from Borneo
Рис. 1. Внешний виΑ бабочек: A, B, C, D — Anicilla bicornuta M. Omelko et N. Omelko nom. nov., sp. nov. (A — гоΛова и нижнегубной щупик; B, C — самцы; D — самка), E — Semipsoricoptera longiaurita gen. nov., sp. nov., самец Fig. 1. General appearance of moths: A, B, C, D — Anicilla bicornuta M. Omelko et N. Omelko nom. nov., sp. nov. (A — head and labial palpus; B, C — males; D — female); E — Semipsoricoptera longiaurita gen. nov., sp. nov., male
Figs. 1 and 2 in Sudden appearance and population outbreak of Eunica monima (Lepidoptera: Nymphalidae) on Desecheo Island, Puerto Rico
Figs. 1 and 2. Eunica monima outbreak on Bursera simaruba trees on Desecheo Island, Puerto Rico, Apr 2016, following island-wide invasive rat removal. Note that the level of damage from herbivory by larvae has lef the majority of the tree canopy branches leafless (both photos). Photos by Aaron B. Shiels, 8–10 Apr 2016. Figs. 3–6. Eunica monima adults collected during their outbreak (Apr 2016) in a Bursera simaruba dominated forest on Desecheo Island, Puerto Rico, following island-wide invasive rat removal. 3. Adult and abundant empty chrysalises on the trunk of B. simaruba. 4. Adult feeding on juices from fruit of Sideroxylon obova- tum Lamarck (Sapotaceae) (photos by Juan G. García-Cancel, 14–16 Apr 2016). 5 and 6. Voucher specimen (dorsal and ventral aspects) collected from Desecheo and genetically analyzed to confirm species identification (specimen was unfortunately rubbed and tattered when received). Collection data: USA, Puerto Rico, Desecheo Island, 18.385437°N, 67.480044°W, 8 Apr 2016; collector: A. B. Shiels (photos by William P. Haines).
Text-fig. 7B. Eospondylus primigenius (STÜRTZ) Bundenbach, Eschenbach-Bocksberg quarry, Lower Devonian, Lower Emsian (Zlichovian), Hunsrück Slate, BMNH E3358, x 4. Hunsrück Slate articulated specimen. Underside of arm showing two contrasting appearances of lateral arm plates in a single arm. The arm is rolled slightly. Of the left lateral arm plates the lateral surface is extensively exposed. The spine ridge faces distally (posteriorly). Of the right lateral arm plates only the ventral edge that borders the ambulacral groove is exposed. in Isolated Ossicles Of The Family Eospondylidae Spencer Wright, 1966, In The Lower Devonian Of Bohemia (Czech Republic) And Correction Of The Systematic Position Of Eospondylid Brittlestars (Echinodermata: Ophiuroidea: Oegophiurida)
Text-fig. 7B. Eospondylus primigenius (STÜRTZ) Bundenbach, Eschenbach-Bocksberg quarry, Lower Devonian, Lower Emsian (Zlichovian), Hunsrück Slate, BMNH E3358, x 4. Hunsrück Slate articulated specimen. Underside of arm showing two contrasting appearances of lateral arm plates in a single arm. The arm is rolled slightly. Of the left lateral arm plates the lateral surface is extensively exposed. The spine ridge faces distally (posteriorly). Of the right lateral arm plates only the ventral edge that borders the ambulacral groove is exposed.
Text-fig. 2. Definition of the metric characters applied in this study, for non-metric characters see Appendix 1. in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 2. Definition of the metric characters applied in this study, for non-metric characters see Appendix 1.
Text-fig. 9. Mean individual differences in non-metric and metric variables of M1 from respective mean values of extant A. flavicollis, A. sylvaticus and A. uralensis in the Recent samples (left) and fossils of particular Pleistocene biozones (right), superimposed to variation ranges and centroids of the former ones. in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 9. Mean individual differences in non-metric and metric variables of M1 from respective mean values of extant A. flavicollis, A. sylvaticus and A. uralensis in the Recent samples (left) and fossils of particular Pleistocene biozones (right), superimposed to variation ranges and centroids of the former ones.
Text-fig. 1. Geographical position and stratigraphic context of the Pleistocene sites from the Czech Republic and Slovakia containing Apodemus material analyzed in this paper. in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 1. Geographical position and stratigraphic context of the Pleistocene sites from the Czech Republic and Slovakia containing Apodemus material analyzed in this paper.
Text-fig. 7. Plot of discriminant scores (R1/R2) of individual M1 of Apodemus spp. from particular Pleistocene biozones superimposed onto a plot of variation ranges for the respective variables for the Recent Apodemus sample (based on the discrimination analysis of total set of characters, both metric and non-metric). in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 7. Plot of discriminant scores (R1/R2) of individual M1 of Apodemus spp. from particular Pleistocene biozones superimposed onto a plot of variation ranges for the respective variables for the Recent Apodemus sample (based on the discrimination analysis of total set of characters, both metric and non-metric).
Text-fig. 8. Plot of discriminant scores (R1/R2) of individual m1 of Apodemus spp. from particular Pleistocene biozones superimposed onto a plot of variation ranges for the respective variables for the Recent Apodemus sample (standardized discrimination scores based on nine most significant variables). in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 8. Plot of discriminant scores (R1/R2) of individual m1 of Apodemus spp. from particular Pleistocene biozones superimposed onto a plot of variation ranges for the respective variables for the Recent Apodemus sample (standardized discrimination scores based on nine most significant variables).
Text-fig. 4. Frequency diagram of metric variation (M1 length = M1U) in samples of Apodemus spp. representing particular Pleistocene biozones (MN 17 – Q 3), compared to variation span in the Recent samples of A. uralensis, A. sylvaticus and A. flavicollis (a heading strip). in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 4. Frequency diagram of metric variation (M1 length = M1U) in samples of Apodemus spp. representing particular Pleistocene biozones (MN 17 – Q 3), compared to variation span in the Recent samples of A. uralensis, A. sylvaticus and A. flavicollis (a heading strip).
Text-fig. 6. Plot of discriminant scores (R1/R2) of individual m1 and M1 teeth of Apodemus spp. from particular Pleistocene biozones superimposed onto a plot of variation ranges for the respective variables for the Recent Apodemus sample (based on the discrimination analysis of metric variables of M1 and m1). in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 6. Plot of discriminant scores (R1/R2) of individual m1 and M1 teeth of Apodemus spp. from particular Pleistocene biozones superimposed onto a plot of variation ranges for the respective variables for the Recent Apodemus sample (based on the discrimination analysis of metric variables of M1 and m1).
Text-fig. 3. Cusp nomenclature of murid molars as applied in this paper (after Horáček et al. 2013). in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 3. Cusp nomenclature of murid molars as applied in this paper (after Horáček et al. 2013).
Text-fig. 5. Frequency diagram of metric variation (m1 lenght = m1L) in samples of Apodemus spp. representing particular Pleistocene biozones (MN 17 – Q 3), compared to variation span in the Recent samples of A. uralensis, A. sylvaticus and A. flavicollis (a heading strip). in Genus Apodemus In The Pleistocene Of Central Europe: When Did The Extant Taxa Appear?
Text-fig. 5. Frequency diagram of metric variation (m1 lenght = m1L) in samples of Apodemus spp. representing particular Pleistocene biozones (MN 17 – Q 3), compared to variation span in the Recent samples of A. uralensis, A. sylvaticus and A. flavicollis (a heading strip).
G-Code associated to the trajectories of the brush in ApPEARS deliverable D5.1 Database of vector based brush strokes and sample prints that demonstrate the range of printed materials
<p>This is appendix for the ApPEARS Deliverable: D5.1 – Database of vector based brush strokes and sample prints that demonstrate the range of printed materials. It contains G-Code Paths associated to the trajectories of the brush.</p>
Images of the data brushes generated for the ApPEARS deliverable D5.1 Database of vector based brush strokes and sample prints that demonstrate the range of printed materials
<p>These images are appendices of ApPEARS deliverable D5.1 Database of vector based brush strokes and sample prints that demonstrate the range of printed materials. They show the generated data brushes.</p>
Fig. 2 in Anti-tumour necrosis factor activity in saliva of various tick species and its appearance during the feeding period
Fig. 2. Anti-tumour necrosis factor (TNF) activity in tick salivary glands during feeding. Salivary gland extract (SGE) was prepared from females of Ixodes ricinus (Linnaeus, 1758) either unfed (day 0) or fed for 2, 4, 6 and 8 days. Various concentrations of SGE protein were preincubated for 1.5 h with 2 ng/ml of mouse recombinant TNF before the cytokine ELISA was performed. PBS instead of SGE was added into negative control. Results are presented as the mean ± SD of triplicate wells. *The difference between saliva-treated and untreated group was signif- icant at P <0.05.
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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.