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FIGURE 18 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 18. Piribelba rossica (Bulanova-Zachvatkina, 1957), larva and nymphs from Kemerovo region: A—larva, subcapitulum, ventral view; B—larva, palp, left, antiaxial view; C—larva, chelicera, right, antiaxial view; D—protonymph, subcapitulum, ventral view; E—protonymph, palp, left, antiaxial view; F—protonymph, chelicera, right, antiaxial view; G— deutonymph, subcapitulum, ventral view; H—deutonymph, palp, left, antiaxial view; I—deutonymph, chelicera, right, antiaxial view; J—tritonymph, subcapitulum, ventral view; K—tritonymph, palp, left, antiaxial view; L—tritonymph, chelicera, right, antiaxial view. Scale bars 100 μm.
FIGURE 4 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 4. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Khabarovsk Krai, SEM micrograph: A, B—dorsolateral view; C—anterodorsal view; D—posterodorsal view. Scale bar 200 μm.
FIGURE 7 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 7. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Khabarovsk Krai, light microscope images: A—leg I (part), right, antiaxial view; B—leg II (part), right, antiaxial view (seta d on genu broken); C—leg III (part), left, antiaxial view; D, E—leg IV (part), left, antiaxial view.
FIGURE 6 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 6. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Khabarovsk Krai, light microscope images: A—dorsal view; B—ventral view; C—lateral view; D—rostral and lamellar setae, dorsal view; E—exobothridial seta, lateral view; F— cerotegument of prodorsal region; G—prodorsum, part, dorsal view; anterior part of notogaster, dorsal view.
FIGURE 1 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 1. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Kemerovo region: A—dorsal view (legs only partly drawn); B—ventral view (gnathosoma not shown, legs only partly drawn), C—lateral view (gnathosoma and legs not shown); D—right genital plate; E—left genital plates; F—left anal plate. Scale bar 100 μm.
FIGURE 17 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 17. Piribelba rossica (Bulanova-Zachvatkina, 1957), tritonymph from Kemerovo region: A—trochanter, femur and genu I, right, antiaxial view; B—tibia and tarsus I, right, antiaxial view; C—leg II, left, antiaxial view; D—leg III, left, antiaxial view; E—leg IV, right, antiaxial view. Scale bar 100 μm.
FIGURE 25 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 25. Piribelba piriformis (Mihelčič, 1964), deutonymph from Mihelčič collection. A—lateral view of the body; B— detail of legs IV and posterior part of the body; C—leg I; D—detail of dorsal seta and solenidion of tibia IV; E—detail of seta ftʺ of tarsus IV. Scale bars 100 μm (B), 50 μm (C).
FIGURE 27 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 27. Piribelba piriformis (Mihelčič, 1964), legs. A—leg I of specimen from Austria (Virgental); B—part of leg I, specimen from Slovakia (Sivec), form "lanceata"; C—leg IV of specimen from Slovakia (Dreveník); D—part of leg IV, specimen from Slovakia (Sivec), form "lanceata"; E—trochanter with additional seta and femur of leg III, specimen from Austria (Dörfertal); F—palp of specimen from Slovakia (Sivec). Scale bars 100 μm (A–E), 25 μm (F).
FIGURE 10 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 10. Piribelba rossica (Bulanova-Zachvatkina, 1957), larva from Kemerovo region: A —dorsal view (legs only partly drawn); B—ventral view (gnathosoma not shown, legs only partly drawn), C—lateral view (gnathosoma and legs only partly drawn). Scale bar 100 μm.
FIGURE 20 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 20. Piribelba piriformis (Mihelčič, 1964), collection of Mihelčič. A–E (left side) —original slides with labels of author; A1–D5—adult specimens observed in slides, with measured total length, single specimen in slide B designated as lectotype (B1), only juvenile instar (deutonymph) placed near specimen D4 on slide D.
FIGURE 5 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 5. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Khabarovsk Krai, SEM micrograph: A—ventral view; B—lateral view; C—gnathosoma, lateral view; D, E—cerotegument of notogaster; F—cerotegument of prodorsal region; G—femur, genua and tibia III, antiaxial view. Scale bars 200 μm (A, B), 50 μm (G), 20 μm (C, D), 5 μm (F), 2 μm (E).
FIGURE 24 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 24. Piribelba piriformis (Mihelčič, 1964), paralectotypes (syntypes of the author, specimens marked according to Fig 20). A—ventral side, anogenital area (specimen A1); B—leg IV and part of notogastral setae (C1); C—leg I (C1); D—seta le (C1); E—parts of leg I and II and distal part of bothridial seta (A1); F—leg IV (D2); G—detail of setae and cerotegument on proximal part of leg IV (D3); H—reticular cerotegument of notogaster (C1). Scale bars 200 μm (F), 50 μm (A–E, G, H).
FIGURE 21 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 21. Piribelba piriformis (Mihelčič, 1964), lectotype. A—lateral view of the body (total length 678 µm); B—view of notogaster from adverse side; C—detail of prodorsal setae le, ro and ex; D—detail of selected setae of the body (C and D scale is increased).
FIGURE 23 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 23. Piribelba piriformis (Mihelčič, 1964), lectotype. A—lateral view with indication of areas depicted in detail; B—detail of sejugal area; C—ventral side, detail of epimeres; D—ventral side, anogenital area; E—detail of lamellar and rostral seta; F—parts of legs II-III-IV. Scale bars 200 μm (A), 100 μm (C, D), 50 μm (E), 20 μm (B).
FIGURE 2 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 2. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Kemerovo region: A, B—part of epimeral III-IV region, left (genital area painted over); С—bothridial setae; D—chelicera, left, antiaxial view; E—subcapitulum, ventral view; F—palp, left, antiaxial view; G—prodorsal setae; H—notogastral setae. Scale bar 100 μm.
FIGURE 3 in Taxonomy of European Damaeidae (Acari, Oribatida) XI. European species of the genus Piribelba Miko 2021: redescriptions of P. rossica (Bulanova-Zachvatkina 1957) and P. piriformis (Mihelčič, 1964) using morphology and DNA sequence data
FIGURE 3. Piribelba rossica (Bulanova-Zachvatkina, 1957), adult from Kemerovo region: A—leg I, left, antiaxial view; B—leg II, left, antiaxial view; C—trochanter III, left, antiaxial view; D—femur, genu, tibia and tarsus III, left, antiaxial view; E—trochanter IV, left, antiaxial view; F—femur, genu, tibia and tarsus IV, left, antiaxial view. Scale bar 100 μm.
Data set for energy landscapes for interrupted sequences
<p>Databases of minima and transition states produced with PATHSAMPLE for interrupted tropocollagen segments.</p> <p>The two databases are for a GPO and a GPP repeat model (7 repeats per chain, with ACE and NME caps).</p> <p>One strand contains a deletion of the form GPO-GP-GPO and GPP-GP-GPP.</p>
Scalable mixed model approaches for set-based association studies on large-scale categorical data analysis and its application to 450k exome sequencing data in UK Biobank
<p>The ongoing release of large-scale sequencing data in the UK Biobank allows for identifying associations between rare variants and complex traits. SAIGE-GENE+ is a valid approach to conducting set-based association tests for quantitative and binary traits. However, for ordinal categorical phenotypes, applying SAIGE-GENE+ with treating the trait as quantitative or binarizing the trait can cause inflated type I error rates or power loss. In this study, we propose a novel method for rare-variant association tests, POLMM-GENE, in which a proportional odds logistic mixed model was used to characterize ordinal categorical phenotypes while adjusting for sample relatedness. POLMM-GENE fully utilizes the categorical nature of phenotypes and thus can well control type I error rates while remaining powerful. In the analyses of UK Biobank 450k whole exome-sequencing data for 5 ordinal categorical traits, POLMM-GENE identified 54 gene-phenotype associations.</p>
Data set for "The effect of pulling and twisting forces on chameleon sequence peptides"
<p>Data set for the publication "The effect of pulling and twisting forces on chameleon sequence peptides"<br> <br> The data contains all energy landscapes explored, structures extracted and analysed, and the necessary utility scripts, written by James Meadows. The README details which data is in each directory. The image directory contains the disconnectivity graphs associated with this data.</p>
Sequence data of 190 tea plantations soil microorganisms
<p>The file contains 190 clean fastq data for soil samples from 19 different types of tea plantations in two districts of Pu'er city, which designed for the study of soil bacterial communities .The tea plantations all belong to Pu'er city, Yunnan province from China.</p>
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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.