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Fig. 4 in First report of five free-living nematode species (Nematoda: Rhabditida) from Korea
Fig. 4. Line drawing of Pelodera strongyloides Schneider, 1860. A. Anterior part; B. Posterior part of male; C. Vulval region; D. Posterior part of female. Scale bars: A = 50 μm; B-D = 20 μm.
Fig. 10 in First report of five free-living nematode species (Nematoda: Rhabditida) from Korea
Fig. 10. Line drawing of Panagrolaimus rigidus (Schneider, 1866) Thorne, 1937. A. Anterior part; B. Vulva; C. Posterior part of male. Scale bar represents 20 μm.
Fig. 9 in First report of five free-living nematode species (Nematoda: Rhabditida) from Korea
Fig. 9. Panagrolaimus rigidus (Schneider, 1866) Thorne, 1937. A. Overall view; B. Anterior part; C. Vulva; D. Posterior part of female; E. Posterior part of male. Scale bars: A = 100 μm; B, C, E = 20 μm; D = 50 μm.
Fig. 8 in First report of five free-living nematode species (Nematoda: Rhabditida) from Korea
Fig. 8. Line drawing of Panagrolaimus apicatus Schuurmans Stekhoven & Teunissen, 1938. A. Anterior part; B. Posterior part of female; C. Posterior part of male. Scale bar represents 20 μm.
Fig. 4 in Four unrecorded species of free-living nematodes from the sublittoral zone in the East Sea, Korea
Fig. 4. Vasostoma brevispicula Huang & Wu, 2011, from the East Sea, Korea. A, Male head, showing amphideal fovea and cuticular ornamentation at the head region; B, Male head; C, Male Pharynx; D, Female vulva; E, Male precloacal and anal region. Scale bars: 20 μm (A, B) and 100 μm (C-E).
Fig. 3 in Four unrecorded species of free-living nematodes from the sublittoral zone in the East Sea, Korea
Fig. 3. Terschellingia longicaudata de Man, 1907, from the East Sea, Korea. A, Male pharynx; B, Male copulatory apparatus; C, Male habitus; D, female vulva. Scale bars: 20 μm (A, B) and 100 μm (C, D).
Fig. 2. Parodontophora huoshanensis Li in Four unrecorded species of free-living nematodes from the sublittoral zone in the East Sea, Korea
Fig. 2. Parodontophora huoshanensis Li & Guo, 2016, from the East Sea, Korea. A, Male head; B, Female head, pharynx, vulva, anus; C, Male copulatory apparatus and tail. Scale bars: 20 μm (A, C) and 200 μm (B).
Fig. 2. a in Free-living Heterotrophic Flagellates from Intertidal Sediments of Saros Bay, Aegean Sea (Turkey)
Fig. 2. a – Actinomonas mirabilis/Pteridomonas danica; b – Amastigomonas mutabilis; c – Ancyromonas micra; d – Bicosoeca conica; e – Caecitellus parvulus, note the mouth on the left-hand side; f – Bordnamonas tropicana; g – Cafeteria roenbergensis; h – Cyranomonas australis; i – Developayella elegans; j – Discocelis saleuta; k – Goniomonas amphinema; l – Cafeteria minuta, feeding cell; m – Anisonema acinus, dorsal view, note the ingestion organelle; n – Dinema platysomum, ventral view showing surface striations; o – Goniomonas pacifica; p – Heteronema exaratum, ventral view, general appearance of cell; q – Kathablepharis remigera; r – Massisteria marina; s – Neobodo saliens; t – Neobodo designis; u–v – Heteronema ovale, same cell; u – general appearance; v – extended cell. All micrographs are DIC images. Scale bar: 5 μm for all figures.
Fig. 3. a in Free-living Heterotrophic Flagellates from Intertidal Sediments of Saros Bay, Aegean Sea (Turkey)
Fig. 3. a – Petalomonas marginalis; b – Petalomonas minuta; c – Petalomonas ornata; d – Petalomonas poosilla; e–f – Ploeotia corrugata; e – general appearance of the cell from ventral and (f) dorsal view showing the ridges; g – Sphenomonas angusta; h – Ploeotia vitrea; i – Polyoeca dichotoma; j – Protaspis obliqua; k – Protaspis tegere; l – Salpingoeca marina; m – Pseudophyllomitus granulatus; n–p – 'Aegoni', n – postero-lateral view of the cell showing the beak – like structure; o – posterior view of the cell showing the flagellar insertions; p – general view of the cell. Scale bar: 5 μm for all figures.
Fig. 1. a in Free-living Heterotrophic Flagellates from Intertidal Sediments of Saros Bay, Aegean Sea (Turkey)
Fig. 1. a – Actinomonas mirabilis/Pteridomonas danica; b – Amastigomonas mutabilis; c – Ancyromonas micra; d – Bicosoeca conica; e – Bordnamonas tropicana; f – Caecitellus parvulus; g – Cafeteria minuta; h – Cafeteria roenbergensis; i – Cyranomonas australis; j – Developayella elegans; k – Discocelis saleuta; l – Goniomonas amphinema; m – Goniomonas pasifica; n – Kiitoksia ystava; o – Dinema platysomum; p – Anisonema acinus; q – Heteronema exaratum; r – Heteronema ovale; s – Kathablepharis remigera; t – Notosolenus canellatus; u – Massisteria marina; v – Metromonas grandis; w – Neobodo designis; x – Neobodo saliens; y – Percolomonas similis. Scale bar: 10 μm for all figures.
Figure 3 in New distributional records of free-living marine Nematodes from Indian waters IV. Linhomids and Axanolaimids
Figure 3. Paralinhomoeus conicaudatus (Allgen, 1930) a) entire male b) male head, c) male tail, d) female head, e) female tail, f) entire female.
Figure 5 in New distributional records of free-living marine Nematodes from Indian waters IV. Linhomids and Axanolaimids
Figure 5. Axonolaimus paraspinosus Stekhoven & Adam, 1931 a) entire male, b) male head, c) male tail.
Fig. 1 in Sarcocystis cruzi infection in free-living European bison (Bison bonasus bonasus L.) from the Białowieza˙Forest, Poland - A molecular analysis based on the cox1 gene
Fig. 1. Overview of consistent nucleotide differences between two cox1 gene sequences of S. cruzi MW490605 and MW490606. Numbers above and below the sequences refer to nucleotide positions in the two GenBank sequences used in the comparison. Positions where the two sequences were identical are signified with Dots (.).
Fig. 2 in Sarcocystis cruzi infection in free-living European bison (Bison bonasus bonasus L.) from the Białowieza˙Forest, Poland - A molecular analysis based on the cox1 gene
Fig. 2. Phylogenetic tree for selected Sarcocystis cruzi isolates and selected members of Sarcocystis species found in Bovidae based on partial sequences of cox1 using the maximum parsimony method. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown next to the branches. GenBank accession numbers are listed next to the taxon names. The country of origin of S. cruzi isolates are listed in brackets.
Fig. 3 in A new Eocene free-living cheyletid mite from Baltic amber
Fig. 3. Cheyletid mite Cheletomimus crinitus sp. nov., female holotype (SMF Be 2537, ex. CCHH 448-1) from Baltic amber (Baltic Sea coast, most likely Sambian Peninsula, middle to upper Eocene, 37–54.5 Mya). A. Dorsal view of gnathosoma and anterior opisthosoma (micropanorama assembled from ca 80 images). B. Detail of left palp in ventral view (assembled from 18 images). C. Posterior of ano-genital area in lateral antiaxial view in lateral antiaxial view (assembled from ca. 40 images). D. Left leg I tarsus in lateral antiaxial view (from 22 focal planes). Note extremely poor visibility of seta p′′ against the background of the leg. Abbreviations: a, antelateral seta; acm, anteroculminal palpal eupathidia; ag1–3, aggenital setae, b.s., bush-like seta; d, dorsal seta; elc, supracoxal seta; emp, empodium; F, femur; ft, fastigial seta; G, genu; g1–2, genital setae; h3, seta of segment H; l, lateral seta; oc, ocellus; p , proral seta; per, peritreme; ps1–3, pseudanal setae; tc, tectal seta; Ti, tibia; ti.cl, tibial claw; u, unguinal seta; ul, ultimal palpal eupathidium; ve, vertical external prodorsal s4eta; vi, vertical internal prodorsal seta; vs, ventrosagittal seta; ω, tarsal solenidion; ′ and ′′ refer to position of seta in pseudosymmetrical pair on appendage: anterior or posterior, respectively.
Fig. 2 in A new Eocene free-living cheyletid mite from Baltic amber
Fig. 2. Cheyletid mite Cheletomimus crinitus sp. nov., female holotype (SMF Be 2537, ex. CCHH 448-1) from Baltic amber (Baltic Sea coast, most likely Sambian Peninsula, middle to upper Eocene, 37–54.5 Mya), brightfield layered micropanaramas, each combined from ca. 170 focal planes. Dorsal (A) and ventral (B) views. Abbreviations: 1a–c, 2c, 3a–c, 4a–c, coxal setae of coxae 1–4, respectively; ag1, anterior aggenital seta; c2, d2, e2, f2, h1–h3, dorsal setae, associated with body segments C, D, E, F, H, respectively; oc, ocellus; se, scapular external prodorsal seta; si, scapular internal prodorsal seta; ve, vertical external prodorsal seta; vi, vertical internal prodorsal seta.
Fig. 1 in A new Eocene free-living cheyletid mite from Baltic amber
Fig. 1. Cheyletid mite Cheletomimus crinitus sp. nov., female holotype (SMF Be 2537, ex. CCHH 448-1) from Baltic amber (Baltic Sea coast, most likely Sambian Peninsula, middle to upper Eocene, 37–54.5 Mya), reconstruction (leg positions altered for clarity). Dorsal (B) and ventral (C) views, right palp A) and left tibia and tarsus I (D) in dorsal views, left tarsus I in ventral view (E). Abbreviations: 1a–c, 2c, 3a–c, 4a–c, coxal setae of coxae 1–4, respectively; c2, d2, e2, f2, h1–h3, dorsal setae, associated with body segments C, D, E, F, H, respectively; ′ and ′′ refer to position of seta in pseudosymmetrical pair on appendage: anterior or posterior, respectively.
Biologging reveals repeatable and consistent physiological parameters in free-living turtles.
<p>Associated R code and data sets for analyses related to the "Do turtles have personalities? A new methodology for assessing personality using biologging data" publication. Between-day and between-turtle repeatability can be found in R files 01 and 02. </p>
Figure 5 in Three new species of free-living marine nematodes from the Bohai Sea and Yellow Sea, China
Figure 5. Parodontophora wuleidaowanensis sp. nov. (a) Lateral view of male head-end; (b) lateral view of female head-end; (c) tail of male; (d) tail of female. Scale bar: 20 mm.
Figure 4 in Three new species of free-living marine nematodes from the Bohai Sea and Yellow Sea, China
Figure 4. Parodontophora deltensis sp. nov. (a) Lateral view of male buccal cavity (400×); (b) lateral view of male anterior end, showing amphids (400×); (c) lateral view of male tail, showing spicules and gubernacula with apophyses (200×).
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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.