Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
1,131
datasets available to search
ShareScore release 0.9.0
Dataset results
1,131 results for “oribatid mites”
FIGURES 4–18 in Identity of the oribatid mite Oribata curva and transfer to Trichogalumna (Acari, Oribatida, Galumnidae), with discussion of nomenclatural and biogeographical issues in the ' curva ' species-group
FIGURES 4–18. Trichogalumna curva (Ewing, 1907). Permanently slide-mounted historical adult specimens (see text). Photomicrographs (except 4) with transmitted, differential interference contrast illumination: 4—cotype slide of Oribata curva Ewing, 1907; 5—dorsal habitus of cotype, with egg on right side; 6—distal part of right bothridial seta of cotype; 7—distal part of left bothridial seta of cotype; 8—left notogastral seta p3 of cotype; 9—left porose area Aa of cotype at surface focus, with insert below at deep focus; 10—right porose area A1 of cotype (surface focus); 11—right porose area A2 of cotype (surface focus); 12—left porose area Aa of Ewing specimen from Missouri at surface (top, with base of seta lm) and deep (bottom insert) focus; 13—porose area A1 (surface focus) of Ewing specimen from Arcola, Illinois, showing absence of slits; 14— porose area A1 of Ewing specimen from Missouri at surface focus (and lyrifissure im), with insert at deep focus; 15—right porose area Aa of Jacot specimen from North Carolina at surface (top) and deep (bottom insert) focus; 16—same, but different specimen from North Carolina, showing absence of slits; 17—partial right pteromorph of Jacot specimen from North Carolina (anterior to top); pteromorph of Ewing specimen from Urbana, Illinois (deteriorated glycerin medium, anterior to right), showing accentuated striae. Scale bars: 100 µm (5), 10 µm (6–18); 6–16 to same scale.
FIGURES 1–3 in Identity of the oribatid mite Oribata curva and transfer to Trichogalumna (Acari, Oribatida, Galumnidae), with discussion of nomenclatural and biogeographical issues in the ' curva ' species-group
FIGURES 1–3. Trichogalumna curva (Ewing, 1907) adult (specimen from Columbia, Missouri): 1—dorsal view (legs omitted); 2—ventral view (legs omitted, gnathosoma represented only by slightly raised subcapitular mentum); 3—lateral view (gnathosoma and legs omitted). Scale bar: 100 µm.
FIGURES 19–31 in Identity of the oribatid mite Oribata curva and transfer to Trichogalumna (Acari, Oribatida, Galumnidae), with discussion of nomenclatural and biogeographical issues in the ' curva ' species-group
FIGURES 19–31. Trichogalumna curva (Ewing, 1907), dissected adult specimens. Photomicrographs with transmitted, differential interference contrast illumination: 19—left porose area A1 (surface focus) and surrounding region of specimen from Florida; 20—same specimen, but right A1; 21—left porose area A1 of second Florida specimen; 22—left area A1 of third Florida specimen; 23—right area Aa of same specimen; 24 left area A2 of same specimen; 25—North Carolina specimen, anterior view of rostrum showing M-shaped inner excavation and inner rostral tooth (irt) by transparency (damage includes vertical crack * and broken edge of thin rostral lobe); 26—same, but deeper focus to show rostrophragma (rp); 27—same, lateral view, showing deep inner excavation of rostral lobe into which tooth irt projects; 28—central region of notogaster, Florida specimen, showing transverse band of larger tubercles, with central region of longitudinal striae (arrow); 29—left genital region of New York specimen showing fine granules and minute striae (arrow) on epimeres 3 and 4, and long striae near genital plate; 30—same, but deep focus to show apodemes 3 and 4 (on either side of seta 3b) and streaks (arrows) on inner cuticular surface in striate region; 31—same specimen, showing transverse band of large tubercles between aggenital seta (ag) and anal plate. Scale bars: 10 µm (19–24 to same scale).
FIGURE 1 in Oribatid mites (Acari, Oribatida) of plain area of the Southern European Russia
FIGURE 1. Places of oribatid mite sampling in the Southern European Russia. For the explanation of numbers see text.
FIGURE 3 in Oribatid mites (Acari, Oribatida) of plain area of the Southern European Russia
FIGURE 3. Distribution of species richness among different families of oribatid mites from soils, nests and birds plumage from the Southern European Russia (taxa are in systematic order).
FIGURE 2 in Oribatid mites (Acari, Oribatida) of plain area of the Southern European Russia
FIGURE 2. Distribution of species richness among different families of oribatid mites in the Southern European Russia (taxa are in systematic order).
FIGURE 10. Miracarus hurkai Kunst 1959 in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 10. Miracarus hurkai Kunst 1959, holotype (Kunst Coll.). A—dorsal view, B—ventral view, C—lateral view, D—detail of pteromorph and bothridial area, E—detail of interlamellar region. Bars indicating 50 µm. Abbreviations: abn—anterior border of notogaster, bo—bothridium, cgl—circumgastric line, lam—lamella, pd1—pedotectum I, pt— pteromorph, sbl—subbothridial lamella, ss—sensillus, tu2—tutorial carina 2. Rest represents names of setae or setal insertions.
FIGURE 8. Amiracarus pliocennatus Miko, n. gen., n in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 8. Amiracarus pliocennatus Miko, n. gen., n. sp., details of holotype and paratype (individuals under A and C from Plate 1). A—lamellar cuspis of holotype in detail, B—lamellar cuspis of paratype in detail, D—sensillus of holotype, E—sensillus of paratype, C—detail of rostrum, paratype, F—lateral view of prodorsum of holotype, G— lateral view of prodorsum, paratype. Abbreviations: bo—bothridium, ctu1—cuspis of tutorial carina 1, ctu3—cuspis of tutorial carina 3, cus—cuspis of lamella, inc—rostral incision, ku—carina ku on pedotectum I, lam—lamella, pd1— pedotectum I, pt—pteromorph, ss—sensillus, tu1—tutorial carina 1, tu2—tutorial carina 2, tu3—tutorial carina 3. Rest represents names of setae or setal insertions and lyrifissures.
FIGURE 9. Amiracarus pliocennatus Miko, n. gen., n in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 9. Amiracarus pliocennatus Miko, n. gen., n. sp., details of holotype and paratype (individuals under A and C from Plate 1). A—gnathosoma of holotype, B—pteromorph of holotype, C—ventral view on podosoma of paratype, D— part of ventral view of holotype, E—posterior of podosoma of paratype, F—posterior of podosoma of holotype. Abbreviations: cgl—circumgastric line, cpl—circumpedal line, dis—discidium, go—genital opening, ku—carina ku on pedotectum I, mt—mentotectum, op—ovipositor, pd1—pedotectum I, pd2—pedotectum II, pt—pteromorph, R— acetabular protrusion of leg III, ru—rutellum, TrIII— trochanter III, TrIV—trochanter IV, tsI—trochanteral seta I, tsII— trochanteral seta II. Rest represents names of setae or setal insertions and lyrifissures.
FIGURE 7. Amiracarus pliocennatus Miko, n. gen., n in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 7. Amiracarus pliocennatus Miko, n. gen., n. sp., holotype. A—dorsal view, B—ventral view, C—lateral view of prodorsum and podosoma, D—detail of lamella and lamellar cuspis. Bars indicating 50 µm (A, B, C). Abbreviations: abt—abaxial tooth of cuspis, adt—adaxial tooth of cuspis, ao—anal opening, bo—bothridium, cgl—circumgastric line, cpl—circumpedal line, cus—cuspis of lamellae, dis—discidium, go—genital opening, ku—carina ku on pedotectum I, lam—lamella, mt—mentotectum, abn—anterior border of notogaster, pd1—pedotectum I, pd2—pedotectum II, pt— pteromorph, R—acetabular protrusion of leg III, sl—notogastral lateromedial furrow, ss—sensillus, TrIII—trochanter III, TrIV—trochanter IV, tu1—tutorial carina 1, tu2—tutorial carina 2, tu3—tutorial carina 3. Rest represents names of setae or setal insertions and lyrifissures.
FIGURE 5. Main differences between genera Amiracarus Miko n in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 5. Main differences between genera Amiracarus Miko n. gen. (A–C) and Miracarus Kunst 1959 (D–F), based on the type species (Amiracarus senensis—left, Miracarus hurkai—right, reconstructed from holotype figure, see Fig. 1). Dorsal view of whole body (A and D): proportion between length of prodorsum and length of notogaster (grey arrows); proportion of width of prodorsum and width of notogaster (black arrows); position of interlamellar setae; form of pteromorphs; position of seta e2—in relation to setae in row c2–cp–e2–f2; position of the seta h3—in relation to the seta in row h –h2–h3. Lateral view of anterior part of the body (B and E): form of pteromorph; development of tutoria and tutorial cusps; size and form of pedotectum I. Development of the sensilus (C and F).
FIGURE 2 in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 2. Amiracarus senensis (Bernini 1975) n. comb. (fossil individual from sediments of cave Ponicova, Romania). A—dorsal view; B—ventral view; C—lateral view; D—detail of tutorium; E—sensilus. Legs missing, only trochanters III and IV remained preserved. Bar indicating 100 µm (A, B, C). Abbreviation: ao—anal opening, cgl— circumgastric line, cpl—circumpedal line, dis—discidium, go—genital opening, lam—lamella, mt– mentotectum, pd1— pedotectum I, pd2—pedotectum II, pt—pteromorph, R—acetabular protrusion of leg III, sl—notogastral lateromedial furrow, ss—sensillus, trIV—trochanter IV, tu—tutorium, tu1—tutorial carina 1, tu2—tutorial carina 2, tu3—tutorial carina 3. Rest represents names of setae or setal insertions and lyrifissures.
FIGURE 6 in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 6. Fossil material of Amiracarus pliocennatus Miko, n. gen., n. sp. Upper row—original photographs of Oana Moldovan, published here to allow matching with individuals as reported in Moldovan et al. (2011): A—holotype from Trhlovca Cave, Slovenia (reported in Moldovan et al. (2011) as Miracarus sp. on Fig. 3A, Fig. 5 and Tab 2 (both in Pliocene sections), B–C—paratypes from Račiška pečina Cave in Slovenia (individuals reported in Moldovan et al. (2011) Miracarus sp. on Fig. 5 and Tab 2 in Pleistocene sections; individual under B was later lost so the more recent photographs are not available). Bars indicating 100 µm. Middle row—Amiracarus pliocennatus Miko, n. gen., n. sp., holotype (same individual as sub A): D—dorsal view, E—ventral view, F—lateral view. Bars indicating 50 µm. Lower row—A. pliocennatus Miko, n. gen., n. sp., paratype (same individual as sub C): G—dorsal view, H—ventral view, I— lateral view. Bars indicating 50 µm.
FIGURE 4. Amiracarus pliocennatus Miko, n in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 4. Amiracarus pliocennatus Miko, n. sp. (A–B, E paratype from Račiška pečina Cave, Slovenia; F— holotype). A—prodorsum of paratype from dorsal view; B—ventral view of paratype; C—variability of sensillus in paratypes; D—variability of lamellar cuspis, holotype right; E—detail of podosoma, ventral view. Bar indicating 100 µm (A, B). Abbreviations: cpl—circumpedal line, dis—discidium, ku—carina ku on pedotectum I, pd1—pedotectum I, pd2—pedotectum II, R—acetabular protrusion of leg III, tsI—trochanteral seta I, tsII—trochanteral seta II. Rest represents names of setae or setal insertions and lyrifissures.
FIGURE 1. Miracarus hurkai Kunst, 1959 in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 1. Miracarus hurkai Kunst, 1959 (holotype). A—dorsal view (without legs); B—ventral view (legs only partly depicted); C—dorsolateral view of prodorsum (notogaster and ventral structures only partly sketched); D—detailed view of sensillus. Bar indicating 100 µm (A, B, C). Abbreviations: an—anal plate, cgl—circumgastric line, cpl—circumpedal line, dis—discidium, g—genital plate, lam—lamella, mt—mentotectum, pd1—pedotectum I, pd2—pedotectum II, pt— pteromorph, R—acetabular protrusion of leg III, ro—rostrum, sl—notogastral lateromedial furrow, ss—sensillus, TrIII— trochanter III, Tr IV—trochanter IV, tsII—trochanteral seta II, tu—tutorium, tu1—tutorial carina 1, tu2—tutorial carina 2, tu3—tutorial carina 3. Rest represents names of setae or setal insertions and lyrifissures.
FIGURE 3. Amiracarus pliocennatus Miko, n in Oribatid mite fossils from pre-Quaternary sediments in Slovenian caves II. Amiracarus pliocennatus n.gen., n.sp. (Microzetidae) from Pliocene, with comments on the other species of the genus
FIGURE 3. Amiracarus pliocennatus Miko, n. sp. (A–C, E holotype from Trhlovca Cave, Slovenia; D—paratype from Račiška pečina Cave, Slovenia). A—dorsal view; B—ventral view (part); C—lateral view of prodorsum and podosoma; D—ventral view of camerostome and rostrum; E—detail of rostrum, dorsolateral view. Bars indicating 50 µm (A, C), 100 µm (B) and 25 µm (D). Abbreviations: cgl—circumgastric line, cpl—circumpedal line, dis—discidium, inc—rostral incision, lam—lamella, mt—mentotectum, pd1—pedotectum I, pd2—pedotectum II, pt—pteromorph, R—acetabular protrusion of leg III, rc—rostral carina, ru—rutellum, sl—notogastral lateromedial furrow, ss—sensillus, TrIII— trochanter III, Tr IV—trochanter IV, tsI—trochanteral seta I, tsII—trochanteral seta II, tu1—tutorial carina 1, tu2— tutorial carina 2, tu3—tutorial carina 3. Rest represents names of setae or setal insertions and lyrifissures.
FIGURE 73. S in Morphological analysis of the oribatid mite species Scutovertex pannonicus Schuster and description of its juvenile stages (Acari: Oribatida: Scutoverticidae)
FIGURE 73. S. pannonicus. Small sand hills near lake Oberer Stinker (Burgenland, Austria). Photograph by Julia Jagersbacher-Baumann.
FIGURE 71. S in Morphological analysis of the oribatid mite species Scutovertex pannonicus Schuster and description of its juvenile stages (Acari: Oribatida: Scutoverticidae)
FIGURE 71. S. pannonicus. Dimension of the longish red oil gland as seen in freshly hatched adults; arrows point the beginning and end, drawn schematically.
FIGURE 72. S in Morphological analysis of the oribatid mite species Scutovertex pannonicus Schuster and description of its juvenile stages (Acari: Oribatida: Scutoverticidae)
FIGURE 72. S. pannonicus. Overview of collecting sites (round dots) near Illmitz (Burgenland, Austria).
FIGURES 70. S. pannonicus adult, trachea leg IV in Morphological analysis of the oribatid mite species Scutovertex pannonicus Schuster and description of its juvenile stages (Acari: Oribatida: Scutoverticidae)
FIGURES 70. S. pannonicus adult, trachea leg IV. Variations in length of branch of femoral trachea leading into tibia or tarsus (1–8); trochanter: trachea ending not visible. Several setae and structures omitted.
ScienceDex guides
Understand access before you commit
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.