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1,650 results for “Acariformes”
Fig. 4 in Taxonomy and distribution of African chiggers (Acariformes, Trombiculidae)
Fig. 4. Specialized setae of legs I, II and III of an example of Ericotrombidium sp. Double circles represent the bases of unspecialized tactile setae; single circles correspond to the unspecialized setae situated on the opposite side of the leg. Abbreviations: ga = genualae I (solenidia σ); mga = microgenuala I; ta = tibialae I (solenidia φ); mta = microtibiala I; S1 = tarsala I (solenidion ω); f1 = microtarsala I (famulus ε); pST = parasubterminala; ST = subterminala (eupathidium ζ); PTʹ = pretarsala I (eupathidium ζ); gm = genuala II; tm = tibialae II; f2 = famulus II; S2 = tarsala II; PTʺ = pretarsala II; gp = genuala III; tp = tibiala III.
Fig. 5 in Camerobiid mites (Acariformes: Raphignathina: Camerobiidae) inhabiting epiphytic bromeliads and soil litter of tropical dry forest with analysis of setal homology in the genus Neophyllobius
Fig. 5. Neophyllobius tepoztlanensis sp. nov., ♀, holotype. A. Palp. B. Subcapitulum. C. Dorsal idiosoma. D. Ventral idiosoma. E. Trochanter–tibia of leg I. F. Tarsus I.
Fig. 4 in Camerobiid mites (Acariformes: Raphignathina: Camerobiidae) inhabiting epiphytic bromeliads and soil litter of tropical dry forest with analysis of setal homology in the genus Neophyllobius
Fig. 4. Schematic tarsal setations of Neophyllobius cibyci sp. nov. A–D. ♀, holotype. A. Tarsus I. B. Tarsus II. C. Tarsus III. D. Tarsus IV. E–H. ♁, paratype (CNAC009238). E. Tarsus I. F. Tarsus II. G. Tarsus III. H. Tarsus IV. I–L. Protonymph, paratype (CNAC009241). I. Tarsus I. J. Tarsus II. K. Tarsus III. L. Tarsus IV. M–O. Larva, paratype (CNAC009242). M. Tarsus I. N. Tarsus II. O. Tarsus III.
Fig. 1 in Camerobiid mites (Acariformes: Raphignathina: Camerobiidae) inhabiting epiphytic bromeliads and soil litter of tropical dry forest with analysis of setal homology in the genus Neophyllobius
Fig. 1. Neophyllobius cibyci sp. nov., ♀, holotype. A. Palp. B. Subcapitulum. C. Dorsal idiosoma. D. Ventral idiosoma. E. Trochanter–tibia of leg I. F. Tarsus I.
Fig. 2 in Camerobiid mites (Acariformes: Raphignathina: Camerobiidae) inhabiting epiphytic bromeliads and soil litter of tropical dry forest with analysis of setal homology in the genus Neophyllobius
Fig. 2. Neophyllobius cibyci sp. nov. A–B. ♁, paratype (CNAC009238). A. Dorsal idiosoma. B. Ventral idiosoma. C–D. Protonymph, paratype (CNAC009241). C. Dorsal idiosoma. D. Ventral idiosoma. E–F. Larva, paratype (CNAC009242). E. Dorsal idiosoma. F. Ventral idiosoma.
Figure 8 in Ultrastructure of the prosomal gland complex in unfed larvae of the fresh-water mite Limnesia maculata (Müller, 1776) (Acariformes, Limnesiidae)
Figure 8 Organization of the labyrinth of coxal glands in unfed larvaeL. maculata.TEM. a – Central portion of the labyrinth with a conspicuous central lumen filled with various membranous and granular structures. Scale bar – 2 μm; b – Portion of the labyrinth with a collapsed lumen penetrated by microvilli. Scale bar – 2 μm; c – Basal lamina penetrating between the gland cells at their base (arrow). Scale bar – 0.5µζ; d – Portion of the convoluted labyrinth showing semi-circled mutual invagination of the gland cells (arrow). Scale bar – 1 μm; e – The apical cell contact with hardly distinguishable septate junction (arrow). Note axial filaments within microvilli (arrowheads). Scale bar – 0.5 μm. gl – glycogen; gll – gland lumen; m – mitochondria; mg – midgut; mt – microtubules; mv – microvilli; n – nucleus; nu – nucleolus; rb – residual body; rer – rough endoplasmic reticulum.
Figure 1 in Ultrastructure of the prosomal gland complex in unfed larvae of the fresh-water mite Limnesia maculata (Müller, 1776) (Acariformes, Limnesiidae)
Figure 1 Podocephalic glands in unfed larvaeL. maculatain sagittal sections. TEM. a – Nearly axial section showing two medial glands located one after another as well as pharynx and chelicera. Scale bar – 20 μm; b – Section slightly apart from the axial line showing medial glands and podocephalic canal.Arrow indicates long extensions of the duct-forming cells flanking lateral lacunas of the intra-alveolar lumen. Scale bar – 10 μm; c – Section through the region of the origin of leg I showing the lateral and the ventral glands as well as the terminal bladder of the coxal gland in a nearly collapsed condition. Scale bar – 20 μm. amg – anterior medial gland; bl – bladder; br – brain; ch – chelicera; hem – hemocyte; ial – intra-alveolar lumen; lg – lateral gland; legI – leg I; ms – muscles; pc – podocephalic canal; ph – pharynx; pmg – posterior medial gland; schs – subcheliceral space; vg – ventral gland.
Figure 5 in Morphology of tube-like threads related to Limnochares aquatica (L., 1758) (Acariformes: Hydrachnidia: Limnocharidae) in the laboratory
Figure 5. Scanning electron microscopy (SEM) of threads from the thread cloth and some external characteristics of the water mites Limnochares aquatica (L.). (a) Bunch of the hollow collapsed threads sometimes bending at different angles (arrow). Scale bar = 10 µm; (b) threads crossing freely and sometimes torn (arrow). Note a thread partly retaining its natural shape (arrowhead). Scale bar = 5 µm; (c) front view of a mite. Scale bar = 500 µm; (d) portion of the dorsal surface showing proposed dermal gland orifices (glandularia) provided either with a sensitive hair (arrows) or with a short spine (arrowheads). Scale bar = 100 µm; (e) slit-like orifice (arrow) provided with a sharp spine at the pole of the structure. Scale bar = 20 µm; (f) identical slit-like orifice (arrow) possessing a sensitive hair situated on the pedestal at the pole of the orifice. Scale bar = 20 µm.
Figure 1 in Morphology of tube-like threads related to Limnochares aquatica (L., 1758) (Acariformes: Hydrachnidia: Limnocharidae) in the laboratory
Figure 1. Water mites Limnochares aquatica (L.) and threads' associations during maintenance in the laboratory. (a) A mite in a drop of water with white spots on the dorsal surface (arrows); (b) Another, larger, mite in a drop of water revealing a small white flock on the posterior portion of the idiosoma (arrow); (c) A mite engaging with an extremely large flock association at its venter (arrowhead). Note the hardly distinguished possible detachment of the colourless threads from the dorsal body surface (arrow) forming figures of balls; (d) The balls of threads containing also inclusions of additional organic substances. Scale bars = 1 mm.
Figure 2 in Morphology of tube-like threads related to Limnochares aquatica (L., 1758) (Acariformes: Hydrachnidia: Limnocharidae) in the laboratory
Figure 2. Threads of the water mites Limnochares aquatica (L.) in a light microscope. (a) Freely interlaced threads in oil immersion in a common microscope. Note that practically colourless threads are unbranched and totally devoid of any internal substances, being sometimes bent at different angle. Scale bar = 20 µm; (b) Differential-interferential contrast (DIC) showing threads' replicas. Scale bar = 5 µm; (c) DIC of gentian-violet stained preparation showing both empty threads and thread with a core (arrow). Scale bar = 20 µm; (d) Bright field (BF) of gentian-violet stained preparation obviously indicating colourless threads and contaminating bacteria and bacterial chain (arrows) freely dispersed in the sample. Scale bar = 5 µm.
Figure 1 in A redescription of the chigger Hannemania achalai Alzuet and Mauri, 1987 (Acariformes: Prostigmata: Leeuwenhoekiidae) in frogs from Sierra Grande, Cordoba, Argentina
Figure 1 Hannemania achalai Alzuet and Mauri, 1987 (larva): A – dorsal aspect of idiosoma, B – ventral aspect of idiosoma, C – ventral aspect of gnathosoma, D – dorsal aspect of gnathosoma, E – prodorsum showing scutum and eyes, F – palpal tarsus, G – palpal claw, H – lateral aspect of tarsus I.
Fig. 2 in Species Diversity And Distribution Of Synanthropic Acarid Mites (Acariformes, Acaridia) In Transcarpathia
Fig. 2. Species diversity and the number of acarid mites in farm buildings in different zones of Transcarpathia.
Fig. 1 in Species Diversity And Distribution Of Synanthropic Acarid Mites (Acariformes, Acaridia) In Transcarpathia
Fig. 1. Map of acarid mites collection sites in Transcarpathian Region: a — map of Transcarpathian Region by altitudinal zonation; b — air temperature map of Transcarpathian Region; c — precipitation map of Transcarpathian Region.
Figure 1 in Raphignathoid mites (Acariformes: Raphignathoidea) in parts of the Azerbaijan provinces of Iran
Figure 1. The location of the sampled cities. A: Jolfa, B: Khoda Afarin, C: Urmia, D: Oshnaviyeh, E: Piranshahr, F: Mahabad, G: Sardasht.
Fig. 3 in Report of a Feather Mite Species (Acariformes: Astigmata) from the Oriental White Stork, Ciconia boyciana (Ciconiiformes: Ciconiidae), Belonging to the Japanese Native Population
Fig. 3. Pelargolichus orientalis, male (A) and female (B). A, right setae se and si on prodorsal shield, dorsal view; B, posterior part of hysterosoma, dorsal view. Scale bars: 10 µm.
Fig. 1 in Report of a Feather Mite Species (Acariformes: Astigmata) from the Oriental White Stork, Ciconia boyciana (Ciconiiformes: Ciconiidae), Belonging to the Japanese Native Population
Fig. 1. The taxidermy specimen of the Oriental White Stork Ciconia boyciana sampled in Toyooka City, Hyogo Prefecture, Japan.
Figures 1–4 in Some raphignathoid mites (Acariformes: Trombidiformes: Prostigmata) in Lorestan Province, with re-description of Raphignathus evidus Fan as a new record from Iran
Figures 1–4. Raphignathus evidus Fan (Female) – 1. Dorsal view of idiosoma; 2. Ventral view of idiosoma; 3. Palp; 4. Chelicerae.
Fig. 3 in The First Report of the Feather Mite Pseudalloptinus milvulinus (Acariformes: Pterolichidae) from the Black Kite Milvus migrans in Japan
Fig. 3. Pseudalloptinus milvulinus, female (MPM Coll. No. 21696e). A, Dorsal view; B, ventral view; C, right setae c3 (ventral view).
Fig. 4 in The First Report of the Feather Mite Pseudalloptinus milvulinus (Acariformes: Pterolichidae) from the Black Kite Milvus migrans in Japan
Fig. 4. Pseudalloptinus milvulinus: A, male (MPM Coll. No. 21696a). B, female (MPM Coll. No. 21696d). A, Ventral view, terminal membrane (white arrowhead) and adanal suckers (dark arrowhead); B, spermatheca and speprmaducts of female.
Fig. 1 in The First Report of the Feather Mite Pseudalloptinus milvulinus (Acariformes: Pterolichidae) from the Black Kite Milvus migrans in Japan
Fig. 1. Pseudalloptinus milvulinus: A, D, E, male (MPM Coll. No. 21696a). B, C, female (MPM Coll. No. 21696d). A, B, Ventral view; C, idiosomal seta c3; D, disposition if setae g, 4a and ps3 (arrowheads) on ventral idiosoma; E, ventral view of opisthosoma with terminal membranes (white arrowhead) and adanal suckers (dark arrowhead).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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