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268 results for “Trombiculidae”
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.
Figure 7 in Stylostome of the trombiculid mite larvaeNeotrombicula talmiensis (Schluger, 1955) (Acariformes, Trombiculidae) feeding on two host species in the Russian Far East
Figure 7 Stylostomes of Neotrombicula talmiensis(Schluger, 1955) larvae in the skin of the Asian chipmunkTamias sibiricus(Laxmann, 1769). Histological sections of aural cavity. Azure II-Eosin. A – Young stylostome composed of one eosinophil cone with the already developed feeding cavity situated within the upper epidermal layers. Note the grayish substance underneath the eosinophil cone arrow(). Scale bar – 50 μm; B – Young stylostome at the initial stage of development with the nearly empty feeding cavity underneath it. Note that the pale-grey substance
Figure 6 in Stylostome of the trombiculid mite larvaeNeotrombicula talmiensis (Schluger, 1955) (Acariformes, Trombiculidae) feeding on two host species in the Russian Far East
Figure 6 Skin injury of the Asian chipmunkTamias sibiricus(Laxmann, 1769) during feeding ofNeotrombicula talmiensis(Schluger, 1955) larvae. Histological sections of aural cavity. Azure II-Eosin. A - General view of aural cavity damaged by numerous feeding larvae. Note the differently developed stylostomes evolving within scabs. Scale bar – 500 μm; B – Two young closely disposed stylostomes evolving within epidermis. Note the numerous larvae at different feeding stages occupying the aural cavity. The feeding cavity is barely expressed. Scale bar 200 μm; C – Two young stylostomes of the recently attached larvae at different developmental stages evolving within the epidermis showing the large feeding cavity filled with numerous inflammatory cells. — car – aural cartilage, der – dermis, ec – eosinophil cone, ep – epidermis fc – feeding cavity, lar – larvae, sb – scab, st – stylostome, stc – stratum corneum
Figure 5 in Stylostome of the trombiculid mite larvaeNeotrombicula talmiensis (Schluger, 1955) (Acariformes, Trombiculidae) feeding on two host species in the Russian Far East
Figure 5 Skin injury of voles Myodes rufocanusSundevall, 1846 and stylostomes ofNeotrombicula talmiensis(Schluger, 1955) larvae. Histological sections. Azure II-Eosin. A – Several stylostomes evolving in both hypertrophic epidermis and penetrating into the strongly expressed feeding cavities filled with numerous infiltrating cells and cell debris. Note the grayish substance at the periphery of stylostomesarrows(). Scale bar – 100 μm; B – Two closely disposed stylostomes evolving within the cell association of the broken inflammatory and epidermal cells (arrows). Scale bar – 50 μm; C – Three differently arranged stylostomes evolving within the pronounced feeding cavity tightly packed with the broken inflammatory and epidermal cells fused to form a scab. Note the grayish substance at the periphery of stylostomesarrows(). Scale
Figure 4 in Stylostome of the trombiculid mite larvaeNeotrombicula talmiensis (Schluger, 1955) (Acariformes, Trombiculidae) feeding on two host species in the Russian Far East
Figure 4 Stylostomes of Neotrombicula talmiensis(Schluger, 1955) larvae in the skin of volesMyodes rufocanusSundevall, 1846. Histological sections. Azure II-Eosin. A – Young stylostome evolved in the hypertrophic stratum corneum. Note the active stratum lucidum surrounding growing stylostome and feeding cavity filled with a flocculent material without inflammatory cells. Stylostome canal is also empty. Scale bar
Figure 3 in Stylostome of the trombiculid mite larvaeNeotrombicula talmiensis (Schluger, 1955) (Acariformes, Trombiculidae) feeding on two host species in the Russian Far East
Figure 3 Skin injury of voles Myodes rufocanusSundevall, 1846 during feeding ofNeotrombicula talmiensis(Schluger, 1955) larvae. Histological sections of aural cavity. Azure II-Eosin. A – General view of aural cavity damaged by feeding larvae. Scale bar – 200 μm; B
Figure 2 in Stylostome of the trombiculid mite larvaeNeotrombicula talmiensis (Schluger, 1955) (Acariformes, Trombiculidae) feeding on two host species in the Russian Far East
Figure 2 Cheliceral blades and sites of attachment ofNeotrombicula talmiensis(Schluger, 1955) larvae. SEM. A – Cheliceral blades, dorsal view. Arrows show two small barbs on the tip of the cheliceral blades, the third barb is not visible.Arrowheadpoints to a groove on the medial surface of the cheliceral blade. Scale bar – 10 μm; B – Cheliceral blades, lateral view.Arrows indicate hardly noticeable barbs on the tip of the cheliceral blades (tricuspid cap). Scale bar – 10 μm; C – Sites of the larval attachment on the vole skin (arrows). Scale bar – 40 μm; D
Figure 1 in Stylostome of the trombiculid mite larvaeNeotrombicula talmiensis (Schluger, 1955) (Acariformes, Trombiculidae) feeding on two host species in the Russian Far East
Figure 1 Organization ofNeotrombicula talmiensis(Schluger, 1955) larvae. SEM. A – Scutum (one of sensilla broken). Scale bar – 40 μm; B – Paired eye and posterolateral seta of scutum.Arrow points to a pore on the scutal surface. Scale bar – 10 μm; C – Gnathosoma, dorsal view (palpal claws not visible). Arrows show branched setae on palpal femur, genu, and tibia (ventral seta of tibia and palpal tarsus not shown
Figure 1 Minteracarus mombasa n in A new genus and species of bat chiggers (Acariformes: Trombiculidae) from Kenya
Figure 1 Minteracarus mombasa n. sp., holotype: A – arrangement of dorsal idiosomal setae; B – arrangement of ventral idiosomal setae; C
Figure 2 Minteracarus mombasa n in A new genus and species of bat chiggers (Acariformes: Trombiculidae) from Kenya
Figure 2 Minteracarus mombasa n. sp.: A – scutum (holotype); B – ventral aspect of gnathosoma (paratype L:7263/2); C – dorsal aspect
Figure 2 Neotrombicula oryctiTaufflieb, 1960 in New locality and host records of two chigger mite species (Acariformes: Trombiculidae) from Morocco
Figure 2 Neotrombicula oryctiTaufflieb, 1960, holotype larva: A – dorsal idiosomal setae; B – ventral aspect of idiosoma.Neotrombicula lemni Taufflieb, 1960, holotype larva: C – dorsal idiosomal setae; D – ventral aspect of idiosoma. Abbreviations: cxI – leg coxa I; cxII – leg coxa II; cxIII – leg coxa III; H – humeral seta; sta – anterior sternal setae; stp – posterior sternal setae; V – ventral idiosomal setae; u – uropore (anus).
Figure 1 in New locality and host records of two chigger mite species (Acariformes: Trombiculidae) from Morocco
Figure 1 Ericotrombidium tarentolae(Vercammen-Grandjean et Langston, 1976), larva ZIN 17115 (A – C): A – scutum; B – genu and tibia II, dorsal aspect; C – tarsus II, dorsal aspect. Neotrombicula oryctiTaufflieb, 1960, larva ZIN 17121: D – scutum. Abbreviations: AL – anterolateral scutal seta; AM – anteromedian scutal seta; PL – posterolateral scutal seta; S – sensillum. Scale bars: A, D – 50 μm; B, C – 20 μm.
Figure 5 in On the life cycle and parasitism of the trombiculid mite Hirsutiella hexasternalis (Kudryashova, 1998) (Acariformes, Trombiculidae)
Figure 5. Spermatophores of H. hexasternalis in the culture vial. (A) two spermatophores on the walls of the small holes in the substrate; (B) single spermatophore on the wall of the groove in the substrate. Not scaled.
Linked collectors and determiners for: Chigger mites (Acariformes: Trombiculidae) of Iran.
Natural history specimen data linked to collectors and determiners held within, "Chigger mites (Acariformes: Trombiculidae) of Iran". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/5d41ffeb-8b0d-4381-836d-ccd12a52142a">https://bionomia.net/dataset/5d41ffeb-8b0d-4381-836d-ccd12a52142a</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5d41ffeb-8b0d-4381-836d-ccd12a52142a">https://gbif.org/dataset/5d41ffeb-8b0d-4381-836d-ccd12a52142a</a>. Formatted as a Frictionless Data package.
Figure 4 in A new species of the genus Eutrombicula Ewing, 1938 (Trombidiformes: Trombiculidae) and new records for the species Eutrombicula batatas (Linnaeus, 1758) in Brazil
Figure 4 Morphological details ofEutrombicula daemonin. sp. A. Leg I; B. Leg II; C. Leg III. Black spots = ventral setae of the idiosoma; white spots = dorsal setae of the idiosoma. Symbols: σ = solenidia on the genu of the legs I, II and III; κ = microsetae on genu and tibia of leg I;𝜑 = solenidia on the tibia of the legs I, II and III; ω = solenidion on the tarsus of the legs I and II; ε = famulus on the tarsus of the legs
Figure 3 in A new species of the genus Eutrombicula Ewing, 1938 (Trombidiformes: Trombiculidae) and new records for the species Eutrombicula batatas (Linnaeus, 1758) in Brazil
Figure 3 Morphological details ofEutrombicula daemonin. sp. A. dorsal view of idiosoma; B. ventral view of idiosoma. Black spots = ventral setae of the idiosoma; white spots = dorsal setae of the idiosoma. Symbols:c1-c5 = setae of the C row; d1-d4 = setae of the D row; e1-e4 =
Figure 5 in A new species of the genus Eutrombicula Ewing, 1938 (Trombidiformes: Trombiculidae) and new records for the species Eutrombicula batatas (Linnaeus, 1758) in Brazil
Figure 5 Morphological details ofEutrombicula daemonin. sp. A. leg I; B. leg III; C. prodorsal sclerite; D. palp tibia and tarsus; E. dorsal opisthosomal setae. Abbreviations and symbols: A – σ = solenidia on the genu of the leg I; κ = microsetae on genu and tibia of the 𝜑 leg I = solenidia on the tibia of the leg I; ω = solenidion on the tarsus of the leg I and ε = famulus on the tarsus of the leg I.𝜑 B =– solenidion
Figure 2 in A new species of the genus Eutrombicula Ewing, 1938 (Trombidiformes: Trombiculidae) and new records for the species Eutrombicula batatas (Linnaeus, 1758) in Brazil
Figure 2 Morphological details ofEutrombicula daemonin. sp. prodorsal sclerite. Symbols:ve = anterolateral setae; se = posterolateral setae; vi = anteromedial seta;si = trichobothria. Scale: 50µm.
Figure 5 in A contribution to the knowledge of Quadraseta brasiliensis Goff and Gettinger, 1989 (Trombidiformes: Trombiculidae), with description of the deutonymph instar
Figure 5 Low-temperature scanning electron micrographs of Quadraseta brasiliensisdeutonymph. Details of the deutonymphs' setae: a – branched setae of the genu on the leg I; b – solenidion of the genu on the leg I; c – microseta of the genu on the leg I; d – solenidion of the genu on the leg I; e – solenidion of the femur on the leg I; f – solenidion of the tibia on the leg I.
Figure 4 in A contribution to the knowledge of Quadraseta brasiliensis Goff and Gettinger, 1989 (Trombidiformes: Trombiculidae), with description of the deutonymph instar
Figure 4 Low-temperature scanning electron micrographs of Quadraseta brasiliensisdeutonymph: a – general view of the palp, leg I and II; b – idiosomal dorsal setae; c – crista metopica; d – genital area and anal plates; e – trichobothrium; f – palpal tarsus and palpal tibia.
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