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2,343 results for “Hydrachnidiae”
FIGURES 1–7 in Taxonomical, ecological and zoogeographical studies on anisitsiellid water mites (Acari: Hydrachnidia: Anisitsiellidae Koenike, 1910) from Madagascar
FIGURES 1–7. Nilotonia (Dartiella) ivelany sp. nov., male holotype (MD 100a): 1, idiosoma, ventral view; 2, idiosoma, dorsal view; 3, leg-II; 4, leg-IV (first segment broken); 5, capitulum with left palp, lateral view; 6, right palp, medial view; 7, chelicera, lateral view. Scale bars = 100 µm.
FIGS 9 in The water mite Rutripalpus limicola Sokolow, 1934: new data on morphology and biology, and considerations on the systematic position of the monotypic family Rutripalpidae (Acari, Hydrachnidia)
FIGS 9±11. Rutripalpus limicola male. (9) Pedipalp medial view; (10) P-5 anterior view; (11) gnathosoma lateral view. Bar 5 100 mm.
FIGS 30 in The water mite Rutripalpus limicola Sokolow, 1934: new data on morphology and biology, and considerations on the systematic position of the monotypic family Rutripalpidae (Acari, Hydrachnidia)
FIGS 30±33. Rutripalpus limicola larva. (30) I-L; (31) II-L; (32) III-L; (33) empodium and claws. Bars 5 100 mm (30±32), 50 mm (33).
FIGS 22 in The water mite Rutripalpus limicola Sokolow, 1934: new data on morphology and biology, and considerations on the systematic position of the monotypic family Rutripalpidae (Acari, Hydrachnidia)
FIGS 22±24. Rutripalpus limicola deutonymph. (22) Idiosoma, ventral view; (23) pedipalp, lateral view; (24) genital ®eld. Bars 5 50 mm.
FIGS 3 in The water mite Rutripalpus limicola Sokolow, 1934: new data on morphology and biology, and considerations on the systematic position of the monotypic family Rutripalpidae (Acari, Hydrachnidia)
FIGS 3±8. Rutripalpus limicola male, legs. (3) I-L; (4) II-L; (5) III-L; (6) IV-L; (7) III-L, claws; (8) IV-L, claws. Bars 5 100 mm.
FIGS 25 in The water mite Rutripalpus limicola Sokolow, 1934: new data on morphology and biology, and considerations on the systematic position of the monotypic family Rutripalpidae (Acari, Hydrachnidia)
FIGS 25±29. Rutripalpus limicola larva. (25) Idiosoma, ventral view; (26) idiosoma, dorsal view; (27) lateral eyes; (28) urstigma; (29) excretory plate. Bars 5 100 mm (25, 26), 50 mm (27± 29).
FIGS 18 in The water mite Rutripalpus limicola Sokolow, 1934: new data on morphology and biology, and considerations on the systematic position of the monotypic family Rutripalpidae (Acari, Hydrachnidia)
FIGS 18±21. Rutripalpus limicola female. (18) Genital ventral view; (19) pedipalp lateral view; (20) P-5 anterior view; (21) chelicera. Bar 5 100 mm.
FIGS 12 in The water mite Rutripalpus limicola Sokolow, 1934: new data on morphology and biology, and considerations on the systematic position of the monotypic family Rutripalpidae (Acari, Hydrachnidia)
FIGS 12±15. Rutripalpus limicola male, genital ®eld. (12) Ventral view; (13, 14) lateral view, semischematic Ð(13) retracted, (14) protracted; (15) genital skeleton, posterolateral view. Bars 5 100 mm (12±14), 50 mm (15).
FIG. 9 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 9. Unionicola (Mutelicola) planicurvata female, Prep. 1369, allotype. (a) Dorsal surface; (b) ventral surface; (c) genital Želd; (d) left palp; (e) right palp.
FIG. 10 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 10. Unionicola (Mutelicola) planicurvata. (a) Genital Želd, female, Prep. 1370; (b) left palp, female, Prep. 1370; (c) right palp, female, Prep. 1370; (d) left palp, female, Prep. 1368; (e) right palp, female, Prep. 1368; (f) PV of left palp, inner lateral face, female, Prep. 1368; (g) PV of left palp, outer lateral face, female, Prep. 1368.
FIG. 8 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 8. Unionicola (Mutelicola) planicurvata male, Prep. 1366, holotype. (a) II-Leg.2–6, left; (b) III-Leg.1– 6, left.
FIG. 7 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 7. Unionicola (Mutelicola) planicurvata male, Prep. 1366, holotype. (a) I-Leg.2– 6 right; (b) II-Leg.1–6 right; (c) III-Leg.2–6 right; (d) IV-Leg.2 –6 right; (e) IV-Leg.3, distal setae; (f) IV-Leg.4, distal setae; (g) IV-Leg.5, distal setae; (h) IV-Leg.6, terminal claws.
FIG. 5 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 5. Unionicola (Mutelicola) blayi. (a) Genital Želd, female, Prep. 1363; (b) right palp, female, Prep. 1363; (c) genital Želd (tilted), female, Prep. 1364; (d) left palp, female, Prep. 1364.
FIG. 4 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 4. Unionicola (Mutelicola) blayi. (a–d) female, Prep. 1361, allotype. (a) Dorsal surface; (b) ventral surface; (c) left palp; (d) right palp and PV; (e) genital eld (tilted), female, Prep. 1375; (f, g) genital eld female, Prep. 1375 in ventral and lateral views respectively and gured prior to nal microscope preparation.
FIG. 6 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 6. Unionicola (Mutelicola) planicurvata. (a–e) male, Prep. 1366, holotype. (a) Dorsal surface; (b) ventral surface; (c) genital eld; (d) left palp; (e) right palp; (f) genital eld (posterior view) male, Prep. 1367; (g) left palp, male, Prep. 1367; (h) left palp, male, Prep. 1365; (i) PV left palp, male, Prep. 1365; (j) right palp, male, Prep. 1365; (k) PV right palp, male, Prep. 1365.
FIG. 1 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 1. Unionicola (Mutelicola) blayi, male, Prep. 1360, holotype. (a) Dorsal surface; (b) ventral surface; (c) genital Želd; (d) left palp; (e) PV left; (f) right palp.
FIG. 3 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 3. Unionicola (Mutelicola) blayi, male, Prep. 1360, holotype. (a) I-Leg.2–6; (b) II-Leg.2–6; (c) III-Leg.2–6; (d) IV-Leg. 1– 6.
FIG. 2 in Two new sympatric water-mites (Acari: Hydrachnidia: Unionicolidae) from the mutelid bivalve Aspatharia sinuata (von Martens) in Nigeria with some data on unionicoline-bivalve relationships
FIG. 2. Unionicola (Mutelicola) blayi. (a) Left palp, male, Prep. 1356; (b) right palp, male, Prep. 1356; (c) right palp, male, Prep. 1357; (d) left palp, male, Prep. 1359; (e) right palp, male, Prep. 1359; (f) left palp, male, Prep. 1358; (g) PV, left palp, male, Prep. 1358; (h) right palp, male, Prep. 1358; (i) PV, right palp, male, Prep. 1358; (j) genital Želd, male, Prep. 1356; (k) genital Želd, male, Prep.1358; (l) genital Želd, male, Prep. 1357.
Figure 13 in Geometric and traditional morphometrics for the assessment of character state identity: multivariate statistical analyses of character variation in the genus Arrenurus (Acari, Hydrachnidia, Arrenuridae)
Figure 13. Multivariate variation in the eight interlandmark distances measured between ventroglandularia V1, V2 and V3 in posterior view (distance set 3). A, scatter plot of canonical variate scores (root 1 vs. root 2), distances with highest standardized factors are illustrated for both axes. B, overall pattern of similarity among 11 Megaluracarus species and two Dadayella species based on Mahalanobis distances computed from the canonical variate analysis. This UPGMA phenogram (unweighted-pair grouping method using averages) groups the nine character states discovered in the set of distances from the ventroglandularia. Branches are labelled according to discrimination order defined by the canonical variates. Symbols in the plot and in the phenogram are as listed in Figure 11.
Figure 12 in Geometric and traditional morphometrics for the assessment of character state identity: multivariate statistical analyses of character variation in the genus Arrenurus (Acari, Hydrachnidia, Arrenuridae)
Figure 12. Multivariate variation in the 15 interlandmark distances measured between postocularia R2 and dorsoglandularia D2, D3 and D4 (distance set 2). (A) scatter plot of canonical variate scores (root 1 vs. root 2); distances with the highest standardized factors are illustrated for both axes. (B) overall pattern of similarity among 11 Megaluracarus species and two Dadayella species based on Mahalanobis distances computed from the canonical variate analysis. This UPGMA phenogram (unweighted-pair grouping method using averages) groups the 13 character states discovered in the collection of distances from the postocularia and dorsoglandularia. Branches are labelled according to discrimination order defined by the canonical variates. Symbols in the plot and in the phenogram are as listed in Fig. 11.
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Allen Brain Atlas
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