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2,196 results for “water mite”
FIGURES 14–17 in Water mite species of the genus Hydrodroma Koch (Acari: Hydrachnidia, Hydrodromidae) from Australasia. Part I
FIGURES 14–17. Hydrodroma kakadu sp. nov., male holotype (Northern Teritory, Plunge Poool Gunlom): 14, coxal and genital field; 15, genital field; 16, palp, mediel view; 17, capitulum. Scale Bars = 100 µm.
FIGURES 1–5 in Water mite species of the genus Hydrodroma Koch (Acari: Hydrachnidia, Hydrodromidae) from Australasia. Part I
FIGURES 1–5. Hydrodroma kununurra sp. nov., male holotype, WA Kununurra Lake: 1, coxal and genital field; 2, genital field; 3, palp, mediel view; 4, palp, lateral view; 5, capitulum. Scale Bars = 100 µm.
FIGURES 10–13 in Water mite species of the genus Hydrodroma Koch (Acari: Hydrachnidia, Hydrodromidae) from Australasia. Part I
FIGURES 10–13. Hydrodroma australis sp. nov., male holotype (WA Moore River): 10, coxal and genital field; 11, genital field; 12, palp, medial view; 13, capitulum. Scale Bars = 100 µm.
FIGURES 6–9. 6–8 in Water mite species of the genus Hydrodroma Koch (Acari: Hydrachnidia, Hydrodromidae) from Australasia. Part I
FIGURES 6–9. 6–8. Hydrodroma pilosa Besseling, male (from Markova Bara pool, Cetinje, Montenegro): 6, palp, mediel view and capitulum; 7, palp, lateral view; 8, I–L; 9 Hydrodroma kununurra sp. nov., male holotype: 9, I–L. Scale Bars = 100 µm
FIGURES 8–12 in New records of the water mite genus Arrenurus from Iran, with the description of two new species from Iran and Cyprus (Acari, Hydrachnidia, Arrenuridae)
FIGURES 8–12. Arrenurus (Micruracarus) cyprioticus spec. nov. (8, 9, 11 = holotype male, 10 = paratype male, Iran, 12 = paratype female): 8 = idiosoma, dorsal view, 9 = idiosoma, ventral view, 10 = idiosoma, lateral view, 11 = palp, 12 = idiosoma, ventral view. Scale Bars: 8, 9, 11 = 50 µm, 10 = 100 µm, 12 = 200 µm.
FIGURES 1–7 in New records of the water mite genus Arrenurus from Iran, with the description of two new species from Iran and Cyprus (Acari, Hydrachnidia, Arrenuridae)
FIGURES 1–7. Arrenurus albator (Müller), male (1–3 Iran, 4–5 Turkey, 6–7 The Netherlands): 1 = idiosoma, dorsal view, 2 = detail of petiole, dorsal view, 3 = detail of petiole, lateral view, 4 = cauda, 5 = detail of petiole, lateral view, 6 = cauda, 7 = detail of petiole, lateral view. Scale Bars: 4– 7 = 50 µm, 1–3 = 100 µm.
FIGURES 13–16 in New records of the water mite genus Arrenurus from Iran, with the description of two new species from Iran and Cyprus (Acari, Hydrachnidia, Arrenuridae)
FIGURES 13–16. Arrenurus (Truncaturus) minutus spec. nov. (13–15 = holotype male, 16 = paratype female): 13 = idiosoma, dorsal view, 14 = idiosoma, ventral view, 15 = palp, 16 = idiosoma, ventral view. Scale Bars: 13–15 = 50 µm, 16 = 200 µm.
FIGURES 50–54. Fig. 50 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 50–54. Fig. 50: Pseudofeltria scourfieldi, ventral idiosoma (from Martin 2000), Fig. 51: Tiphys sp., ventral idiosoma (redrawn and modified after Smith et al. 2001), Fig. 52: Ljania bipapillata, ventral idiosoma (from Martin 2000), Fig. 53: Aturus fontinalis, dorsal idiosoma, Fig. 54: A. fontinalis, ventral idiosoma (Figs. 53–54 from Martin 2000).
FIGURES 38–43. Fig. 38 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 38–43. Fig. 38: Lebertia stigmatifera, dorsal idiosoma, Fig. 39: L. stigmatifera, ventral idiosoma (Figs. 38–39 from Martin 2000), Fig. 40: L. sefvei, ventral idiosoma, Fig. 41: Hygrobates norvegicus, ventral idiosoma (Figs. 40–41 from Martin 2003), Fig. 42: Feltria sp., dorsal idiosoma, Fig. 43: Feltria sp., ventral idiosoma (Figs. 42–43 original).
FIGURES 8–14. Fig. 8 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 8–14. Fig. 8: Partnunia steinmanni, dorsal idiosoma, Fig. 9: Partnunia steinmanni, ventral idiosoma, Fig. 10: Partnunia steinmanni, IL, Fig. 11: Protzia distincta, dorsal idiosoma (Figs. 8–11 from Martin 2003), Fig. 12: P. eximia, ventral idiosoma (from Martin 2000), Fig. 13: Tartarothyas romanica, ventral idiosoma, Fig. 14: T. romanica, IIL (Figs. 13–14 from Martin 2003).
FIGURES 1–7. Fig. 1 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 1–7. Fig. 1: Panisellus thienemanni, ventral idiosoma and gnathosoma (redrawn and modified from Boehle 1996), Fig. 2: Panisus michaeli, ventral idiosoma, Fig. 3: Panisus michaeli, IL, Fig. 4: Thyas palustris, ventral idiosoma, Fig. 5: Thyas palustris, IIL (Figs. 2–5 from Martin 2003), Fig. 6: Thyopsis cancellata, dorsal idiosoma, Fig. 7: T. cancellata, area of dorsal plate (Figs. 6–7 from Martin 2000).
FIGURES 34–37. Fig. 34 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 34–37. Fig. 34: Bandakia concreta (from Martin 2003), Fig. 35: Lebertia holsatica, dorsal idiosoma, Fig. 36: L. holsatica, ventral idiosoma (Figs. 35–36 original), Fig. 37: L. glabra, ventral idiosoma (modified from Martin 2000). Scale bar: 100µm.
FIGURES 15–20. Fig. 15 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 15–20. Fig. 15: Sperchonopsis verrucosa, ventral idiosoma (from Martin 2000), Fig. 16: Sperchon clupeifer dorsal idiosoma (redrawn and modified after Ullrich 1976), Fig. 17: Sperchon setiger, dorsal idiosoma, Fig. 18: Sperchon setiger, ventral idiosoma and gnathosoma (from Renz et al. 2004), Fig. 19: Sperchon thienemanni, dorsal idiosoma, Fig. 20: Sperchon thienemanni, ventral idiosoma (Figs. 19–20 from Martin 2003).
FIGURES 47–49 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 47–49. Atractides fonticolus (original). Fig. 47: IL, Fig. 48: IIL, Fig. 49: IIIL. Scale bar: 100µm.
FIGURES 25–27 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 25–27. Sperchon longissimus (original). Fig. 25: IL, Fig. 26: IIL, Fig. 27: IIIL. Scale bar: 100µm.
FIGURES 44–46 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 44–46. Atractides fonticolus (original). Fig. 44: dorsal idiosoma, Fig. 45: ventral idiosoma, Fig. 46: chelicera. Scale bars: 44, 45 100µm, 46 50µm.
FIGURES 28–30 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 28–30. Sperchon squamosus (original). Fig. 28: dorsal idiosoma, Fig. 29: ventral idiosoma, Fig. 30: chelicera. Scale bars: 28, 29: 100µm, 30 50µm.
FIGURES 31–33 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 31–33. Sperchon squamosus (original). Fig. 31: IL, Fig. 32: IIL, Fig. 33: IIIL. Scale bar 100µm.
FIGURES 21–24 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 21–24. Sperchon longissimus (original). Fig. 21: dorsal idiosoma, Fig. 22: ventral idiosoma, Fig. 23:chelicera, Fig. 24: palp. Scale bars: 21, 22 100µm, 22, 23 50µm.
FIGURES 55–60. Fig. 55 in On the morphology and classification of larval water mites (Hydrachnidia, Acari) from springs in Luxembourg
FIGURES 55–60. Fig. 55: Mideopsis sp., dorsal idiosoma, Fig. 56: Mideopsis sp. ventral idiosoma (Figs. 55–56 redrawn and modified after Smith et al. 2001), Fig. 57: Chelomideopsis sp., dorsal idiosoma, Fig. 58: Chelomideopsis sp., ventral idiosoma (Figs. 57–58 redrawn and modified from Smith 1992), Fig. 59: Arrenurus fontinalis, dorsal idiosoma, Fig. 60: A. fontinalis, ventral idiosoma (Figs. 59–60 from Martin 2000).
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