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Fig. 6 in First detailed records of water mite larvae (Hydrachnidia: Hydrovolzidae, Hydryphantidae) parasitizing empidid flies (Diptera: Empididae: Clinocerinae)
Fig. 6. Dependence of body size of parasites on the period of occurrence.
Fig. 4 in First detailed records of water mite larvae (Hydrachnidia: Hydrovolzidae, Hydryphantidae) parasitizing empidid flies (Diptera: Empididae: Clinocerinae)
Fig. 4. Clinocera storchi parasitized by Panisopsis curvifrons; a – habitus, b – abdomen.
Fig. 2 in First detailed records of water mite larvae (Hydrachnidia: Hydrovolzidae, Hydryphantidae) parasitizing empidid flies (Diptera: Empididae: Clinocerinae)
Fig. 2. Clinocera appendiculata parasitized by Panisopsis curvifrons; a – habitus, b – abdomen.
Fig. 5 in First detailed records of water mite larvae (Hydrachnidia: Hydrovolzidae, Hydryphantidae) parasitizing empidid flies (Diptera: Empididae: Clinocerinae)
Fig. 5. Percentage of mite-infested and uninfested Clinocera appendiculata and C. storchi.
Figure 1 in Checklist of water mites (Acari: Hydrachnidia) of the Himalayan and Tien Shan Mountains
Figure 1. Map of the study area.
Figure 3 in Hygrobates calabricus, a new species of water mite (Acariformes, Hydrachnidia, Hygrobatidae) from Italy, based on morphological and molecular evidence
Figure 3. Sample site of Hygrobates calabricus sp. nov. in Calabria (South Italy).
Figure 5 in Two new water mite species from Kyrgyzstan (Acari, Acariformes, Hydrachnidia)
Figure 5. Atractides magnisetus sp. nov., ♂ holotype. Idiosoma, ventral view. Scale bar = 100 µm.
Figure 13 in A new water mite species of the genus Hygrobates Koch, 1837 (Acari, Hydrachnidia, Hygrobatidae) from Far East of Russia
Figure 13. Hygrobates (Rivobates) ezoensis: 13 – pedipalp (after Matsumoto et al. 2005).
Fig. 2 in A new pattern of parasitism in water mites (Hydrachnidia)? An insight into their relationships with pupae of caddisflies (Trichoptera)
Fig. 2. Larva of Piona stjordalensis; a ventral side; b first-leg tarsus; c excretory pore plate.
Fig. 3 in A new pattern of parasitism in water mites (Hydrachnidia)? An insight into their relationships with pupae of caddisflies (Trichoptera)
Fig. 3. Larva of Piona stjordalensis; a foretic larva; b parasitic larva.
Table 2 Unidentified species with a in Checklist of Water mites in Mexico. Historical background and DNA barcoding perspectives
<p><b>Table 2</b> Unidentified species with a DNA barcode in BOLD database. BINs indicate putative species. * Unique BINs this database.</p><table><tbody><tr><th><i>Taxa</i></th><th>BIN</th><th><i>Taxa</i></th><th>BIN</th><th><i>Taxa</i></th><th>BIN</th></tr></tbody><tbody><tr><th>Arrenuridae</th><td></td><td>Limnesiidae</td><td></td><td><b>Pionidae</b></td><td></td></tr><tr><th>Arrenuridae</th><td>AEA 4828*</td><td><i>Limnesiidae</i></td><td>AEA 4382*</td><td><i>Pionidae</i></td><td>AEA 4809*</td></tr><tr><th><i>Arrenurus cristinae</i></th><td>AEA 7842*</td><td><i>Centrolimnesia</i></td><td>AEA 3914*</td><td><i>Piona</i></td><td>AEA 5358*</td></tr><tr><th><i>Arrenurus eduardoi</i></th><td>AEA 7844*</td><td><i>Limnesia</i></td><td>AEA 6471*</td><td><i>Piona</i></td><td>AEE 5501*</td></tr><tr><th><i>Arrenurus federicoi</i></th><td>AEB 7095*</td><td><i>Limnesia</i></td><td>ACX 7759</td><td><i>Piona</i></td><td>AEN 6046*</td></tr><tr><th><i>Arrenurus ecosur</i></th><td>ACX 8463</td><td><i>Limnesia</i></td><td>ACY 7380</td><td><i>Piona</i></td><td>AEO 7290*</td></tr><tr><th><i>Arrenurus marshallae</i></th><td>ACL2521</td><td><i>Limnesia</i></td><td>AEA 5595</td><td><i>Piona</i></td><td>AER1599 *</td></tr><tr><th><i>Arrenurus</i></th><td>ACX 8462*</td><td><b>Hygrobatidae</b></td><td></td><td><i>Piona</i></td><td>AER1600 *</td></tr><tr><th><i>Arrenurus</i></th><td>ACX 8788*</td><td>Hygrobatidae</td><td>AEA 5236*</td><td><i>Piona</i></td><td>AER1601 *</td></tr><tr><th><i>Arrenurus</i></th><td>ACX 8789*</td><td>Hygrobatidae</td><td>AEA 4089*</td><td><b>Mideopsidae</b></td><td></td></tr><tr><th><i>Arrenurus</i></th><td>ACY 6809*</td><td><i>Atractides</i></td><td>ACX 7786*</td><td>Mideopsidae</td><td>AEB 4633*</td></tr><tr><th><i>Arrenurus</i></th><td>ADI 3752*</td><td><i>Hygrobates</i></td><td>AEA 3689*</td><td><i>Mideopsis</i></td><td>ACY 7169*</td></tr><tr><th><i>Arrenurus</i></th><td>ADI 4458*</td><td><i>Hygrobates</i></td><td>AEA 3690*</td><td><i>Mideopsis</i></td><td>AEA 6512*</td></tr><tr><th><i>Arrenurus</i></th><td>AEA 3972*</td><td><i>Hygrobates</i></td><td>AEA 3924*</td><td><i>Mideopsis</i></td><td>ACX 8679</td></tr><tr><th><i>Arrenurus</i></th><td>AEA 7182*</td><td><i>Hygrobates</i></td><td>ACX 7887</td><td><b>Krendowskiidae</b></td><td></td></tr><tr><th><i>Arrenurus</i></th><td>AEA 7843*</td><td><i>Hygrobates</i></td><td>ADO 7098</td><td><i>Krendowskia</i></td><td>ACX 8435*</td></tr><tr><th><i>Arrenurus</i></th><td>AEA 8234*</td><td><b>Unionicolidae</b></td><td></td><td><i>Geayia</i></td><td>ACT 6195</td></tr><tr><th><i>Arrenurus</i></th><td>AEF1989 *</td><td>Unionicolidae</td><td>AEA 6658*</td><td><b>Hydrachnidia</b></td><td>AEA3823*</td></tr><tr><th><i>Arrenurus</i></th><td>AEF 8444*</td><td>Unionicolidae</td><td>ACY 7381</td><td></td><td>AEA4343*</td></tr><tr><th><i>Arrenurus</i></th><td>ACL2418</td><td>Unionicolidae</td><td>AEB1594 *</td><td></td><td>AEF3494*</td></tr><tr><th><i>Arrenurus</i></th><td>ACX 8464</td><td>Unionicolidae</td><td>AEA 7951*</td><td></td><td>AEF8255*</td></tr><tr><th><b>Limnocharidae</b></th><td></td><td>Unionicolidae</td><td>AEA 6062*</td><td></td><td>AEF0324*</td></tr><tr><th>Limnocharidae</th><td>AEA 4515*</td><td>Unionicolidae</td><td>AEA 4829*</td><td></td><td>AEI2293*</td></tr><tr><th><i>Limnochares</i></th><td>ACY 6840*</td><td>Unionicolidae</td><td>AEA 3726*</td><td></td><td>AEI2954*</td></tr><tr><th><i>Limnochares</i></th><td>ADI 4862*</td><td>Unionicolidae</td><td>AEA 4514*</td><td></td><td>AEI4296*</td></tr><tr><th><i>Eylaidae</i></th><td></td><td><i>Unionicola</i></td><td>ACX 8035*</td><td></td><td>AEI4327*</td></tr><tr><th><i>Eylaidae</i></th><td>AEA 4696*</td><td><i>Unionicola</i></td><td>ADM 7936*</td><td></td><td>AEI4328*</td></tr><tr><th><i>Eylaidae</i></th><td>AEA 5669*</td><td><i>Unionicola</i></td><td>AEB 4634*</td><td></td><td>AEI4329*</td></tr><tr><th><i>Eylais</i></th><td>ADD 9174*</td><td><i>Unionicola</i></td><td>AEE 0841*</td><td></td><td>AEI8266*</td></tr><tr><th><b>Hydryphantidae</b></th><td></td><td><i>Unionicola</i></td><td>ACX 9008</td><td></td><td>AEI8707*</td></tr><tr><th><i>Hydryphantes</i></th><td>AEA 5005*</td><td><i>Unionicola</i></td><td>AEF2345</td><td></td><td>AEI 9124*</td></tr><tr><th><b>Hydrodromidae</b></th><td></td><td><i>Unionicola</i></td><td>ACX 8034</td><td></td><td>AEJ2119*</td></tr><tr><th><i>Hydrodroma</i></th><td>ADF 3732</td><td><i>Neumania</i></td><td>AEA 8101*</td><td></td><td>AEN6047*</td></tr><tr><th><b>Anisitsiellidae</b></th><td></td><td><i>Neumania</i></td><td>ACY 6829</td><td></td><td>AEN8226*</td></tr><tr><th><i>Mamersellides</i></th><td>AEA 6955*</td><td><i>Koenikea</i></td><td>ACY 7384*</td><td></td><td>AEN8227*</td></tr><tr><th><i>Mamersellides</i></th><td>AEA 6956*</td><td><i>Koenikea</i></td><td>ACB 9299</td><td></td><td>AEO5260*</td></tr><tr><th><i>Torrenticolidae</i></th><td></td><td><i>Koenikea</i></td><td>ADI2928</td><td></td><td>AER2566 *</td></tr><tr><th><i>Torrenticolidae</i></th><td>AEA 4395*</td><td><i>Koenikea</i></td><td>ADI 3114</td><td></td><td>AEB1898</td></tr><tr><th><i>Torrenticola</i></th><td>AEA 7372*</td><td></td><td></td><td></td><td></td></tr></tbody></table>
Figure 29 in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 29. Hygrobates inflatipes sp. nov., holotype male, I-leg-5–6. Scale bar: 50 mm.
Figure 24 in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 24. Hygrobates spathuliferus cederberg, holotype male, I-leg-5–6. Scale bar: 50 mm.
Figure 23 in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 23. Hygrobates spathuliferus cederberg, holotype male, ventral view. Scale bar: 50 mm.
Figure 21. Hygrobates sigthori K in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 21. Hygrobates sigthori K. Viets, genital field female (slide 2077, SMF). Scale bar: 50 mm.
Figure 34. Hygrobates loricatus K. O in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 34. Hygrobates loricatus K. O. Viets, holotype male, I-leg-5–6. Scale bar: 50 mm.
Figure 33. Hygrobates loricatus K. O in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 33. Hygrobates loricatus K. O. Viets, holotype male, genital field. Scale bar: 50 mm.
Figure 19. Hygrobates sigthori K in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 19. Hygrobates sigthori K. Viets, ventral view male (slide 2076, SMF). Scale bar: 200 mm.
Figure 18. Hygrobates sanguineus K in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 18. Hygrobates sanguineus K. Viets, genital field male. Scale bar: 50 mm.
Figure 26 in Water mites of the family Hygrobatidae Koch from southern Africa (Acari: Hydrachnidia)
Figure 26. Hygrobates inflatipes sp. nov., holotype male, ventral view. Scale bar: 50 mm.
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Allen Brain Atlas
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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.
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