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262 results for “Ecuadorian”

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Figs 3–6 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades

Figs 3–6. Macrobiotus polypiformis sp. nov. 3. Cuticular pores visible in PCM (paratype). 4. Cuticular pores visible in SEM (paratype). 5–6. Bucco-pharyngeal apparatus (dorso–ventral projection), the filled arrowhead indicates the first macroplacoid with central constriction (Fig. 5 = paratype in PCM; Fig. 6 = holotype in DIC). Scale bars in μm.

opencc-by-3.0Jun 2017View details →
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Figs 7–9 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades

Figs 7–9. Macrobiotus polypiformis sp. nov., paratypes. 7. Third band of teeth visible under PCM (empty arrowhead). 8–9. Oral cavity armature (SEM), the filled arrowheads indicate teeth of the first band, arrows indicate teeth of the second band, the empty arrowheads indicate teeth of the third band, M = median teeth, L = lateral teeth, a = accessory teeth, rhombi = ring folds, asterisks = ventral side.

opencc-by-3.0Jun 2017View details →
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Figs 10–15. Claws. 10. Claw II in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades

Figs 10–15. Claws. 10. Claw II with smooth lunules (PCM, paratype). 11. Claw IV (PCM, holotype). 12. Indented lunules on claw IV (PCM, paratype). 13. Claw I with smooth lunules (SEM, paratype). 14. Claw IV with indented lunules (SEM, paratype). 15. Aberrant claw IV (SEM, paratype). Numbers 1–2 indicate normally developed claw branches/spurs, whereas 3–4 indicate aberrant claw branches/ spurs. Scale bars in μm.

opencc-by-3.0Jun 2017View details →
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Figs 1–2 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades

Figs 1–2. Macrobiotus polypiformis sp. nov., holotype, habitus, dorso-ventral projection. 1. Seen in PCM. 2. Seen in DIC. Scale bars in μm.

opencc-by-3.0Jun 2017View details →
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2007-2017 Quarterly Ecuadorian National Employment Survey

<p>This repository contains the raw data from the Ecuadorian employment surveys from 2007-06 to 2017-12. PDF are questionnaires. Most datasets are in .SPPSS format (.sav). Each database was downloaded and unzipped as-is from the institutional website of INEC ECUADOR on November 15, 2021, using the &quot;banco de informacion estadistica&quot;: https://aplicaciones3.ecuadorencifras.gob.ec/sbi-war/</p>

opencc-by-4.0Nov 2021View details →
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Fig. 3 in Assessing genetic diversity of three species of potato tuber moths (Gelechiidae, Lepidoptera) in the Ecuadorian highlands

Fig. 3. Distribution of 5 haplotypes and sequence identity between each pair of Symmetrischema tangolias haplotypes. St-H1 was present in all 4 provinces; St-H2 was present in 3 provinces; the other 3 haplotypes were present only in 1 province for each haplotype. Arrows point to province(s) instead of a specific sampling location.

opencc-by-4.0Sep 2020View details →
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Fig. 1 in Assessing genetic diversity of three species of potato tuber moths (Gelechiidae, Lepidoptera) in the Ecuadorian highlands

Fig. 1. Use of pheromone traps to collect potato tuber moths in Cacha, Chimborazo, and Tishinguirí, Bolívar: (A) potato crops are grown in mountainous regions of Ecuador where smallholder terrace farming is predominant; (B) low-cost pheromone traps were made of plastic bottles; a species-specific lure is fixed to the bottle cap using a string, and thumb-sized holes were carved to allow moths to fly into the bottle that was filled with soapy water; (C) 3 different traps were placed (pointed by arrows) in each field at least 100 m apart to catch different moths.

opencc-by-4.0Sep 2020View details →
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Fig. 5 in Assessing genetic diversity of three species of potato tuber moths (Gelechiidae, Lepidoptera) in the Ecuadorian highlands

Fig. 5. Distribution of 3 haplotypes and sequence identity between each pair of Phthorimaea operculella haplotypes. Po-H1 was present in all 4 provinces, Po-H3 was present only in Cotopaxi and Chimborazo; Po-H2 was limited to Tungurahua.

opencc-by-4.0Sep 2020View details →
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Fig. 2 in Assessing genetic diversity of three species of potato tuber moths (Gelechiidae, Lepidoptera) in the Ecuadorian highlands

Fig. 2. Alignment of 5 COI haplotype sequences of Symmetrischema tangolias samples. KX443104.1 is a reference sequence from GenBank. Sequences of these 5 haplotypes were deposited in GenBank with accession numbers MN223391 to MN223395.

opencc-by-4.0Sep 2020View details →
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Fig. 4 in Assessing genetic diversity of three species of potato tuber moths (Gelechiidae, Lepidoptera) in the Ecuadorian highlands

Fig. 4. Alignment of 3 unique COI haplotype sequences of Phthorimaea operculella. MF121882 is a reference sequence from GenBank. Sequences of these 3 haplotypes were deposited in GenBank with accession numbers MN205567 to MN205569.

opencc-by-4.0Sep 2020View details →
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Figure 2 in First report of the Ecuadorian deep-sea scorpionfish, Trachyscorpia verai Béarez & Motomura, 2009 (Actinopteri: Scorpaenidae) from Peruvian marine waters

Figure 2. – Lateral view of Trachyscorpia verai. A: IMARPE-18787, 223 mm SL. B: IMARPE-18789, 266 mm SL. Photographed approximately one hour after capture and prior to preservation (photo F. Zavalaga).

opencc-by-4.0Dec 2023View details →
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Figure 4 in First report of the Ecuadorian deep-sea scorpionfish, Trachyscorpia verai Béarez & Motomura, 2009 (Actinopteri: Scorpaenidae) from Peruvian marine waters

Figure 4. – Endoparasites of the genus Anisakis (larva L3) found in the mesentery of Trachyscorpia verai.

opencc-by-4.0Dec 2023View details →
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Figure 3. – A in Figure 3 in First report of the Ecuadorian deep-sea scorpionfish, Trachyscorpia verai Béarez & Motomura, 2009 (Actinopteri: Scorpaenidae) from Peruvian marine waters

Figure 3. – A: Pisang River, Padang City, West Sumatra Province, Indonesia (1°07'05"S, 100°23'56"E) (photograph by Ari Wright). B: Way Lalaan River, Tenggamus Regency, Lampung Province, Indonesia (5°29'12"S, 104°41'29"E) (photograph by Ari Wright).

opencc-by-4.0Dec 2023View details →
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Figure 2 in Figure 3 in First report of the Ecuadorian deep-sea scorpionfish, Trachyscorpia verai Béarez & Motomura, 2009 (Actinopteri: Scorpaenidae) from Peruvian marine waters

Figure 2. – Distribution map of Belobranchus segura. First records in Sumatra, Indonesia (black stars, this study) and previous published records (black triangles) based on Keith et al. (2012, 2021), Kottelat (2013), Miesen et al. (2016), Dahruddin et al. (2016) and Larson (2021).

opencc-by-4.0Dec 2023View details →
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Figure 2. A in First record of parasitism in Avicularia purpurea Kirk, 1990 (Araneae: Theraphosidae: Aviculariinae) by Notocyphus aff. tyrannicus Smith, 1855 (Hymenoptera: Notocyphinae) in the Ecuadorian Amazon

Figure 2. A. Localities of A. purpurea in Ecuador. B. Juvenile individual of A. purpurea that presented the parasitic larvae of Notocyphus aff. tyrannicus. C. Live adult of N. aff. tyrannicus. Scale bar: 1 cm.

opencc-by-4.0Mar 2021View details →
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Figure 3. A in First record of parasitism in Avicularia purpurea Kirk, 1990 (Araneae: Theraphosidae: Aviculariinae) by Notocyphus aff. tyrannicus Smith, 1855 (Hymenoptera: Notocyphinae) in the Ecuadorian Amazon

Figure 3. A. Dorsal view of N. aff. tyrannicus. B. Front view. C. Side view. D. Cocoon of N. aff. tyrannicus. E. Silk shelter made by A. purpurea, note the cocoon at one end. F. Wing detail of N. aff. tyrannicus. Scale bar: 1 cm.

opencc-by-4.0Mar 2021View details →
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Figure 1 in First record of parasitism in Avicularia purpurea Kirk, 1990 (Araneae: Theraphosidae: Aviculariinae) by Notocyphus aff. tyrannicus Smith, 1855 (Hymenoptera: Notocyphinae) in the Ecuadorian Amazon

Figure 1. Locality where the specimen of A. purpurea parasitized by Notocyphus af. tyrannicus was collected. / Localidad de recolección del especímen de A. purpurea parasitado por Notocyphus af. tyrannicus.

opencc-by-4.0Mar 2021View details →
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Fig. 14–19 in Chironomidae (Insecta: Diptera) of Ecuadorian highaltitude streams: a survey and illustrated key

Fig. 14–19. Cricotopus sp. D: 14a. Mentum. Arrow indicates the reduced second lateral tooth. 14b. Mandible. 14c. Head capsule,ventral view. Limnophyes sp.: 15a. Anal end of body, anal tubules are indicated by arrow. 15b. Antenna and mandible, arrow indicates long antennal blade. 15c. Mentum with wedge shaped tubercle (indicated by arrow). Metriocnemus eurynotus group: 16a. Mandible. 16b. Antenna. 16c. Mentum. 16d. Head capsule, ventral view. Metriocnemus fuscipes group: 17a. Antenna. 17b. Mandible. 17c. Mentum. Onconeura sp.: 18a. Head capsule. Arrow indicates antenna. 18b. Mentum and mandible. 18c. Antenna. 18d. Body segments with strong setation. Orthocladius (Euo.) sp.: 19a. Mentum. 19b. Head capsule, ventral view. 19c. Detail of occipital margin. 19d. Antenna and madible.

opencc-by-4.0Nov 2018View details →
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Figs. 8–13 in Chironomidae (Insecta: Diptera) of Ecuadorian highaltitude streams: a survey and illustrated key

Figs. 8–13. Parochlus sp. B: 8a to c. Anal end with posterior parapod, procercus and anal setae, lateral (a, b) and dorsal view (c). Podonomus sp.: 9a. Anterior parapod with fan shaped arrangement of claws, lateral view. 9b, c. Anal end with posterior parapod, procercus, and anal setae, dorsolateral view. 9d. Larvae under low magnification. Corynoneura lobata group: 10a. Antenna. 10b. Mentum, mandibles, and labro-epipharyngeal region (arrows indicate bifid SI and pecten). 10c. Head capsule, dorsolateral view. Cricotopus sp. A: 11a. Labro-epipharyngeal region. 11b. Body. 11c. Body setation (indicated by arrow). 11d. Head capsule, ventral view (position of seta submenti indicated by arrow). 11e. Mandible. Cricotopus sp. B: 12a. Mandible. 12b. Head capsule, ventral view. 12c. Mentum view (position of seta submenti indicated by arrow). 12d. Body segment with seta (indicated by arrow). Cricotopus sp. C: 13a. Mandible. 13b. Head capsule, ventral view. 13c. Mentum (arrow indicates position of seta submenti).

opencc-by-4.0Nov 2018View details →
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Figs. 2–7 in Chironomidae (Insecta: Diptera) of Ecuadorian highaltitude streams: a survey and illustrated key

Figs. 2–7. Manoa sp.: 2a. Labrum-epipharyngis. 2b. Antennae. 2c. Mentum, mandibles and ventromental plates. 2d. Posterior parapods and anal tubules, lateral view. Tanytarsus sp.: 3a Mandible. 3b. Mentum and ventromental plates. 3c. Head capsule, ventral view. 3d. Labro-epipharyngeal region (arrow indicates premandibles with 3 teeth). Limaya sp.: 4a. Mandible. 4b. Mentum. 4c. Antenna. 4d. Labro-epipharyngeal region. Paraheptagyia sp. A: 5a. Head capsule, dorsal view. 5b. Mentum and mandibles. 5c. Head capsule,ventral view, arrow indicates occipital margin. Paraheptagyia sp. B: 6a. Mentum. 6b. Mandibles. 6c. Anal end of body, lateral view. 6d. Head capsule, ventral view, arrow indicates occipital margin. Parochlus sp. A: 7a, e. Anal end with posterior parapods, procercus and anal setae, lateral and dorsal view. 7b. Mentum and mandibles. 7c. Claws of posterior parapods (note the 2 types of claws indicated by arrow). 7d. Antenna.

opencc-by-4.0Nov 2018View details →

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