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14 results for “Japi”
Fig. 3 in Feeding ecology of a stream fish assemblage in an Atlantic Forest remnant (Serra do Japi, SP, Brazil)
Fig. 3. Biomass (g.m-2) of the different trophic groups of fish at each collecting site in Serra do Japi (SP) streams.
Fig. 4 in Feeding ecology of a stream fish assemblage in an Atlantic Forest remnant (Serra do Japi, SP, Brazil)
Fig. 4. Canonical Correspondence Analysis (CCA) showing the relationship between the biomass of insectivores (INS), omnivores (ONI), herbivores (HER), detritivores (DET), piscivores (PIS), omnivores-carnivores (O.CAR) and selected environmental variables. Temp = temperature; Veloc = Water Velocity; T.Nit = total nitrogen, Cond= Conductivity.
Fig. 2 a-b in Feeding ecology of a stream fish assemblage in an Atlantic Forest remnant (Serra do Japi, SP, Brazil)
Fig. 2 a-b. Scores of NMDS for the fish species (a) and food items (b) along the axes 1 and 2. Circles and rectangles (a) indicate trophic groups formed by the similarity array. Benthic insectivores (I), insectivores (II), detritivores (III), herbivores (IV), omnivores (V), piscivores (VI), omnivore-carnivores (VII). (b) Alg = algae; Det = detritus; OMt = organic matter; VMt = vegetal matter; Oth = others, YIn = young insects; Fis=fish; AIn = adult insects; InF = insect fragments, Nem= nematodes; Ann = Annelidae, Crs = Crustacea. Codes of species are shown in Table 2.
FIGURE 19. Aegla japi n in Morphological and molecular data reveal the cryptic diversity among populations of Aegla paulensis (Decapoda, Anomura, Aeglidae), with descriptions of four new species and comments on dispersal routes and conservation status
FIGURE 19. Aegla japi n. sp., male holotype (MZUSP 34374). A, lateral view of the anterior region of the cephalothorax. B, dorsal view of epibranchial area. C, third and fourth thoracic sternites. D, telson, uropods and sixth abdominal segment. Note in A, the subrostral process (arrow). Bars: A, C = 1.0 mm; B = 0.25 mm; D = 2.0 mm.
FIGURE 3. Onconeura japi n in Review of the genus Onconeura Andersen et Saether (Diptera: Chironomidae), with the description of four new species from Brazil
FIGURE 3. Onconeura japi n. sp. A–C—pupa, A—abdomen, dorsal view, B—sternite II, C—sternite VIII and anal lobe. D–G—larva, D—labrum, E—mentum, F—mandible, G—antenna.
FIGURE 2. Onconeura japi n in Review of the genus Onconeura Andersen et Saether (Diptera: Chironomidae), with the description of four new species from Brazil
FIGURE 2. Onconeura japi n. sp. A–B—male, hypopygium, A—detail of tergite IX, dorsal, B—hypopygium, tergite IX removed, sclerites hatched; left: dorsal, right: ventral view with gonostylus removed. C–F—female genitalia, C— ventral view, left with gonapophysis removed, D—dorsal view, E—apodeme lobe, F—labia.
FIGURE 7. Gripopteryx japi n in Taxonomic revision of Gripopteryx (Pictet, 1841) (Plecoptera: Gripopterygidae)
FIGURE 7. Gripopteryx japi n. sp., holotype male: a, head and pronotum, dorsal view; b, terminalia in dorsal view; c, terminalia in lateral view; d, terminalia in ventral view; e, epiproct, lateral view.
FIGURE 8. Gripopteryx japi n in Taxonomic revision of Gripopteryx (Pictet, 1841) (Plecoptera: Gripopterygidae)
FIGURE 8. Gripopteryx japi n. sp., female: a, terminalia in dorsal view; b, terminalia in ventral view; c, terminalia in ventrolateral view. Nymph: e, habitus, lateral.
FIGURES 35–38. Heterospilus japi. Holotype, female. 10 in Fourteen new species of Heterospilus Haliday (Hymenoptera, Braconidae: Doryctinae) from Brazil
FIGURES 35–38. Heterospilus japi. Holotype, female. 10, habitus, lateral view; 11, head and mesosoma, dorsal view; 12, mesosoma, dorsal view; 13, metasoma, dorsal view.
Japi: Cognitive, Emotional and Social Stimulation for Preschool Children
ClinicalTrials.gov study NCT06420544. IPD Sharing: YES. Countries: 1. Publications: 35.
Figure 3 from: Messas YF, Sobczak JF, Vasconcellos-Neto J (2017) An alternative host of Hymenoepimecis japi (Hymenoptera, Ichneumonidae) on a novel family (Araneae, Araneidae), with notes on behavioral manipulations. Journal of Hymenoptera Research 60: 111-118. https://doi.org/10.3897/jhr.60.14817
Figure 3 - Web modification in Mecynogea biggiba induced by the parasitoid wasp Hymenoepimecis japi. A Normal web of M. biggiba B–C Cocoon webs in lateral view, and D close of the center of the cocoon web. Arrows indicate the dome-shaped part of the web (white), hub of the dome (red) and support threads (green).
Figure 2 from: Messas YF, Sobczak JF, Vasconcellos-Neto J (2017) An alternative host of Hymenoepimecis japi (Hymenoptera, Ichneumonidae) on a novel family (Araneae, Araneidae), with notes on behavioral manipulations. Journal of Hymenoptera Research 60: 111-118. https://doi.org/10.3897/jhr.60.14817
Figure 2 - Mecynogea biggiba parasitized by Hymenoepimecis japi. A Adult female spider and first instar larvae B Adult female spider with second instar larvae on its abdomen C Third instar larvae of H. japi after killing its host spider D Third instar larvae consuming the hemolymph of M. biggiba E Detail of dorsal tubercles bearing several hooks F Cocoon of H. japi G Dense weave of cocoon threads in detail.
Fig. 1 in Feeding ecology of a stream fish assemblage in an Atlantic Forest remnant (Serra do Japi, SP, Brazil)
Fig. 1. Location of the Serra Japi in the APAs of Jundiaí, Cabreúva, Cajamar and in the municipality of Pirapora do Bom Jesus (SP), showing sampling sites in the different streams. Adapted from "Atlas das Unidades de Conservação Ambiental do Estado de São Paulo- Parte II-Interior, SMA, 1998".
Figure 1 from: Messas YF, Sobczak JF, Vasconcellos-Neto J (2017) An alternative host of Hymenoepimecis japi (Hymenoptera, Ichneumonidae) on a novel family (Araneae, Araneidae), with notes on behavioral manipulations. Journal of Hymenoptera Research 60: 111-118. https://doi.org/10.3897/jhr.60.14817
Figure 1 - A Mecynogea biggiba resting on its web hub B Typical dome-shaped web of M. biggiba.
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OpenNeuro
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