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1,205 results for “caddisflies”
FIGURE 1. Amber piece PED 1383 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 1. Amber piece PED 1383 with assemblage of different fossils. A, Overview. B–D. Caddisfly larva morphotype 1, Lepidostomatidae. B, Anterior region of specimen 1. C, Ventral view of specimen 2. D, Another specimen (Caddisfly larva morphotype 1, Lepidostomatidae; specimen 2 from amber piece PED 1383) not seen in overview from this direction. E, F, Non-biting midge larva (Diptera: Chironomidae) sitting on the case of a caddisfly specimen 3. E, Overview. F. Colour-marked version of F. Images obtained with digital microscopy, white transmitted light.
FIGURE 6. Caddisfly larva morphotype 3 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 6. Caddisfly larva morphotype 3, Leptoceridae, PED 1635, volume renders of µCT-scans. A, Lateral view. B, Lateral view, other side. C, Fronto-lateral view, case partially removed. D, Frontal view. E, Colour-marked version of D. F, labeled head. Abbreviations: at = antenna; md = possible mandibles.
FIGURE 7 in Unique fossils of caddisfly larvae from Baltic amber and in situ amber formation in aquatic ecosystems
FIGURE 7. Details of non-biting midge larva (Diptera: Chironomidae: Chironominae) in the amber piece PED 1383. A, Head in dorsal view B, Colour-marked version of A. C, Close-up on labrum region. D, Colour-marked version of C. A, B recorded with digital microscope with overhead light source, C, D recorded with digital microscopy, white transmitted light. Abbreviations: at = antennae; hc = head capsule; lo Lauterborn organ; lr = labrum; sI–II = labral setae I–II.
Figure 1 in Contribution to the knowledge of the caddisfly fauna of Montenegro - New data and records from the karstic springs of Lake Skadar basin
Figure 1. Map of the study area. The numbers correspond to spring identification numbers in Table 1.
Fig. 1 in Aquatic vertebrate predation threats to the Platte River caddisfly (Trichoptera: Limnephilidae)
Fig. 1. Percent of total Ironoquia plattensis larvae consumed over the 72 h test period for each vertebrate species tested.
Figure 21 in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 21 Map of Brazil, highlighting the five states with the most species-rich caddisflies fauna, and the states of the Brazilian Northeast region. Species numbers are presented between parentheses. Abbreviations of Brazilian states: AL=Alagoas, AM=Amazonas, CE=Ceará, MA=Maranhão, MG=Minas Gerais, PB=Paraíba, PE=Pernambuco, PI=Piauí, RJ=Rio de Janeiro, RN=Rio Grande do Norte, SE=Sergipe, SP=São Paulo.
Figure 18 Polycentropus claudioi new species, male genitalia. A in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 18 Polycentropus claudioi new species, male genitalia. A, left lateral; B, dorsal; C, ventral; D, phallus, left lateral; E, phallus, dorsal. Abbreviation: app., appendage.
Figure 20 in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 20 Distribution of the caddisfly species. A, new species, and records across the phytogeographic domains of Brazil; B, complete caddisfly record data in Bahia State; C, heatmap indicating the concentration of efforts.
Figure 19 Caddisfly fauna from Bahia state, Brazil. A in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 19 Caddisfly fauna from Bahia state, Brazil. A, Map of Bahia state, caddisfly records before 2009; B, Map of Bahia with caddisfly records in 2023; C, Caddisfly knowledge along time, description year of species which occur in state (gray), and first distributional records in state (black).
Figure 8 in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 8 Atopsyche froehlichi new species, male genitalia MEV, lateral view. A, genitalia left lateral; B, inferior appendage; C, detail of inferior appendage apex; D, detail of parapod; E, sterna VI and VII posteromesal projections; F, sternum V midlateral gland.
Figure 7 Atopsyche froehlichi new species, male genitalia. A in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 7 Atopsyche froehlichi new species, male genitalia. A, lateral; B, inferior appendage, dorsal; C, phallic apparatus, lateral; D, parapod and preanal appendage, dorsal; E, phallic apparatus, dorsal. Abbreviation: app., appendage.
Figure 5 Austrotinodes zeferina new species, male genitalia. A in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 5 Austrotinodes zeferina new species, male genitalia. A, lateral; B, dorsal; C, segment IX and inferior appendage, ventral; D, phallic apparatus, lateral; E, phallic apparatus, dorsal. Abbreviations: a.seg.IX = abdominal segment IX; a.seg.X = abdominal segment X; pre.app = preanal appendage; int.app = intermediate appendage; pha.gui = phallic guide; inf.app = inferior appendage; bas. lob = basomesal lobe.
Figure 3 Phylloicus froehlichi new species, male genitalia. A in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 3 Phylloicus froehlichi new species, male genitalia. A, lateral; B, dorsal; C, segment IX and inferior appendage, ventral; D, phallic apparatus (apex), ventral; E, phallic apparatus, lateral. Abbreviation: app., appendage.
Figure 1 in LEAq - Laboratório de Entomologia Aquática "Prof. Claudio Gilberto Froehlich" and the task of facing the biodiversity knowledge deficits on Caddisflies (Trichoptera), Bahia, Brazil
Figure 1 LEAq' scientific contribution directly related to the Linnean shortfall on the caddisfly phylogeny (simplified from Thomas et al., 2020), presenting only the 16 families which occur in Brazil. Bold to nine families with 59 species described by the LEAq team, including the eight described here, from 2009 to 2023.
Figure 5 in Biodiversity, DNA barcoding data and ecological traits of caddisflies (Insecta, Trichoptera) in the catchment area of the Mediterranean karst River Cetina (Croatia)
Figure 5. Maximum likelihood phylogram based on a fragment of COI (DNA barcode region) showing the related relationships of the genus Glossosoma. The bootstrap values (BS) are marked on the branches in the order NJ/ML. BS values less than 80 are not shown. The groups delineated by ABGD approach are shown on the right side of the tree. Specimens which genomic DNA was extracted in this study are written in bold letter.
Figure 1 in Biodiversity, DNA barcoding data and ecological traits of caddisflies (Insecta, Trichoptera) in the catchment area of the Mediterranean karst River Cetina (Croatia)
Figure 1. Map of the study area with sampling stations. Names and corresponding abbreviations of the stations are listed in Table 1.
Figure 3 in Biodiversity, DNA barcoding data and ecological traits of caddisflies (Insecta, Trichoptera) in the catchment area of the Mediterranean karst River Cetina (Croatia)
Figure 3. MDS analysis of caddisfly fauna similarity at stations on the Cetina, the Ruda, the Grab and the Rumin rivers.
Figure 2 in Biodiversity, DNA barcoding data and ecological traits of caddisflies (Insecta, Trichoptera) in the catchment area of the Mediterranean karst River Cetina (Croatia)
Figure 2. Cluster analysis of caddisfly fauna similarity at stations on the rivers Cetina, Ruda, Grab and Rumin.
Figure 5 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)
Figure 5. Maximum likelihood (ML) phylogram based on 658 bp long fragment of the mt COI DNA barcode region showing the relationships between species of the genus Setodess. Numbers above the branches represent bootstrap support (BS) for Neighbor-Joining (NJ) and ML analysis (NJ/ML). BS values less than 60 are not shown. Specimen ID from sequences obtained in this study are written with bold letters.
Figure 3 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)
Figure 3. NMDS similarity analysis of caddisflies fauna at the study area (sampling sites correspond to the list in Tab. 1).
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OpenNeuro
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