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90 results for “Monophlebidae”
Fig. 2 in Fig. 3 in Description of A New Archaeococcoid of the Genus Newstead (Hemiptera: Coccomorpha: Monophlebidae) from India.
Fig. 2. Diagnostic characters of a slide-mounted adult female, Perissopneumon kalyaniense Das & Das sp. nov. A, whole body (ventral view). B, antenna. C, hind leg. D, abdominal spiracle and nearby transluscent membranous area. E, beak. F, bare areas of cuticle without pores or setae. osteole like structure derm. G, anus. H, cicatrics. I, abdominal spiracle. J, marsupial opening. K, posterior marginal area. L, lateral marginal area. M, thoracic spiracle. N, different multilocular pores.
Fig. 1 in Fig. 3 in Description of A New Archaeococcoid of the Genus Newstead (Hemiptera: Coccomorpha: Monophlebidae) from India.
Fig. 1. Perissopneumon kalyaniense Das & Das sp. nov. A and B, adult females on branches of Glycosmis pentaphylla (Retz.) DC. C and D, dorsal and ventral views, respectively, of alcohol preserved adult female.
Fig. 3 in Fig. 3 in Description of A New Archaeococcoid of the Genus Newstead (Hemiptera: Coccomorpha: Monophlebidae) from India.
Fig. 3. Taxonomic illustration of diagnostic characters of adult female, Perissopneumon kalyaniense Das & Das sp. nov. A, whole body. B, antenna. C, hind leg. D, beak. E, thoracic spiracle. F, bare areas of cuticle without pores or setae. G, marginal setae. H, anus. I, multilocular pores. J, abdominal spiracle. K, ventral cicatrics.
Fig. 5 in Effect of soil treatments for cottony cushion scale (Hemiptera: Monophlebidae) control on Nylanderia fulva (Hymenoptera: Formidicae) survival and trailing activity
Fig. 5. Correlations between the mean numbers of I. purchasi and N. fulva in pots treated with (A) CoreTect® (r = 0.88; n = 8), (B) Merit® 2F (r = 0.88; n = 8), and (C) control (untreated) (r = 0.60; n = 8).
Fig. 1 in Effect of soil treatments for cottony cushion scale (Hemiptera: Monophlebidae) control on Nylanderia fulva (Hymenoptera: Formidicae) survival and trailing activity
Fig. 1. Mean (n = 8) numbers of Icerya purchasi per pittosporum plant counted on 3 branches of each plant. Different letters indicate significantly different (P <0.05) means by repeated measures analysis of variance and Tukey HSD test (R Development Core Team 2012).
Fig. 4 in Effect of soil treatments for cottony cushion scale (Hemiptera: Monophlebidae) control on Nylanderia fulva (Hymenoptera: Formidicae) survival and trailing activity
Fig. 4. Mean numbers of Nylanderia fulva trails on the trunk of pittosporum plant. Different letters indicate significantly different (P <0.05) means by repeated measures analysis of variance and Tukey HSD test (R Core Team 2012).
Fig. 2 in Effect of soil treatments for cottony cushion scale (Hemiptera: Monophlebidae) control on Nylanderia fulva (Hymenoptera: Formidicae) survival and trailing activity
Fig. 2. Mean (n = 8) numbers of Nylanderia fulva counted from sausage samples placed near the base of the trunk of pittosporum plants. Different letters indicate significantly different (P <0.05) means by repeated measures analysis of variance and Tukey HSD test (R Core Team 2012).
Linked collectors and determiners for: Revision of world Austroterobiinae and Parasaphodinae (Hymenoptera: Chalcidoidea: Pteromalidae), parasitoids of giant scales (Hemiptera: Coccoidea: Monophlebidae).
Natural history specimen data linked to collectors and determiners held within, "Revision of world Austroterobiinae and Parasaphodinae (Hymenoptera: Chalcidoidea: Pteromalidae), parasitoids of giant scales (Hemiptera: Coccoidea: Monophlebidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/5274b2f8-e4d0-4ac9-8e81-a23e886b2380">https://bionomia.net/dataset/5274b2f8-e4d0-4ac9-8e81-a23e886b2380</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5274b2f8-e4d0-4ac9-8e81-a23e886b2380">https://gbif.org/dataset/5274b2f8-e4d0-4ac9-8e81-a23e886b2380</a>. Formatted as a Frictionless Data package.
Figure 1. Colombian Crypticerya spp. A in First records of the iceryine scale insects Crypticerya brasiliensis (Hempel) and Crypticerya genistae (Hempel) (Hemiptera: Monophlebidae) for Colombia
Figure 1. Colombian Crypticerya spp. A. Crypticerya abrahami (Newstead) after removing bark of tree trunk of Pithecelobium dulce. Note absence of long waxy secretions and ovisac. B. Crypticerya brasiliensis (Hempel). Note long and curved lateral waxy filament laterad to long caudal tuft (red arrow). C. Crypticerya genistae (Hempel). Note absence of long waxy tufts and presence of a long ovisac. D. Crypticerya montserratensis (Riley and Howard). Note very long thread-like waxy filaments. E. Crypticerya multicicatrices Kondo and Unruh. Note shorter waxy filament laterad to long caudal tuft (red arrow). F. Crypticerya zeteki (Cockerell). Note filament of intermediate length laterad to long caudal tuft. Photos: B by A. Caballero, A, C, E, F by T. Kondo, D reproduced from illustration by Riley and Howard (1890).
Figure 2 in First report of Delphastus quinculus Gordon and Diomus seminulus (Mulsant) (Coleoptera: Coccinellidae) feeding on eggs and first-instar nymphs of Crypticerya multicicatrices Kondo and Unruh (Hemiptera: Monophlebidae)
Figure 2. Delphastus quinculus Gordon (see arrow) Known hosts. Tetranychus sp. (Acari: Tetranych- feeding on eggs inside ovisac of Crypticerya multicicatrices idae) and Aleurodicus cocois (Curtis) (Hemiptera: Kondo and Unruh. Notice that the coccinellid has eaten Aleyrodidae) on banana and plantain; Lepidosapart of the wax of the ovisac in order to get access to the phes beckii (Newman) (Hemiptera: Diaspididae), eggs that are held inside it. Photo by R. López Bermúdez. Aphis spiraecola Patch and Toxoptera aurantii
Figure 2 in Report of new invasive scale insects (Hemiptera: Coccoidea), Crypticerya multicicatrices Kondo and Unruh (Monophlebidae) and Maconellicoccus hirsutus (Green) (Pseudococcidae), on the islands of San Andres and Providencia, Colombia, with an updated taxonomic key to iceryine scale insects of South America
Figure 2. Crypticerya multicicatrices Kondo and Unruh, adult female (modified from Kondo and Unruh (2009), with copyright permission from the journal Neotropical Entomology). A, Simple multilocular pores, with bilocular or trilocular center and 6–8 (very rarely 0) outer loculi. B, Short hair-like seta. C, Long hair-like seta. D, Various types of simple multilocular pores, each with star-shaped center and 4–6 outer loculi. E, Flagellate seta. F, Simple multilocular pores surrounding anal opening, each with bilocular or trilocular center and 8–10 elongate outer loculi. G, Simple multilocular pores surrounding vulva, with bilocular or trilocular center and each with 8–14 elongate outer loculi. H, Abdominal spiracle. I, Simple multilocular pores on ventromedial abdomen, with reniform center and 4–6 outer loculi. J, Simple multilocular pores, with bilocular or trilocular center and 8–10 outer loculi. K, Enlargement of setal base. L, Various types of simple multilocular pores, with triangular, cruciform or star-shaped center and 4–7 (very rarely 0) outer loculi. M, Various types of simple multilocular pores present on ventral abdomen, with triangular or cruciform center and 3–6 outer loculi.
Figure 1 in Report of new invasive scale insects (Hemiptera: Coccoidea), Crypticerya multicicatrices Kondo and Unruh (Monophlebidae) and Maconellicoccus hirsutus (Green) (Pseudococcidae), on the islands of San Andres and Providencia, Colombia, with an updated taxonomic key to iceryine scale insects of South America
Figure 1. Adult females (center) and nymphs (on each side) of Crypticerya multicicatrices on coconut leaf. Notice empty egg chorions on median slit (arrowed) on ovisac from where first-instar nymphs exit ovisac.
Figure 4 in Report of new invasive scale insects (Hemiptera: Coccoidea), Crypticerya multicicatrices Kondo and Unruh (Monophlebidae) and Maconellicoccus hirsutus (Green) (Pseudococcidae), on the islands of San Andres and Providencia, Colombia, with an updated taxonomic key to iceryine scale insects of South America
Figure 4. Natural enemies of C. multicicatrices. A. Encyrtid sp. 1. B. Encyrtid sp. 2. C. Left. Diomus? sp. Center and Right. Delphastus? sp. D. Delphastus? sp. on ovisac of C. multicicatrices preying upon eggs (see arrow). Photos A‒C by TK; D by R. L. Bermúdez.
Figure 3 in First report of Delphastus quinculus Gordon and Diomus seminulus (Mulsant) (Coleoptera: Coccinellidae) feeding on eggs and first-instar nymphs of Crypticerya multicicatrices Kondo and Unruh (Hemiptera: Monophlebidae)
Figure 3. Diomus seminulus (Mulsant). A–D: habitus; E: Habitus variation; F: male sipho; G–J: male tegmen; K: abdomen; L: female genitalia. Photos by G. González.
Figure 1. Delphastus quinculus Gordon. A–D in First report of Delphastus quinculus Gordon and Diomus seminulus (Mulsant) (Coleoptera: Coccinellidae) feeding on eggs and first-instar nymphs of Crypticerya multicicatrices Kondo and Unruh (Hemiptera: Monophlebidae)
Figure 1. Delphastus quinculus Gordon. A–D: habitus; E: abdomen (ventral view); F–G: male sipho; H–K: male tegmen; L: female coxites; M–N: female spermatheca. Photos by G. González.
Figure 3. Crypticerya multicicatrices. A in Report of new invasive scale insects (Hemiptera: Coccoidea), Crypticerya multicicatrices Kondo and Unruh (Monophlebidae) and Maconellicoccus hirsutus (Green) (Pseudococcidae), on the islands of San Andres and Providencia, Colombia, with an updated taxonomic key to iceryine scale insects of South America
Figure 3. Crypticerya multicicatrices. A. On Cajanus cajan. B. On Spondias purpurea. C. On Tectona grandis. D. On Citrus latifolia. E. On Delonix regia. F. On a palm. G. On Carica papaya. H. On Artocarpus altilis. Notice sooty mold on leaves. I. Dieback of Erythrina variegata street trees.
Figure 2. A in Rodolia cardinalis (Mulsant) (Coleoptera: Coccinellidae), a new predator of Crypticerya multicicatrices Kondo and Unruh (Hemiptera: Monophlebidae)
Figure 2. A. Larva of Rodolia cardinalis on ovisac of Crypticeria multicicatrices. B. Larva of R. cardinalis feeding on C. multicicatrices nymph. C. Adult of R. cardinalis next to a third-instar nymph of C. multicicatrices. D. Adult R. cardinalis feeding on nymph of C. multicicatrices.
Figure 1. A. Anovia punica. Bluish-dark specimen from Cali. B in Rodolia cardinalis (Mulsant) (Coleoptera: Coccinellidae), a new predator of Crypticerya multicicatrices Kondo and Unruh (Hemiptera: Monophlebidae)
Figure 1. A. Anovia punica. Bluish-dark specimen from Cali. B. Rodolia cardinalis, with typical patterns. Photos by C. Pinchao.
Figures 9–17 in Geographical distribution and phenotypic variation of Anovia punica Gordon (Coleoptera: Coccinellidae: Noviini), a predatory ladybeetle of fluted scales (Hemiptera: Coccoidea: Monophlebidae)
Figures 9–17. Male genitalia of Anovia punica. Peru: 9–11) San Martin State. Colombia: 12–14) San Andres Island. 15–17) Magdalena State. 9), 12), 15) Tegmen in ventral view. 10), 13), 16) Tegmen in lateral view. 11), 14), 17) Sipho.
Figures 1–8 in Geographical distribution and phenotypic variation of Anovia punica Gordon (Coleoptera: Coccinellidae: Noviini), a predatory ladybeetle of fluted scales (Hemiptera: Coccoidea: Monophlebidae)
Figures 1–8. Morphological variation of Anovia punica. Peru. 1–2) San Martín State. Colombia: 3) San Andres Island. 4) Magdalena State. 5) Valle del Cauca State. 6–7) Antioquia State. 8) Atlantico State.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.