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FIGURE 2 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)
FIGURE 2. Life history of Splendeuptychia furina: 1a) egg with brown stripes and mandibles showing through translucence, 1b) head capsule showing through translucence two days prior to hatching; 2a, b) first instar in dorsal and lateral view; 3a, b) second instar in dorsal and lateral view; 4a, b) third instar in dorsal and lateral view; 5a, b) fourth instar in dorsal and lateral view; 6a, b) fifth (ultimate) instar in dorsal and lateral view; 7a, b) ultimate instar exhibiting purple colouration a day prior to pupation, dorsal and lateral view; 8a, b, c) pupa in dorsal, lateral and ventral view; 9a, b) adult in dorsal and ventral view. Figure 2b, 3b are based on 2021-FLP-IMM-0556; otherwise illustrations based on 2021-FLP-IMM-0554.
FIGURE 1 in Immature stages and new host plant records for four satyrine species feeding on herbaceous bamboos in southeastern Peru (Lepidoptera: Nymphalidae: Satyrinae: Satyrini)
FIGURE 1. Life history of Nhambikuara mima: 1a) egg, 1b) black patches present on egg two days prior to hatching; 2a, b) first instar in dorsal and lateral view; 3a, b) second instar in dorsal and lateral view; 4a, b) third instar in dorsal and lateral view; 5a, b) fourth instar in dorsal and lateral view; 6a, b) fifth (ultimate) instar in dorsal and lateral view; 7a, b, c) pupa in dorsal, lateral and ventral view; 8a, b) adult in dorsal and ventral view. Figure 1a based on 2021-FLP-IMM-0542; 1b, 2a, b, 3a, b are based on 2021-FLP-IMM-0538; otherwise illustrations based on 2021-FLP-IMM-0489.
FIGURE 12 in Status of Patania harutai (Inoue, 1955) in Korea, with a new species (Lepidoptera, Crambidae, Spilomelinae), and clarification of their host plants
FIGURE 12. Folded leaves of Acer pictum Thunb. var. mono (Maxim.) Maxim. ex Franch by P. gorosoe sp. nov. in Korea National Arboretum, Gwangreung forest, Pocheon, Korea.
FIGURES 3–6 in Status of Patania harutai (Inoue, 1955) in Korea, with a new species (Lepidoptera, Crambidae, Spilomelinae), and clarification of their host plants
FIGURES 3–6. Heads of Patania spp. from Korea. 3a–d. P. harutai, male (specimen no. 1044, slide no. INU-7588). 4a–d. ditto, female (specimen no. 1045, slide no. INU-7589). 5a–d. P. gorosoe sp. nov., male (holotype, specimen no. 1039, slide no. INU-7583). 6a–d. ditto, female (paratype, specimen no. 1040, slide no. INU-7584).
FIGURES 1–2 in Status of Patania harutai (Inoue, 1955) in Korea, with a new species (Lepidoptera, Crambidae, Spilomelinae), and clarification of their host plants
FIGURES 1–2. Adults of Patania spp. from Korea. 1a. P. harutai, male (specimen no. 1044, slide no. INU-7588). 1b. ditto, female (specimen no. 1043, slide no. INU-7587). 2a. P. gorosoe sp. nov., male (holotype, specimen no. 1039, slide no. INU-7583). b. ditto, female (paratype, specimen no. 1040, slide no. INU-7584). Scale bar = 10 mm.
FIGURES 8 in Status of Patania harutai (Inoue, 1955) in Korea, with a new species (Lepidoptera, Crambidae, Spilomelinae), and clarification of their host plants
FIGURES 8. Male genitalia of Patania gorosoe sp. nov. from Korea. 8a. Genital capsule (paratype, slide no. INU-8007). 8b. 8th segment of abdomen. 8c. Aedeagus. 8d. Vesica. Scale bar = 1 mm.
FIGURES 9–10 in Status of Patania harutai (Inoue, 1955) in Korea, with a new species (Lepidoptera, Crambidae, Spilomelinae), and clarification of their host plants
FIGURES 9–10. Female genitalia of Patania spp. from Korea. 9. P. harutai, specimen no. 1043, slide no. INU-7587. 10. P. gorosoe sp. nov., paratype, specimen no. 1040, slide no. INU-7584.
FIGURE 11 in Status of Patania harutai (Inoue, 1955) in Korea, with a new species (Lepidoptera, Crambidae, Spilomelinae), and clarification of their host plants
FIGURE 11. Wing venation of Patania gorosoe sp. nov. from Korea (paratype, male, slide no. INU-8155).
Supplementary material 2 from: Tang C-T, Mikó I, Nicholls JA, Schwéger S, Yang M-M, Stone GN, Sinclair F, Bozsó M, Melika G, Pénzes Z (2016) New Dryocosmus Giraud species associated with Cyclobalanopsis and non-Quercus host plants from the Eastern Palaearctic (Hymenoptera, Cynipidae, Cynipini). Journal of Hymenoptera Research 53: 77-162. https://doi.org/10.3897/jhr.53.9890
Semantic statements of natural language phenotypes composed in Protégé 5.0 (http://protege.stanford.edu/) using the OWL Manchester syntax. : Explanation note: Semantic statements of natural language phenotypes composed in Protégé 5.0 (http://protege.stanford.edu/) using the OWL Manchester syntax.
Supplementary material 1 from: Tang C-T, Mikó I, Nicholls JA, Schwéger S, Yang M-M, Stone GN, Sinclair F, Bozsó M, Melika G, Pénzes Z (2016) New Dryocosmus Giraud species associated with Cyclobalanopsis and non-Quercus host plants from the Eastern Palaearctic (Hymenoptera, Cynipidae, Cynipini). Journal of Hymenoptera Research 53: 77-162. https://doi.org/10.3897/jhr.53.9890
URI table (Seltmann et al. 2013) containing anatomical terms, definitions and uniform resource identifiers of Hymenoptera specific classes in the Hymenoptera Anatomy Ontology (http://hymao.org). : Explanation note: URI table (Seltmann et al. 2013) containing anatomical terms, definitions and uniform resource identifiers of Hymenoptera specific classes in the Hymenoptera Anatomy Ontology (http://hymao.org).
FIGURE 4 in Taxonomic revision of Neotropical Phyllocnistis Zeller, 1848 (Lepidoptera: Gracillariidae), with descriptions of seven new species and host plant associations
FIGURE 4. Labels of Neotropical Phyllocnistis types found in museums. (A) P. abatiae; (B) P. aurilinea; (C) P. baccharidis; (D) P. bourquini; (E) P. citrella; (F) P. dorcas; (G) P. drimiphaga; (H) P. helios; (I) P. jupiter; (J) P. kawakitai; (K) P. maxberryi; (L) P. meliacella; (M) P. norak; (N) P. ohshimai; (O) P. ourea; (P) P. perseafolia; (Q) P. petronellii; (R) P. phoebus; (S) P. puyehuensis; (T) P. rotans; (U) P. sciophanta; (V) P. selene; (W) P. sexangula; (X) P. tethys; (Y) P. tropaeolicola; (Z) P. wygodzinskyi; (AA) P. xylopiella.
FIGURE 2. A in Taxonomic revision of Neotropical Phyllocnistis Zeller, 1848 (Lepidoptera: Gracillariidae), with descriptions of seven new species and host plant associations
FIGURE 2. A Neighbor-Joining tree of the studied taxa, based on COI barcode fragments, generated under the K2P nucleotide substitution model. Each specimen is identified by its Process ID code (see Tab. 3). Branch lengths represent the number of substitutions per site. BIN numbers from BOLD system are given in parentheses for all clusters.
FIGURE 3 in Taxonomic revision of Neotropical Phyllocnistis Zeller, 1848 (Lepidoptera: Gracillariidae), with descriptions of seven new species and host plant associations
FIGURE 3. Forewings of Neotropical Phyllocnistis. (A) P. abatiae holotype (left forewing reversed); (B) P. aurilinea lectotype (left, reversed); (C) P. baccharidis holotype (left, reversed); (D) P. bourquini holotype (right); (E) P. citrella lectotype (left, reversed); (F) P. dorcas holotype (right); (G) P. drimiphaga holotype (right); (H) P. helios holotype (right); (I) P. jupiter paratype (left, reversed); (J) P. kawakitai holotype (left, reversed); (K) P. maxberryi holotype (right); (L) P. meliacella holotype (right); (M) P. norak holotype (right); (N) P. ohshimai holotype (right); (O) P. ourea paratype (right); (P) P. perseafolia holotype (left, reversed); (Q) P. petronellii paratype (right); (R) P. phoebus paratype (left, reversed); (S) P. puyehuensis holotype (right); (T) P. rotans lectotype (right); (U) P. sciophanta holotype (left, reversed); (V) P. selene specimen (left, reversed); (W) P. sexangula lectotype (left, reversed); (X) P. tethys specimen (right); (Y) P. tropaeolicola holotype (right); (Z) P. wygodzinskyi holotype (left, reversed); (AA) P. xylopiella holotype (right). Scale bars: 1 (A–H, K, L, O, P, R–Z), 0.5 mm (I, J, M, N, Q, AA).
FIGURE 6 in Taxonomic revision of Neotropical Phyllocnistis Zeller, 1848 (Lepidoptera: Gracillariidae), with descriptions of seven new species and host plant associations
FIGURE 6. Genital morphology of the new species of Phyllocnistis. (A) P. helios; (B) P. jupiter; (C) P. ohshimai; (D, E, I) P. xylopiella; (G, J) P. norak; (F, K) P. kawakitai; (H) P. petronellii. (A–D) male genitalia, ventral view; (E–H) female genitalia, lateral; (I–K) detail of female signa. Scale bars: 50 (A–D), 100 (E–H), 50 µm (I–K).
FIGURE 6 in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 6. Third-instar female nymph of Phyllococcus cryptocaryae Percy, Watson & Hodgson, sp. n. A. Trilocular pore; B. Dorsal view of anal plates showing cerarian setae; Ci. Oral collar tubular duct on third-instar nymph; Cii. Oral collar duct on pharate adult female within second-instar nymph; D. Spinose seta along inner margin of anal plate; E. Seta on elongate setal socket on ventral surface of anal plate; G. Ventral view of posterior end of abdomen, showing position of anus; H. Ventral seta with convex setal socket; K. Simple pore; M. Spinose cerarian seta; N. Very small dorsal setae on shield.
FIGURE 4. A in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 4. A. Galls of triozid psyllid, Paurotriozana adaptata Caldwell, distributed along midrib and veins on underside of leaves of Cryptocarya mannii (arrow indicates vacated gall cavity); B. Pa. adaptata, last-instar immature psyllid with dorsal surface close to surface of the gall; C. Illustration showing the shape of the psyllid gall in cross section (dotted line indicates position of the dorsal surface of the immature psyllid); D. Adult female Ph. cryptocaryae after removal from gall chamber (arrow indicates oval anal shield); E. Illustration showing the shape of the mealybug gall in cross section (dotted line indicates position of the dorsal surface of the anal shield); F. Cryptocarya mannii leaf showing protrusions on the upper leaf surface caused by the galls of Ph. cryptocaryae. Photographs by Karl Magnacca.
FIGURE 1. A in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 1. A. Galls of Phyllococcus oahuensis (Ehrhorn) on a leaf of Touchardia sandwicensis, found on Maui in 2007; B. Closer view of galls of Ph. oahuensis. Photographs by Karl Magnacca.
FIGURE 5 in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 5. Adult female of Phyllococcus cryptocaryae Percy, Watson & Hodgson, sp. n. A. Trilocular pore; B. Dorsal view of anal plates; C. Oral collar tubular duct; D. Spinose seta along posterior margin of anal plate; E. Stiff seta on elongate, boss-like setal socket on ventral surface of anal plate; F. Shape of anal ring; G. Ventral view of posterior end of abdomen, showing anal lobes, position of anus and large vulva (v); H. Seta on posterior of abdomen with convex setal socket; J. End of tarsus plus claw; K. Simple pore; L. Dorsal seta.
FIGURE 3 in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 3. Adult male Phyllococcus oahuensis (Ehrhorn). A. Dorsal ocular sclerite, showing dorsal simple eye (d) and ocellus (o); D. Fleshy seta on leg; E. Hair-like seta on leg; F. Dorsal view of posterior half of penial sheath; G. Ventral view of penial sheath; H. Metatibia + tarsus; J. Loculate pores.
FIGURE 2 in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 2. Adult female of Phyllococcus oahuensis (Ehrhorn). A. Trilocular pore; B. Dorsal and ventral views of anal plates; E. Spinules on anal plates and margins of dorsal shield; F. Margin of dorsal shield; L. Dorsal seta; K. Simple pores; M. Anterior view of hind leg; S. Spiracle; Z. Illustration of gall by Ferris (in Zimmerman 1948: 160, fig. 93).
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.