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Fig. 12 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 12. System structure of Database of Korean National Species List. Grey rectangles represent systems related to the Database of National Species List of Korea and blue rectangles indicates systems using species information via Database of National Species List of Korea outside of NIBR. Black arrows indicate utilization of taxonomic information from the Database of National Species List of Korea and Grey arrows present communication with institutes outside of NIBR. Dotted grey arrow means commination channel will be established soon.
Fig. 1 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 1. Database structure of Database of Korean National Species List. (A) Presents relationship of major entities of the Database of Korean National Species List. Black thick lines are n:m relationship and blue arrows show detailed content types of each entity. (B) displays example of hierarchical relations of higher taxa originated from two different systems, KNSL and APG IV.
Fig. 6 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 6. Download page of Korean National Species List. This web page provides the download link of National Species List of Korea in the main page of the platform for biodiversity in Korea (http://www.kbr.go.kr/).
Fig. 3 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 3. Tree interface of taxon. (A) Shows interface to search by management groups, rank, and name. Yellow arrow indicates fold- er icon which open all higher nodes of the taxon up and grey arrow shows check icon which provides detailed information of the taxon. (B) displays tree interface for hierarchical structure of taxa. Plus icon indicated by blue arrow means open the lower taxa in the specific taxon, and each node (orange arrow) represents each taxon.
Fig. 11 in Database of National Species List of Korea: the taxonomical systematics platform for managing scientific names of Korean native species
Fig. 11. Web interface of reporting tools in Database of Korean National Species List. (A) Presents the basket of report. Dotted box presents option of generating reports. (B) shows the list of tasks registered for generating report. (C) displays three different formats of report generated by the Database of National Species List of Korea.
Figure 6 Asphondylia peploniae Maia, 2001 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 6 Asphondylia peploniae Maia, 2001: a) Larva, Prothoracic spatula, ventral view, b) Pupa, head, ventral view.
Figure 5 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 5 Asphondylia hancorniae, sp. n.: a) Larva, general aspect, ventral view, b) Prothoracic spatula, ventral view, c) Terminal segment, dorsal view, d) Gall, general aspect, e) Dehiscent gall, f) Gall, longitudinal section.
Figure 4 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 4 Asphondylia hancorniae, sp. n., pupa: a) General aspect, ventral view, b) Head, ventral view, c) Thoracic integument, lateral view, d) Prothoracic spiracle, e) 5th-8th abdominal segments, dorsal view.
Figure 3 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 3 Asphondylia hancorniae, sp. n., female: a) Pedicel, 1st and 2nd flagellomeres, b) 8th -12th flagellomeres, c) 5th flagellomere, d) Foreleg, tarsal claw and empodium, lateral view, e) Abdomen, lateral view.
Figure 2 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 2 Asphondylia hancorniae, sp. n., male: a) 3th abdominal segments to terminalia, lateral view,b) 4th abdominal segments to terminalia, ventral view,c) Terminalia,dorsal view.
Figure 1 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 1 Asphondylia hancorniae, sp. n., male: a) Head, frontal view, b) 9th-12th flagellomeres, c) 5rd flagellomere, d) Wing, e) Foreleg, first tarsomere, lateral view, f) Foreleg, tarsal claw and empodium, lateral view).
Figs. 11–13 in Lopesia leandrae (Diptera, Cecidomyiidae), a new species of gall midge associated with Leandra ionopogon (Mart.) Cogn. (Melastomataceae), a native plant to Brazil
Figs. 11–13. Lopesia leandrae, sp. n., female. 11. Fifth flagellomere. 12. 6th–8th abdominal segments (lateral view). 13. Cerci (ventral view). Scale bars in mm.
Figs. 3–4 in Lopesia leandrae (Diptera, Cecidomyiidae), a new species of gall midge associated with Leandra ionopogon (Mart.) Cogn. (Melastomataceae), a native plant to Brazil
Figs. 3–4. Lopesia leandrae, sp. n., pupa. 4. Head (ventral view).5. Seventh abdominal segment (dorsal view). Scale bars in mm.
Figs. 1–2 in Lopesia leandrae (Diptera, Cecidomyiidae), a new species of gall midge associated with Leandra ionopogon (Mart.) Cogn. (Melastomataceae), a native plant to Brazil
Figs. 1–2. Lopesia leandrae, sp. n., larva 1. Prothoracic spatula and associated papillae (ventral view). 2. 8th–9th abdominal segments (ventral view). Scale bars in mm.
Figure 1 in Are invasive hymenopteran species replacing native mud dauber wasp-associated taxa on the Seychelles Archipelago?
Figure 1. Map of collecting localities of mud-dauber wasps' nest aggregations in Seychelles (2016): (1) Anse Marie- Louise, Mahé; (2) Anse Possession, Praslin; and (3) Anse La Passe, Silhouette.
Figure 5 in Are invasive hymenopteran species replacing native mud dauber wasp-associated taxa on the Seychelles Archipelago?
Figure 5. Nest of the mud dauber wasp Sceliphron fuscum (Sphecidae) used by Megachile (Callomegachile) disjuncta (Megachilidae). (A) Nest. The red arrows show cells with black, wax-like substance around entrances used by M. (C.) disjuncta females for nesting. Scale bar = 10 mm. (B-D) Leaf rolls of M. (C.) disjuncta extracted from mud cells of S. fuscum. Scale bar = 5 mm. (Photos: Yulia S. Kolosova).
Figure 4 in Are invasive hymenopteran species replacing native mud dauber wasp-associated taxa on the Seychelles Archipelago?
Figure 4. Native and introduced hymenopteran species (successors and a kleptoparasite) associated with nests of the mud dauber wasp Sceliphron fuscum (Sphecidae) in Seychelles (2016). (A, B) Female of Megachile (Callomegachile) disjuncta (Megachilidae). (C, D) Male of M. disjuncta. (E, F) Chrysis lincea (Chrysididae). (G, H) Chalybion madecassum (Sphecidae). (I, J) Rhynchium brunneum (Vespidae). Scale bar = 5 mm. (Photos: Elizaveta A. Spitsyna).
Fig. 3 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 3. Spatial distribution of Lithobates catesbeianus invasive populations and predation reports of native anurans in Brazil. White circles: American Bullfrog populations in Brazil (Both et al. 2011; Instituto Horus 2016); yellow stars: predation reports of adult Boana raniceps and adult Phyllomedusa distincta in southern and southeastern Brazil; light green circles: locations of 41 published predation records.
Fig. 2 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 2. (A) Predation of an adult Phyllomedusa distincta by Lithobates catesbeianus, (B) Adult P. distincta partially digested, removed from the oral cavity of L. catesbeianus.
Fig. 1 in Native anuran species as prey of invasive American Bullfrog, Lithobates catesbeianus, in Brazil: a review with new predation records
Fig. 1. Adult Lithobates catesbeianus swallowing an adult Boana raniceps in an artificial permanent pond within pasture area in southern Brazil.
ScienceDex guides
Understand access before you commit
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.