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FIGURE 3 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 3. Morphology of Panelus sumatranus. (A–B) aedeagus in lateral view. (C) Parameres in dorsal view. (D) Habitus.
FIGURE 8 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 8. Morphology of Parachorius fukiensis. (A) aedeagus, lateral view (holotype). (B) aedeagus, lateral view (paratype, Laos, Phonsavan). (C) aedeagus, lateral view (paratype, Vietnam, Donghoi). (D) left metafemur (male, paratype, Laos, Phonsavan). (E) left metafemur (male, paratype, Vietnam, Donghoi). (F) habitus (male, holotype). (G) aedeagus.
FIGURE 2 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 2. Phylogenetic position of the tribe Parachoriini new tribe (highlighted in orange) in global molecular phylogeny of Scarabaeinae. (A) Maximum likelihood tree of 446 Scarabaeinae terminals (rogue taxa excluded). The terminals are stylized based on taxonomy, with the size of the cone corresponding to the number of analyzed terminals. The clades corresponding to scarabaeine tribes are highlighted in blue. Values above branches indicate bootstrap support that is shown only if value> 50%. Clade "P" is shown in purple. (B) Clade P magnified.
FIGURE 7 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 7. Morphology of Parachorius bolavensis. (A) aedeagus, lateral view (holotype). (B) aedeagus, lateral view (paratype). (C) aedeagus. (D) habitus (male, holotype). (E) protibia (male, paratype). (F) protibia (female, paratype). (G) left metafemur (male, paratype).
FIGURE 1 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 1. Diagnostic characters and phylogenetic position of the tribe Parachoriini new tribe (highlighted in orange) in morphological phylogeny of Scarabaeinae. (A) The strict consensus tree with Bremer support values comprising all analyzed taxa from equal weight analysis. (B) The strict consensus tree inferred using reduced taxon sample under implied weights option (k = 70 and 100). The species previously placed in Cassolus and Parachorius are highlighted in purple and blue respectively. (C–E) Diagnostic characters of the tribe Parachoriini. (C–D) Short and long ridges of metasternum respectively. (E) Phallobase with basal tubercles.
FIGURE 23 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 23. Morphology of Parachorius solodovnikovi. (A) aedeagus, lateral view (holotype). (B) aedeagus, lateral view (paratype, Thailand). (C) aedeagus, lateral view (paratype, Vietnam). (D) aedeagus, lateral view (E) habitus (male, holotype). (F) left metafemur (male, paratype, Vietnam) (G) left metafemur (male, holotype). (H) left protibia (male, holotype, original image flipped).
FIGURE 27 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 27. Distribution maps of Parachorius species. (A) Parachorius peninsularis. (B) Parachorius pseudojavanus. (C) Parachorius schuelkei. (D) Parachorius semsanganus. (E) Parachorius solodovnikovi. (F) Parachorius thomsoni. Type locality—type locality of species (holotype or lectotype); Type. Collection data—localities of type specimens associated with species (paratypes or paralectotypes); Collection data—localities of other specimens examined in this study. Literature data— localities retrieved from literature.
FIGURE 12 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 12. Morphology of Parachorius hookeri. (A) aedeagus, lateral view (holotype). (B) aedeagus lateral view. (C) left metafemur (male, holotype). (D) habitus (male, holotype)
FIGURE 26 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 26. Distribution maps of Parachorius species. (A) Parachorius hookeri. (B) Parachorius humeralis. (C) Parachorius javanus. (D) Parachorius longipenis. (E) Parachorius maruyamai. (F) Parachorius newthayerae. Type locality— type locality of species (holotype or lectotype); Type. Collection data—localities of type specimens associated with species (paratypes or paralectotypes); Collection data—localities of other specimens examined in this study.
FIGURE 22 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 22. Morphology of Parachorius semsanganus. (A) aedeagus, lateral view (paratype). (B) aedeagus, dorsal view (paratype). (C) aedeagus, apical view (paratype). (D) aedeagus lateral view. (E) right metafemur (male, paratype). (F) habitus (male, holotype).
FIGURE 25 in A cybertaxonomic revision of the new dung beetle tribe Parachoriini (Coleoptera: Scarabaeidae: Scarabaeinae) and its phylogenetic assessment using molecular and morphological data
FIGURE 25. Distribution maps of Parachorius species. (A) Parachorius asymmetricus. (B) Parachorius bolavensis. (C) Parachorius fukiensis. (D) Parachorius fungorum. (E) Parachorius globosus. (F) Parachorius gotoi. Type locality—type locality of species (holotype or lectotype); Type. Collection data—localities of type specimens associated with species (paratypes or paralectotypes); Collection data—localities of other specimens examined in this study.
FIGURE 6 in New taxa and notes of katydids from the tribe Meconematini (Orthoptera: Meconematinae) from Brunei Darussalam
FIGURE 6. Pseudoteratura (Pseudoteratura) kenuan sp. nov.: living male HOlOtype, dOrsal view (A) and pinned in prOfile (B). Scale bar: 5 mm.
FIGURE 7 in New taxa and notes of katydids from the tribe Meconematini (Orthoptera: Meconematinae) from Brunei Darussalam
FIGURE 7. Pseudoteratura (Pseudoteratura) kenuan sp. nov.: Head and prOnOtum in dOrsal (A) and lateral (B) views, male abdOminal apex in dOrsal (C), lateral (D), dOrsO-lateral (E), ventrO-lateral (F) and ventral (G) views. Scale bars: 1 mm (except C, 0.5 mm).
FIGURE 5 in New taxa and notes of katydids from the tribe Meconematini (Orthoptera: Meconematinae) from Brunei Darussalam
FIGURE 5. Pulchroteratura huiqing gen. et sp. nov.: Head and prOnOtum in lateral (A) and dOrsal (B) views; male abdOminal apex in dOrsO-pOsteriOr (C), dOrsal (D), lateral (E), dOrsO-lateral (F) and ventral (G) views. Scale bars: 0.5 mm (C, D), 1 mm (A, B, E–G).
FIGURE 4 in New taxa and notes of katydids from the tribe Meconematini (Orthoptera: Meconematinae) from Brunei Darussalam
FIGURE 4. Pulchroteratura huiqing gen. et sp. nov.: living male in prOfile (A) and in dOrsal view (B).
FIGURE 3 in New taxa and notes of katydids from the tribe Meconematini (Orthoptera: Meconematinae) from Brunei Darussalam
FIGURE 3. Leptoteratura (Rhinoteratura) chela sp. nov.: Head and prOnOtum in dOrsal view (A), Head in dOrsal view (B), Head and prOnOtum in prOfile (C); male abdOminal apex in dOrsal (sHrunken upOn drying) (D), lateral (E) and ventral (F) views. Scale bar: 1 mm (except B—0.5 mm).
FIGURE 1 in New taxa and notes of katydids from the tribe Meconematini (Orthoptera: Meconematinae) from Brunei Darussalam
FIGURE 1. Alloteratura (Alloteratura) belalongensis sp. nov.: Habitus in lateral view (A); Head and prOnOtum in lateral (B) and dOrsal (C) views; abdOminal apex in dOrsO-lateral (D), lateral (E), ventrO-lateral (F) and ventral (G) views; male genitalia in dOrsal (H), pOsteriOr (I), ventral (J) and lateral (K) views. Scale bars: 1 mm.
FIGURE 8 in Biting midges of the tribe Ceratopogonini (Diptera: Ceratopogonidae) from the Middle East, with keys and descriptions of new species
FIGURE 8. The percentage of species of Ceratopogonini from the Middle East in particular zoogeographical regions.
FIGURE 5 in Biting midges of the tribe Ceratopogonini (Diptera: Ceratopogonidae) from the Middle East, with keys and descriptions of new species
FIGURE 5. Serromyia galilaeae Szadziewski & Alwin sp. nov., male; a—wing, b—flagellum, c—mid femur, d—genitalia, e—aedeagus, f—parameres.
FIGURE 4 in Biting midges of the tribe Ceratopogonini (Diptera: Ceratopogonidae) from the Middle East, with keys and descriptions of new species
FIGURE 4. Male parameres; a—Kolenohelea calcarata (Goetgebuer), b—Kolenohelea levantica Szadziewski & Alwin sp. nov. (Israel), c— Kolenohelea levantica Szadziewski & Alwin sp. nov. (Lebanon).
ScienceDex guides
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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.