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1,736 results for “Coleoptera: Tenebrionidae”
Fig. 8. Psammocryptus bayeri bayeri Koch, 1943 in A review of the genus Psammocrуptus (Coleoptera: Tenebrionidae: Tentyriini)
Fig. 8. Psammocryptus bayeri bayeri Koch, 1943, habitus, elytral puncturation. A – male, dorsally; B – male, ventrally; C – elytral puncturation.
Fig. 5 in A review of the genus Psammocrуptus (Coleoptera: Tenebrionidae: Tentyriini)
Fig. 5. Psammocryptus bogatchevi sp. nov., male, habitus, profemur. A – dorsally; B – ventrally; C – profemur, flexion side.
Fig. 10 in A review of the genus Psammocrуptus (Coleoptera: Tenebrionidae: Tentyriini)
Fig. 10. Psammocryptus bayeri vachshianus subsp. nov., habitus, elytral puncturation. A – male, dorsally; B – male, ventrally; C – elytral puncturation.
Fig. 9. Psammocryptus bayeri bayeri Koch, 1943 in A review of the genus Psammocrуptus (Coleoptera: Tenebrionidae: Tentyriini)
Fig. 9. Psammocryptus bayeri bayeri Koch, 1943, details of structure. A – head and anterior margin of pronotum (arrows: emargination of head; rounded angles of pronotum); B – head and prothorax, laterally (arrows: dense puncturation on head; conical tubercle of prosternal process); C – mesoventrite; D – abdomen (arrow: rounded apex); E – tegmen, ventrally (non-inverted position); F – median lobe of aedeagus; G – spiculum gastrale; H – male inner sternite VIII.
Fig. 3 in A review of the genus Psammocrуptus (Coleoptera: Tenebrionidae: Tentyriini)
Fig. 3. Psammocryptus minutus (Tauscher, 1812), habitus, profemur. A – female, dorsally; B – male, ventrally; C – male profemur, flexion side.
Fig. 7 in A review of the genus Psammocrуptus (Coleoptera: Tenebrionidae: Tentyriini)
Fig. 7. Habitat of Psammocryptus bogatchevi sp. nov., Amudarya State Biosphere Reserve (Uzbekistan). A – Tugay forest with trails of Cervus elaphus bactrianus Lydekker, 1900; B – habitat with leaf bedding on sandy soil (and collector Norbek Bekchanov).
Fig. 4 in A review of the genus Psammocrуptus (Coleoptera: Tenebrionidae: Tentyriini)
Fig. 4. Psammocryptus minutus (Tauscher, 1812), details of structure. A – head and anterior margin of pronotum (arrows: absence of emargination on head; pointed angles of pronotum); B – head and prothorax, laterally (arrow: conical tubercle); C – mesoventrite; D – abdomen (arrow: rounded apex); E – aedeagus, ventrally (non-inverted position); F – male inner tergite VIII; G – male inner sternite VIII.
Fig. 6 in A review of the genus Psammocrуptus (Coleoptera: Tenebrionidae: Tentyriini)
Fig. 6. Psammocryptus bogatchevi sp. nov., details of structure. A – head and anterior margin of pronotum (arrows: emargination of head; rounded angles of pronotum); B – head and prothorax, laterally (arrow: absence of conical tubercle); C – mesoventrite; D – abdomen (arrow: rounded apex); E – aedeagus, ventrally (non-inverted position); F – spiculum gastrale; G – male inner tergite VIII; H – male inner sternite VIII.
Fig. 3 in One new recorded species of the genus Strongylium (Coleoptera: Tenebrionidae) from China
Fig. 3. Habitat and habitus of Strongylium rufipenne. A, B – habitat in Sichuan Province, Baoxing county, Muping town, Dachigou; C – habitus.
Figs 1–3 in First record of Boletoxenus taprobanae (Lewis, 1894) (Coleoptera: Tenebrionidae) from India
Figs 1–3. Boletoxenus taprobanae (Lewis, 1894), male, habitus. 1 – dorsal view; 2 – ventral view; 3 – lateral view.
Abb. 1. A in Zum Vorkommen von Lagria rugosula Rosenhauer, 1856 in der Schweiz (Coleoptera: Tenebrionidae, Lagriinae)
Abb. 1. A) Lagria rugosula Rosenhauer, 1856 Männchen von Pedrinate (TI). B) Dito Weibchen von Charrat (VS) (Bilder: C. Germann).
Abb. 2. Verbreitungskarte von Lagria rugosula Rosenhauer, 1856 in Zum Vorkommen von Lagria rugosula Rosenhauer, 1856 in der Schweiz (Coleoptera: Tenebrionidae, Lagriinae)
Abb. 2. Verbreitungskarte von Lagria rugosula Rosenhauer, 1856 in der Schweiz. Funde nach 1990 sind rot dargestellt, frühere orange.
Fig. 3. Localisation des observations connues d in Isomira costessii (Bertolini, 1868) (Coleoptera, Tenebrionidae): une nouvelle espèce pour la Suisse
Fig. 3. Localisation des observations connues d'Isomira costessii (ronds orange et rouges), avec en rouge les observations suisses, et d'I. moroi (carrés verts).
Fig. 1 in Isomira costessii (Bertolini, 1868) (Coleoptera, Tenebrionidae): une nouvelle espèce pour la Suisse
Fig. 1. Habitus de l'individu suisse d'Isomira costessii capturé en 2016 (6,6 mm). (Photo A. Sanchez)
Figs 7–8. Silver nitrate-stained Turkonalassus quercanus meiotic chromosomes. 7 in Cytogenetic analysis on Turkonalassus quercanus Keskin, Nabozhenko et Alpagut-Keskin, 2017 (Coleoptera: Tenebrionidae: Helopini)
Figs 7–8. Silver nitrate-stained Turkonalassus quercanus meiotic chromosomes. 7 – Xyp sex bivalent in male MI plate (arrow indicates argyrophilic sex bivalent); 8 – a prominent nucleolus associated with one of the medium sized chromosomes, and pericentromeric heterochromatin regions seen as smaller dots in prophase I chromosomes. Scale bars 5 µm. Рис. 7–8. Мейотические хромосомы Turkonalassus quercanus, окашенные нитратом серебра. 7 – поΛовой биваΛент Xyp на пΛастинке MI самца (стреΛка указывает на аргирофиΛьный поΛовой биваΛент); 8 – заметное яΑрышко, связанное с оΑной из хромосом среΑнего размера, и перицентромерные обΛасти гетерохроматина в виΑе боΛее меΛких точек в хромосомах профазы I. Масштабные Λинейки 5 µm.
Figs 9–10 in Cytogenetic analysis on Turkonalassus quercanus Keskin, Nabozhenko et Alpagut-Keskin, 2017 (Coleoptera: Tenebrionidae: Helopini)
Figs 9–10. AT rich heterochromatin regions in T. quercanus, male. 9 – mitotic metaphase; 10 – pachytene. Scale bars 10 µm. Рис. 9–10. Богатые AT гетерохроматиновые обΛасти у T. quercanus, самец. 9 – митотическая метафаза; 10 – пахитена. Масштабные Λинейки 10 µm.
Fig. 1 in Adaptations of tenebrionid beetles to Mediterranean sand dune environments and the impact of climate change (Coleoptera: Tenebrionidae)
Fig. 1 – Relationship between activity and temperature in some tenebrionid species in Palestine investigated by Bodenheimer (1934). Activity intensity is expressed by the following rank scale: (1) cold-torpor, (2) only weak, occasional movements of legs and antennae, (3) crawling with interruptions, (4) normal activity, (5) high activity, (6) excited activity, (1) heat-torpor, (0) heat-death. Redrawn from Fattorini (2008) with corrections. Inset: Zophosis punctata (photo S. Fattorini).
Fig. 2 in Adaptations of tenebrionid beetles to Mediterranean sand dune environments and the impact of climate change (Coleoptera: Tenebrionidae)
Fig. 2 – Diel and monthly activity patterns of tenebrionid beetles of Mediterranean dunes. A, diel activity of Erodius siculus in Latium (Central Italy) in May 1997; B, diel activity of Pimelia bipunctata in Latium (Central Italy) in March 1997; C, diel activity of Pimelia bipunctata in the same locality in May 1997. In these experiments, activity was measured as number of individuals intercepted by pitfall traps per hour in single days. After counting, beetles were immediately released. N: number of trapped individuals per hour. Ta: ambient temperature (°C), Ti: soil internal (3-4 cm depth) temperature (°C), Ts: soil surface temperature (°C). D, Phenological patterns of Erodius siculus in Latium (Central Italy) and Sicily (Southern Italy). Phenologies are expressed as number of locations in which the species has been recorded in each month over a period of a century (from 1897 to 1997). A and D are based on Di Stefano & Fattorini (2002). B and C are based on Fattorini & Di Stefano (2004). Photos: courtesy of L. Di Biase.
Fig. 4 in A revision of distribution, ecology and conservation issues of the threatened comb-claw beetle Gerandryus aetnensis (Coleoptera: Tenebrionidae, Alleculinae)
Fig. 4 – Geonemy and area of occupancy (AOO) of Gerandryus aetnensis (Rottenberg, 1871). Main figure, species geonemy; boxes, AOO calculation. Symbols: triangles, new records; circles, literature records; black cross, extinct in the site; yellow, records ante 2000; green, records post 1999 (main figure); large squares, 10 x 10 km grid cells; small squares, 2 x 2 km grid cells (boxes).
Figs 1-3 in A revision of distribution, ecology and conservation issues of the threatened comb-claw beetle Gerandryus aetnensis (Coleoptera: Tenebrionidae, Alleculinae)
Figs 1-3 – Collecting sites of Gerandryus aetnensis (Rottenberg, 1871). 1, Val Clarea, Piedmont (photo D. Bellone); 2, burned pine woods of Colle delle Vacche, Majella, Abruzzo (photo A. B. Biscaccianti); 3, Bosco Afreni, Aspromonte, Calabria (photo A. B. Biscaccianti).
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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.