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1,697 results for “Scarabaeinae”
Figure 6 in A revision of the subgenera Euhyboma Kolbe, 1893, Parahyboma Paulian, 1938, and Rubrohyboma Paulian, 1939 of Deltochilum Eschscholtz, 1822 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 6 Aedeagus in species of Deltochilum Eschscholtz, 1822, lateral and dorsal views, respectively. (A) D. (Euhyboma) brasiliense (Castelnau, 1840). (B) D. (Parahyboma) furcatum (Castelnau, 1840) (arrows indicate apical projection of paramere shorter and more pointed in comparison to that of D. granulosum). (C) D. (Parahyboma) granulosum Paulian, 1933 (arrows indicate apical projection of parameres slightly rounded). (D) D. (Rubrohyboma) rubripenne (Gory, 1831) (arrows indicate a tuft of setae at the parameres apex). Figures scale: A (2 mm); B–D (1 mm).
Figure 4 in A revision of the subgenera Euhyboma Kolbe, 1893, Parahyboma Paulian, 1938, and Rubrohyboma Paulian, 1939 of Deltochilum Eschscholtz, 1822 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 4 Deltochilum (Parahyboma) granulosum Paulian, 1933. (A) Dorsal view.(B) Ventral view. (C) Protibia of females, ventral view. (D) Protibia of males, ventral view. (E) Elytral apex of females (arrow indicates seventh elytral interstria lacking carina).(F) Elytral apex of males (carina of seventh elytral interstria pointed). Figures scale: A–B (5 mm); C–F (1 mm).
Figure 1 in A revision of the subgenera Euhyboma Kolbe, 1893, Parahyboma Paulian, 1938, and Rubrohyboma Paulian, 1939 of Deltochilum Eschscholtz, 1822 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 1 Details of the external morphology in species ofDeltochilum Eschscholtz, 1822. (A) Head in Deltochilum (Aganhyboma) trisignatum Harold, 1881. (B) Head in D. (Euhyboma) brasiliense (Castelnau, 1840). (C) Surface of third elytral interstria in D. brasiliense (arrows indicate details of microsculpture. Yellow:foveiform punctures; white: microtubercles; green: granulation). (D–F) Lateral view of elytra in species of Deltochilum (white arrows indicate carina of ninth elytral interstria; yellow arrow indicate pseudoepipleural carina lacking at basal part of elytra). (D) D. brasiliense. (E) D. (Parahyboma) furcatum (Castelnau, 1840). (F) D. (Rubrohyboma) rubripenne (Gory, 1831). (G–H) Details of elytral surface. (G) D. (Parahyboma) furcatum. (H) D. (Parahyboma) granulosum. Figures scale: A, B, G, H (1 mm); C (0,5 mm); D–F (2 mm).
Figure 3 in A revision of the subgenera Euhyboma Kolbe, 1893, Parahyboma Paulian, 1938, and Rubrohyboma Paulian, 1939 of Deltochilum Eschscholtz, 1822 (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 3 Deltochilum (Parahyboma) furcatum (Castelnau, 1840). (A) Dorsal view. (B) Ventral view. (C) Protibia of females, ventral view. (D) Protibia of males, ventral view. (E) Metatibia of females (arrow indicates longitudinal carina). (F) Metatibia of males (arrow indicates longitudinal row of tubercles). Figures scale: A–B (5 mm); C–F (1 mm).
Figure 3 in Feeding and reproductive behavior of the dung beetle Canthon rutilans cyanescens (Coleoptera: Scarabaeinae)
Figure 3 - Number (A) and weight (B) of Canthon rutilans cyanescens brood balls maintained in laboratory conditions according to distinct food supplies. Treatments: feces of Canis lupus familiaris (domestic dog), Cerdocyon thous (crab-eating fox), Sapajus nigritus (black capuchin) and Puma concolor (cougar). The central line of each box corresponds to the median per couples, boxes show 75th percentile and 25th, lines are the upper and lower limits and points are outliers; different letters indicate statistical inequality.
Figure 2 in Comparison of dung beetle communities (Coleoptera: Scarabaeidae: Scarabaeinae) in oil palm plantations and native forest in the eastern Amazon, Brazil
Figure 2 Extrapolation and rarefaction of species richness in forest and oil palm plantation dung beetle communities. Shaded area represents 95% confidence limits. This figure is in color in the electronic version.
Figure 1 in Comparison of dung beetle communities (Coleoptera: Scarabaeidae: Scarabaeinae) in oil palm plantations and native forest in the eastern Amazon, Brazil
Figure 1 Location of the study area in the Brazilian Amazon, in the state of Pará. The right map represents the study area and the spatial distribution of 10 transects (red lines) in forest and oil palm habitats. Green and orange areas indicate primary forest and oil palm plantations, respectively (modified from Mendes-Oliveira et al., 2017). This figure is in color in the electronic version.
Figure 5 in Feeding and reproductive behavior of the dung beetle Canthon rutilans cyanescens (Coleoptera: Scarabaeinae)
Figure 5 - Number and weight of the brood balls built by Canthon rutilans cyanescens couples fed with distinct amounts of food resource. A) Number of brood balls over the offer of 1 g and 5 g of supply in small and B) big couples. C) Brood balls weight constructed with the same amount of food offered to small and D) big couples. The central line of each box corresponds to the median per couples, boxes show 75th percentile and 25th, lines are the upper and lower limits and points are outliers.
Figure 1 in Feeding and reproductive behavior of the dung beetle Canthon rutilans cyanescens (Coleoptera: Scarabaeinae)
Figure 1 Reproductive behavior and development stages of Canthon rutilans cyanescens observed in the laboratory. A - Copula; B - Female producing the oviposition chamber inside the brood ball with its mouth parts; C - Couple next to the future brood ball; D – Female defecating inside the future brood ball chamber; E - Brood balls with external feces pellets; F - Egg; G - Newly hatched larvae; H - Larva growing as it feeds; I - Larva in its maximum size, frequently defecating; J - Last larval stage, when preparing to pupa stage, expelling all fecal contents; K - Pupa; L - Newly hatched adult with moult remains in the clypeus and pronotum.
Fig. 1 in A revision of Dichotomius (Homocanthonides) Luederwaldt, 1929 (Coleoptera: Scarabaeidae: Scarabaeinae)
Fig. 1. Dichotomius (Homocanthonides) smaragdinus (Perty, 1830). (A) Lectotype of Copris smaragdina Perty, 1830 [ZSM]. (B) Male habitus, green variation. (C) Female habitus, green variation. (D) Female habitus, dark elytra variation. (E) Male habitus, green with red and yellow sheen variation. (F) Male abdominal sternites. (G) Female abdominal sternites.
Fig. 3 in A revision of Dichotomius (Homocanthonides) Luederwaldt, 1929 (Coleoptera: Scarabaeidae: Scarabaeinae)
Fig. 3. (A) Known distribution of Dichotomius (H.) smaragdinus. Anterior angle of pronotum and elytra variations, respectively: (B) and (C) Diamantino, Mato Grosso State, western Cerrado. (D) and (E) Planatina, Federal District, central Cerrado. (F) and (G) Águas Vermelhas, Minas Gerais State, eastern Cerrado.
Figura 3 in Evaluando la novedad de un nuevo registro de Oxysternon ebeninum (Nevison, 1890) (Coleoptera: Scarabaeidae: Scarabaeinae) en Venezuela
Figura 3. Diferencias en las condiciones ambientales entre las localidades de distribución conocidas de O. ebeninum. Agrupamiento jerárquico (arriba) y distancia de Mahalanobis (D2; abajo). / Diferences in environmental conditions between known distribution localities of O. ebeninum. Hierarchical clustering (above) and Mahalanobis distance (D2; below).
Figura 1 in Evaluando la novedad de un nuevo registro de Oxysternon ebeninum (Nevison, 1890) (Coleoptera: Scarabaeidae: Scarabaeinae) en Venezuela
Figura 1. Oxysternon ebeninum (Nevison, 1890). A. Macho, vista dorsal. B. Hembra, vista dorsal./ Oxysternon ebeninum (Nevison, 1890). A. Male, dorsal view. B. Female, dorsal view.
Figures 1-4 in Record of the dung beetle Canthon lucreciae Halffter & Halffter, 2009 (Coleoptera: Scarabaeinae) feeding on a millipede in a tropical rainforest
Figures 1-4. Canthon lucreciae feeding on an individual of the millipede Messicobolus magnificus. 1. Attacking directly on the wound opening. 2. Ventral part of the millipede showing diplosegments with mutilated legs (arrow). 3. Beetles attacking different ventral parts of the millipede. 4. Adult of C. lucreciae, dorsal habitus. / Canthon lucreciae alimentándose de un individuo del milpiés Messicobolus magnificus. 1. Atacando directamente en la abertura de la herida.2. Parte ventral del milpiés mostrando diplosegmentos con patas mutiladas (flecha). 3. Escarabajos atacando diferentes partes ventrales del milpiés. 4. Adulto de C. lucreciae, hábito dorsal.
Figura 2 in Los escarabajos del estiércol (Coleoptera: Scarabaeidae: Scarabaeinae) de Quintana Roo, México: Lista anotada de especies y nuevos registros
Figura 2. Vista dorsal de especies de Scarabaeinae registradas en Quintana Roo, México. a) Canthon cyanellus LeConte.b) Copris laeviceps Harold (macho).c) Deltochilum carrilloi González-Alvarado y Vazde-Mello. d) Dichotomius enioi Montoya-Molina y Vaz-de-Mello (macho). e) Onthophagus carpophilus Pereira y Halffter (macho). f) Phanaeus endymion Harold (hembra). g) Pseudocanthon perplexus LeConte. h) Uroxys deavilai Delgado y Kohlmann (macho). i) Uroxys micros Bates. / Dorsal view of Scarabaeinae species recorded in Quintana Roo, Mexico. a) Canthon cyanellus LeConte. b) Copris laeviceps Harold (male). c) Deltochilum carrilloi González-Alvarado & Vaz-de-Mello. d) Dichotomius enioi Montoya-Molina & Vaz-de-Mello (male). e) Onthophagus carpophilus Pereira & Halffter (male). f) Phanaeus endymion Harold (female). g) Pseudocanthon perplexus LeConte. h) Uroxys deavilai Delgado & Kohlmann (male). i) Uroxys micros Bates.
Figura 1 in Los escarabajos del estiércol (Coleoptera: Scarabaeidae: Scarabaeinae) de Quintana Roo, México: Lista anotada de especies y nuevos registros
Figura 1. Principales usos de suelo y tipos de vegetación en el estado de Quintana Roo, México. / Main land uses and vegetation types in the state of Quintana Roo, Mexico.
Figures 1–3 in A new key for the species of Ateuchus Weber (Coleoptera: Scarabaeidae: Scarabaeinae) occurring in Mexico, with a description of the first North American inquiline species from a rodent burrow (Rodentia: Geomydae) and new distribution records
Figures 1–3. Ateuchus tuza sp. nov.; 1, dorsal habitus of holotype; 2, ventral habitus of holotype; 3, wrinkled area at the base of the head of a male.
Fig. 2 in Daily activity of Dichotomius geminatus (Arrow, 1913) and Deltochilum verruciferum Felsche, 1911 (Coleoptera: Scarabaeinae) facing carrion: from resource perception to feeding
Fig. 2. Numbers of individuals of Deltochilum verruciferum (a) and Dichotomius geminatus (b) that performed some behaviour during the observations. The active and inactive individuals are not necessarily the same during the periods of activity. * From 10:00 to 17:00 no activity was observed for both species.
Figures 49, 50 in A Revision of the Onthophagus pexatus Species-group, with Description of a New Brachypterous Species (Coleoptera: Scarabaeidae: Scarabaeinae)
Figures 49, 50. Onthophagus pexatus Harold, apices of parameres. (49) Dairy Park, NSW; (50), Woolomin, NSW.
Figures 5–8 in A Revision of the Onthophagus pexatus Species-group, with Description of a New Brachypterous Species (Coleoptera: Scarabaeidae: Scarabaeinae)
Figures 5–8. (5, 6) Onthophagus nammuldi Matthews, male, dorsal & lateral; (7, 8) O. pexatus Harold, male, dorsal and lateral.
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.