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568 results for “brood”

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Fig. 5 in Leaf-Litter Brood Chambers inDichotomius(Luederwaldtinia)Carbonarius(Mannerheim, 1829) (Coleoptera: Scarabaeidae): A Novel Behavior for Dung Beetles

Fig. 5. Probable sequence of construction of brood chambers: A) Original inclined burrow, B) Distal extreme enlarged, forming a spherical cavity, C) Cavity lined with entire or large fragments of leaves, D) Leaf litter at the distal pole leaving a hemispherical space for the egg, E) Egg chamber closed and more meniscate packets added until cavity completely filled, F) Burrow adjacent to proximal pole blocked with thick, perpendicular litter layers forming cylindrical protuberance and remaining burrow filled with soil.

opennotspecifiedSep 2013View details →
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Fig. 1. A in Leaf-Litter Brood Chambers inDichotomius(Luederwaldtinia)Carbonarius(Mannerheim, 1829) (Coleoptera: Scarabaeidae): A Novel Behavior for Dung Beetles

Fig. 1. A) General aspect of the kennel where brood chambers of Dichotomius carbonarius were collected; the soil is covered by leaf litter and short grasses and the tree trunks are fumo bravo, B) Leaf of fumo bravo on the soil and fragmented in subrectangular pieces, scale bar = 2 cm, C) Brood chamber of D. carbonarius showing contact with soil, scale bar = 2 cm, D) Adult D. carbonarius buried in the soil about 7 cm from the surface, scale bar = 1 cm.

opennotspecifiedSep 2013View details →
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Fig. 3. A in Leaf-Litter Brood Chambers inDichotomius(Luederwaldtinia)Carbonarius(Mannerheim, 1829) (Coleoptera: Scarabaeidae): A Novel Behavior for Dung Beetles

Fig. 3. A) Longitudinal section of a brood chamber of Dichotomius carbonarius, showing the egg chamber and some meniscate packets concavely downwards, scale bar = 1 cm, B) Egg with pharate larva inside and provisions with abundant trichomes (arrows), scale bar = 0.5 cm, C–D) Magnified trichomes, scale bar = 0.25 mm, E) Trichomes on a leaf of fumo bravo, scale bar = 1 mm.

opennotspecifiedSep 2013View details →
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Figs. 12–16. S in Fig. 2 in Food Relocation Behavior, Nests, and Brood Balls of Canthon quinquemaculatus Laporte de Castelnau (Coleoptera: Scarabaeidae: Scarabaeinae)

Figs. 12–16. S. chinensis: metendosternite, proventriculis and female genitalia. 12) metendosternite, ventral view; 13) proventriculis; 14) hemisternites; 15) spermatheca; 16) 8th sternite.

opennotspecifiedDec 2007View details →
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Figs. 9–11. S in Fig. 2 in Food Relocation Behavior, Nests, and Brood Balls of Canthon quinquemaculatus Laporte de Castelnau (Coleoptera: Scarabaeidae: Scarabaeinae)

Figs. 9–11. S. chinensis: male genitalia. 9) aedeagus, lateral view; 10) aedeagus, dorsal view; 11) spiculum gastrale.

opennotspecifiedDec 2007View details →
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Figs. 5–8. S. chinensis head and rostrum. 5 in Fig. 2 in Food Relocation Behavior, Nests, and Brood Balls of Canthon quinquemaculatus Laporte de Castelnau (Coleoptera: Scarabaeidae: Scarabaeinae)

Figs. 5–8. S. chinensis head and rostrum. 5) male, dorso-anterior view; 6) male, lateral view. 7) female, dorso-anterior view; 8) female, lateral view.

opennotspecifiedDec 2007View details →
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Fig. 13 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 13. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) lenght of squamosal zygomatic ramus (B) extension of otic ramus of squamosal. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.

opennotspecifiedMay 2022View details →
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Fig. 2 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 2. Skull (ventral view) of Fritziana and Flectonotus species (A) Fr. goeldii (B) Fr. ohausi (C) Fr. fissilis (D) Fr. tonimi (E) Fr. izecksohni (F) Fr. ulei (G) Fl. pygmaeus; and (H) Fl. fitzgeraldi. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone (e.g., ramus, process). Scale bar = 1 mm.

opennotspecifiedMay 2022View details →
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Fig. 5 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 5. Vertebral column (dorsal view) of Fritziana and Flectonotus species represented by (A) Fr. tonimi; and (B) Fl. fitzgeraldi. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone. Scale bar = 1 mm.

opennotspecifiedMay 2022View details →
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Fig. 6 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 6. Pectoral girdle (ventral view) of Fritziana and Flectonotus species represented by Fr. tonimi and Fr. goeldii. Scale bar = 1 mm.

opennotspecifiedMay 2022View details →
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Fig. 9 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 9. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) anterolateral extent of anterior process of vomer (B) lenght of postchoanal process of vomer. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.

opennotspecifiedMay 2022View details →
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Fig. 4 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 4. Mandible and Hyolaryngeal apparatus (dorsal view) of Fritziana and Flectonotus species represented by (A) Fr. goeldii; and (B) Fl. fitzgeraldi. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone. Scale bar = 1 mm.

opennotspecifiedMay 2022View details →
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Fig. 3 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 3. Skull (lateral view) of Fritziana and Flectonotus species (A) Fr. goeldii (B) Fr. ohausi (C) Fr. fissilis (D) Fr. tonimi (E) Fr. izecksohni (F) Fr. ulei (G) Fl. pygmaeus; and (H) Fl. fitzgeraldi. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone (e.g., ramus, process). Scale bar = 1 mm.

opennotspecifiedMay 2022View details →
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Fig. 15 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 15. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) ossification extension of sternum (B) relative length of Fingers II See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.

opennotspecifiedMay 2022View details →
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Fig. 14 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 14. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) clavicules orientation (B) shape of omostermum. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.

opennotspecifiedMay 2022View details →
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Fig. 8 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 8. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis: extension of anterior terminus of cultriform process of parasphenoid. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.

opennotspecifiedMay 2022View details →
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Fig. 7 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 7. Manus and pes (dorsal view) of Fritziana and Flectonotus species represented by (A) Fr. ohausi manus (B) Fl. fitzgeraldi manus (C) Fr. ohausi pes; and (D) Fl. fitzgeraldi pes. Roman typeface is used to label the bones, whereas italics are used to designate a part of a bone. Scale bar = 1 mm. E. = element.

opennotspecifiedMay 2022View details →
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Fig. 11 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 11. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) preorbital process of maxilla (B) extension of anterior terminus of quadratojugal. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.

opennotspecifiedMay 2022View details →
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Fig. 12 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 12. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) nasal size (B) exposition of frontoparietal fenestra. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.

opennotspecifiedMay 2022View details →
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Fig. 10 in The egg-brooding frogs Fritziana Mello-Leit˜ao, 1937 and Flectonotus Miranda-Ribeiro, 1926 (Amphibia: Anura): osteology and putative synapomorphies for hemiphractid frogs

Fig. 10. Parsimonious optimization onto Echevarría et al. (2021) phylogenetic hypothesis (A) medial contact of vomers (B) orientation of dentigerous process of vomers. See Supplemental Material for the complete matrix, including outgroups. Gray represents unknown condition.

opennotspecifiedMay 2022View details →

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Allen Brain Atlas

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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.

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Last verified 2026-04-30Open record

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.

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Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record