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352 results for “Bee nesting”
Figure 8 from: Nalinrachatakan P, Traiyasut P, Khongnak A, Muangkam M, Ascher JS, Warrit N (2021) The resin bee subgenus Ranthidiellum in Thailand (Megachilidae, Anthidiini): nesting biology, cleptoparasitism by Stelis, and new species. ZooKeys 1031: 161-182. https://doi.org/10.3897/zookeys.1031.57836
Figure 8 Nesting habitat of Anthidiellum phuchongensis sp. nov. at PCNYNP, Ubon Ratchathani Province, Thailand A, B nest excavation process and area C resinous nest entrances D, E nest locations of A. phuchongensis on vertical earth bank (highlighted with yellow dots).
FIGURE 1. A in Descriptions of the Mature Larvae of Three Australian Ground-Nesting Bees(Hymenoptera: Colletidae: Diphaglossinae and Neopasiphaeinae)
FIGURE 1. A. Enlarged diagram of head of mature larva of Leioproctus wanni, frontal view, identifying major anatomical features of head capsules of bee larvae. B. Diagrams of mature larva of Leioproctus wanni. Fullbody lateral view. Scale bar = 2 cm.
Figures 15–18 from: Müller A, Mauss V, Prosi R (2017) Unique nest architecture in the North African osmiine bee Hoplitis (Hoplitis) mucida (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 60: 99-109. https://doi.org/10.3897/jhr.60.20218
Figures 15–18 - Morphological differences in the female sex between Hoplitis mucida (left) and H. stecki (right) (see Table 2): 15–16 Vertex 17–18 Pilosity of tergal discs.
Figures 1–6 from: Müller A, Mauss V, Prosi R (2017) Unique nest architecture in the North African osmiine bee Hoplitis (Hoplitis) mucida (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 60: 99-109. https://doi.org/10.3897/jhr.60.20218
Figures 1–6 - Nests of Hoplitis mucida (see Table 1): 1–2 Nest 1 near Ait Baha in southern Morocco glued to the flat surface of a middle-sized stone 3 Nest 1 opened shortly after its finalization with cell contents removed 4–5 Nest 2 near Ait Baha in southern Morocco glued to the flat surface of a rock 6 Nest 3 originating from near El Kef in northern Tunisia glued to the flat surface of a small stone and photographed after bee emergence.
Figures 7–14 from: Müller A, Mauss V, Prosi R (2017) Unique nest architecture in the North African osmiine bee Hoplitis (Hoplitis) mucida (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 60: 99-109. https://doi.org/10.3897/jhr.60.20218
Figures 7–14 - Morphological differences in the male sex between Hoplitis mucida (left) and H. stecki (right) (see Table 2): 7–8 Antenna 9–10 Tergum 7 11–12 Membraneous appendage of sternum 6 13–14 Genitalia.
Fig. 1 in Nest architectures of myrmecophilous stingless bees, Trigona sp. cfr. cilipes and Paratrigona sp., from Peruvian Amazon (Hymenoptera: Apidae, Apinae, Meliponini)
Fig. 1 – Nest of Trigona sp. cfr. cilipes – Dolichoderus quadridenticulatus. The long tube is the entrance to the hive.
Fig. 5 in Nest architectures of myrmecophilous stingless bees, Trigona sp. cfr. cilipes and Paratrigona sp., from Peruvian Amazon (Hymenoptera: Apidae, Apinae, Meliponini)
Fig. 5 – Batumen tunnels between the first and second outer layers of the stingless bee's (Trigona sp. cfr. cilipes) nest.
Fig. 1 in The potential management of a ground-nesting, solitary bee: Anthophora abrupta (Hymenoptera: Apidae)
Fig. 1. The original (mother) nest aggregation of Anthophora abrupta discovered in Apr 2010. The bees were nesting in colloidal clay, in an open air shed, in Gainesville, Florida. Photo: Jason R. Graham.
Figure 1 in A nesting aggregation of the solitary bee Megachile atrata (Hymenoptera: Megachilidae) in the Philippines
Figure 1. Part of a low gulch in a field near Matuod, Batangas, Philippines. The core of a Megachile (Creightonella) atrata Smith nesting aggregation is at the foot of one of the banks (middle ground), where the positions of 67 nests are marked with bamboo stakes. These protrude on average about 15 cm above the ground. There is only one nest on the ledge above, two on the steep bank face, and none in the relatively bare foreground.
Figures 4-9 from: Müller A, Praz C, Dorchin A (2018) Biology of Palaearctic Wainia bees of the subgenus Caposmia including a short review on snail shell nesting in osmiine bees (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 65: 61-89. https://doi.org/10.3897/jhr.65.27704
Figures 4-9 Wainiasexsignata. 4 Brood cell partition built from yellow petal pieces of Asteroideae, which are partly covered with dark brown remnants of the larval cocoon; note the portion of leaf pulp at the right upper side of the partition used to glue the petal pieces to the inner shell surface 5 Partition of the nest plug 6 Nest plug consisting of a series of four partitions constructed from yellow Asteroideae petal pieces immediately followed by the nest closure at the shell opening, which consists of leaf pulp; the partition at the extreme right is the outermost brood cell partition 7 Yellow petal pieces adhering to the rear side of the nest closure 8 Anterior part of the nest plug with an additional wall of leaf pulp built in front of the second outermost plug partition 9Asteroideae petal pieces used to construct cell and plug partitions; petals in the upper row with traces of leaf pulp, which glued them to the inner shell surface.
Figures 20-25 from: Müller A, Praz C, Dorchin A (2018) Biology of Palaearctic Wainia bees of the subgenus Caposmia including a short review on snail shell nesting in osmiine bees (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 65: 61-89. https://doi.org/10.3897/jhr.65.27704
Figures 20-25 20Osmia (Pyrosmia) viridana at nest entrance (photo N. Vereecken) 21Protosmia (Protosmia) paradoxa on snail shell (photo N. Vereecken) 22Osmia (Hoplosmia) spinulosa turning its nest in situ 23Osmia (Allosmia) rufohirta rolling its nest towards a protected place 24Osmia (Allosmia) sybarita rolling its nest into a self excavated hole in sandy soil (photo N. Vereecken) 25Osmia (Neosmia) bicolor covering its nest with plant stalks (photo A. Krebs).
Figures 10-12 from: Müller A, Praz C, Dorchin A (2018) Biology of Palaearctic Wainia bees of the subgenus Caposmia including a short review on snail shell nesting in osmiine bees (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 65: 61-89. https://doi.org/10.3897/jhr.65.27704
Figures 10-12 10Asteriscusgraveolens (Asteroideae, Asteraceae), an important pollen host of Wainiasexsignata (photo V. Mauss) 11 Female of Wainiaeremoplana collecting pollen on Centaurea spec. (photo G. Pisanty) 12 Habitat of Wainiaeremoplana in the central Negev Desert of Israel at Nahal Hatira (the large crater), 10 km east of Yeroham.
Figure 13 from: Müller A, Praz C, Dorchin A (2018) Biology of Palaearctic Wainia bees of the subgenus Caposmia including a short review on snail shell nesting in osmiine bees (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 65: 61-89. https://doi.org/10.3897/jhr.65.27704
Figure 13 Phylogenetic distribution of snail shell nesting in osmiine bees. Red = taxa that probably exclusively consist of obligate snail shell nesters; blue = taxa that contain both obligate and facultative snail shell nesters (in Hoplitis (Anthocopa), only one (exclusive) snail shell nester is known); green = taxa that probably contain only facultative snail shell nesters; black = taxa that do not contain any snail shell nesters to the present knowledge (nesting biology of Hoplitis (Megahoplitis), Hoplitis (Platosmia), Wainia (Wainia), Wainia (Wainiella) and Osmia (Nasutosmia) still unknown). sp. gr. = species group. Phylogeny based on Praz et al. (2008a), Rightmyer et al. (2013) and Sedivy et al. (2013a).
Figures 14-19 from: Müller A, Praz C, Dorchin A (2018) Biology of Palaearctic Wainia bees of the subgenus Caposmia including a short review on snail shell nesting in osmiine bees (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 65: 61-89. https://doi.org/10.3897/jhr.65.27704
Figures 14-19 14 Opened nest of Osmia (Helicosmia) notata with brood cells arranged side by side 15 Opened nest of Osmia (Hoplosmia) pinguis with brood cells arranged in a linear series 16 Nest of Osmia (Helicosmia) aurulenta densely covered with patches of leaf pulp 17 Opened nest of Hoplitis (Hoplitis) fertoni with brood cells arranged side by side (photo G. Le Goff) 18 Opened nest of Osmia (Allosmia) rufohirta with single brood cell (photo P. Westrich) 19 Opened nest of Osmia (Neosmia) bicolor with barrier composed of small pebbles and earth crumbs (photo A. Krebs).
Figures 1-3 from: Müller A, Praz C, Dorchin A (2018) Biology of Palaearctic Wainia bees of the subgenus Caposmia including a short review on snail shell nesting in osmiine bees (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 65: 61-89. https://doi.org/10.3897/jhr.65.27704
Figures 1-3 Wainiasexsignata. 1 Nesting habitat 2.75 km southwest of Ifrane Atlas-Saghir in southern Morocco (photo V. Mauss) 2 Nest in a shell of Sphincterochila spec. closed with a plug built from chewed leaves 3 Opened nest with three linearly arranged brood cells each containing a prepupa.
Supplementary material 3 from: Müller A, Prosi R, Praz C, Richter H (2019) Nesting in bark – the peculiar life history of the rare boreoalpine osmiine bee Osmia (Melanosmia) nigriventris (Hymenoptera, Megachilidae). Alpine Entomology 3: 105-119. https://doi.org/10.3897/alpento.3.34409
: Data type: XLS file
Supplementary material 1 from: Müller A, Prosi R, Praz C, Richter H (2019) Nesting in bark – the peculiar life history of the rare boreoalpine osmiine bee Osmia (Melanosmia) nigriventris (Hymenoptera, Megachilidae). Alpine Entomology 3: 105-119. https://doi.org/10.3897/alpento.3.34409
: Data type: PDF file
Supplementary material 2 from: Müller A, Prosi R, Praz C, Richter H (2019) Nesting in bark – the peculiar life history of the rare boreoalpine osmiine bee Osmia (Melanosmia) nigriventris (Hymenoptera, Megachilidae). Alpine Entomology 3: 105-119. https://doi.org/10.3897/alpento.3.34409
: Data type: PDF file
Figures 7-16 from: Müller A, Prosi R, Praz C, Richter H (2019) Nesting in bark – the peculiar life history of the rare boreoalpine osmiine bee Osmia (Melanosmia) nigriventris (Hymenoptera, Megachilidae). Alpine Entomology 3: 105-119. https://doi.org/10.3897/alpento.3.34409
Figures 7-16 Nest architecture of Osmianigriventris. 7–9) Nest seals of nests 19, 16 and 18. 10) Five-layered nest plug of nest 18. 11) Single-layered nest plug of nest 17. 12) Ring-shaped threshold. 13, 14) Three-layered cell partitions. 15) Brood cells with larval provisions. 16) Brood cells with larval cocoons.
Figures 32-34 from: Müller A, Prosi R, Praz C, Richter H (2019) Nesting in bark – the peculiar life history of the rare boreoalpine osmiine bee Osmia (Melanosmia) nigriventris (Hymenoptera, Megachilidae). Alpine Entomology 3: 105-119. https://doi.org/10.3897/alpento.3.34409
Figures 32-34 Distribution of Osmianigriventris in 32) the Palaearctic, 33) the Nearctic and 34) Central Europe. For Central Europe, records before 2000 are given in black, those from 2000 to the present in yellow. See Suppl. material 2 for a complete list of all distributional data. Made with Natural Earth (www.naturalearthdata.com).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.