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Figure 5 in Morphological phylogeny of Megachilini and the evolution of leaf-cutter behavior in bees (Hymenoptera: Megachilidae)
Figure 5. Some male morphological features used in the phylogenetic analysis. A–C. Ventral projection of mandible. D–F. Dorsal (left half) and ventral (right half) views of sixth tergum. G–I. Dorsal view of seventh tergum. J. Ventral view of sixth sternum. K–M. Ventral view of eighth sternum. N–P. Dorsal view of genital capsule. Q, R. Profile view of genital capsule. S. Apex of penis valves. Taxa: Megachile (Acentron) albitarsis Cresson (A, L); M. (Callomegachile) biseta Vachal (B); M. (Maximegachile) maxillosa Guérin-Méneville (C); M. (Argyropile) longuisetosa Gonzalez & Griswold (D, G); M. (Grosapis) cockerelli (E, H, R); M. (Creightonella) cognata Smith (F, I); M. (Zonomegachile) moderata Smith (J, K); M. (Largella) donbakeri Gonzalez & Engel (M); M. (Austromegachile) montezuma Cresson (N); M. (M.) centuncularis (Linnaeus) (O); M. (Moureapis) maculata Smith (P); M. (Chalicodoma) parietina (Geoffroy) (Q); M. (Chalicodoma) sicula (Rossi) (S).
Figure 6 in Unusual nesting behavior in Megachile (Eutricharaea) rotundata (Hymenoptera: Megachilidae)
Figure 6. Pteromalus apum Retzius (Hymenoptera: Chalcididae), one of the main chalcid parasites of the Alfalfa Leafcutter Bee. Several adult P. apum were observed near the bee nesting population.
Figures 2–5 in Unusual nesting behavior in Megachile (Eutricharaea) rotundata (Hymenoptera: Megachilidae)
Figures 2–5. Nesting location of a population of Megachile rotundata (Fabricius) (Megachilidae) in the radiator of a Caterpillar™ tractor. 2. Entire radiator surface. 3. Section of radiator showing many linear series of natal cells. 4. A female constructing a natal cell with a leaf piece. 5. The likely emergence hole from previous generation; note the emergence hole is on the lateral surface of the cell, not the apical end.
Figure 1. A in Unusual nesting behavior in Megachile (Eutricharaea) rotundata (Hymenoptera: Megachilidae)
Figure 1. A natal cell of the Alfalfa Leafcutter Bee, Megachile rotundata (Fabricius) (Megachilidae) constructed with many individual leaf pieces. The apical (i.e., flat end to the left) is where the bee's head is, and is the direction of exiting from the cell.
Figure 5 in Investigations on the cannibalistic behavior of ladybird beetle Coccinella septempunctata L. (Coleoptera: Coccinellidae) under laboratory conditions
Figure 5. Each bar represents mean (±SE) larval consumption (L4-60/1 = 60 first instars offered to 4th instars, L4-60/1-700 = 60 first instars offered to 4th instars with 700 aphids, L4-35/2 = 35 second instars offered to 4th instars, L4-35/2-700 = 35 second instars offered to 4th instars along with 700 aphids, L3-35/1= 35 first instars offered to 3rd instars, L3-35/1-400 = 35 first instars offered to 3rd instar with 400 aphids, L3-20/2 = 20 second instars offered to 3rd instars, L3-20/2-350 = 20 second instars offered to 3rd instars with 350 aphids, L2-20/1 = 20 first instars offered to 2nd instars, L2-20/1- 200 = 20 first instars offered to 2nd instars along with 200 aphids). Different letters indicate that means are significantly different (P ≤ 0.05).
Figure 4 in Investigations on the cannibalistic behavior of ladybird beetle Coccinella septempunctata L. (Coleoptera: Coccinellidae) under laboratory conditions
Figure 4. Cannibalism of eggs by different larval instars of C. septempunctata in the presence and absence of aphids (L1-20 = 20 eggs offered to 1st instars, L1-20-20 = 20 eggs along with 20 aphids offered to 1st instars, L2-30 = 30 eggs offered to 2nd instars, L2-30-30 = 30 eggs along with 30 aphids offered to 2nd instars, L3-50 = 50 eggs offered to 3rd instars, L3-50-60 = 50 eggs along with 60 aphids offered to 3rd instars, L4-100 = 100 eggs offered to 4th instars, L4-100-100 = 100 eggs along with 100 aphids offered to 4th instars). Different letters indicate that means are significantly different (P ≤ 0.05).
Figure 6 in Investigations on the cannibalistic behavior of ladybird beetle Coccinella septempunctata L. (Coleoptera: Coccinellidae) under laboratory conditions
Figure 6. Each bar represents mean (±SE) of larval consumption (L1 alone = 10 first instars alone, L1-100 = 10 first instars along with 100 aphids, L2 alone = 10 second instars alone, L2-150 = 10 second instars along with 150 aphids, L3 alone = 10 third instars alone, L3-300 = 10 third instars along with 300 aphids, L4 alone= 10 fourth instars alone, L4-700 = 10 fourth instars along with 700 aphids). Different letters indicate that means are significantly different (P ≤ 0.05).
Figure 3 in Investigations on the cannibalistic behavior of ladybird beetle Coccinella septempunctata L. (Coleoptera: Coccinellidae) under laboratory conditions
Figure 3. Cannibalism of 2nd instar larvae by adult males and females (M-35 = 35 second instar larvae offered to adult males, M-35-600 = 35 second instars along with 600 aphids offered to males, F-35 = 35 second instar larvae offered to adult females, F-35-600 = 35 second instars along with 600 aphids offered to females). Different letters indicate that means are significantly different (P ≤ 0.05).
Data and Code for "A lasting impact of serotonergic psychedelics on visual processing and behavior"
<p>Processed data and analysis code for "<span><span>A lasting impact of serotonergic psychedelics on visual processing and behavior". <span>https://doi.org/10.1101/2024.07.03.601959 </span></span></span></p>
Figure 5 in Comparing landscape suitability and permeability with and without migration data: the influence of species movement behavior
Figure 5. Predicted areas of high permeability for wild sheep's seasonal movements using full set of occurrence data (left panel) and only data compiled within the PAs (right panel) between Mooteh WR and Haftad-Gholle PA.
Figure 3 in Comparing landscape suitability and permeability with and without migration data: the influence of species movement behavior
Figure 3. Distribution of wild sheep predicted using the full set of occurrence data (left panel) and only occurrence data associated with home range use within the PAs (right panel)
Figure 4 in Comparing landscape suitability and permeability with and without migration data: the influence of species movement behavior
Figure 4. Suitable and unsuitable habitats of wild sheep using full set of occurrence data (left panel) and only data compiled within the PAs (right panel).
Figure 1 in Comparing landscape suitability and permeability with and without migration data: the influence of species movement behavior
Figure 1. Geographic location of the study area between Isfahan and Markazi provinces in central Iran.
Fig. 6 in New Species Of Ilyoplax (Brachyura: Ocypodidae: Dotillinae) From The Philippines And Indonesia: Behavioral, Molecular, And Morphological Evidence
Fig. 6. Neighbor-joining tree for three morphologically similar species of Ilyoplax based on 864 base pairs of mtDNA coding for the 16S rRNA, with Ilyoplax dentata and Ilyoplax serrata as outgroups. Numbers are bootstrap values obtained after replicates.
Fig. 3 in New Species Of Ilyoplax (Brachyura: Ocypodidae: Dotillinae) From The Philippines And Indonesia: Behavioral, Molecular, And Morphological Evidence
Fig. 3 Comparison of the form of the first male pleopod, shape of carapace and shape of the lobe near outer side of the infraorbital border among I. orientalis, I. tansuiensis, and Ilyoplax pacifica, new species. A, magnification of apex of first pleopod: Ilyoplax pacifica, new species, paratype male (OMNH-Ar 7105); I. tansuiensis, male (5.2 mm c.b.) (OMNH-Ar 7111), Tanshui, Taiwan, coll. K. Wada, (27 Mar.1996); I. orientalis, male (5.2 mm c.b.) (OMNH-Ar 7109), Ranong, Thailand, coll. K. Wada, (6 Dec.1982). B, side margin of male carapace: Ilyoplax pacifica, new species, paratype male (OMNH-Ar 7105); I. orientalis, male (OMNH-Ar 7109); I. tansuiensis, male (OMNH-Ar 7111). C, dorsal view of characteristic lobe of the infraorbital border: Ilyoplax pacifica, new species, paratype male (OMNH-Ar 7105); I. orientalis, male (OMNH- Ar 7109); I. tansuiensis, male (OMNH- Ar 7111).
Fig. 2 in New Species Of Ilyoplax (Brachyura: Ocypodidae: Dotillinae) From The Philippines And Indonesia: Behavioral, Molecular, And Morphological Evidence
Fig. 2 Ilyoplax pacifica, new species: A, suborbital margin; B, male abdomen; C, male first pleopod; D, E, magnifications of apex of first pleopod; F, left chela; G, female abdomen. A, C-F, holotype male; B, paratype male (OMNH-Ar 7105); G, paratype ovig. female (OMNHAr 7106).
Fig. 1. Terrestrial leeches. A in Leeches in the extreme: Morphological, physiological, and behavioral adaptations to inhospitable habitats
Fig. 1. Terrestrial leeches. A) Orobdella sp. out of water after a rainstorm in the Philippines. Leech is estimated to be more than 25 cm in length. Image credit: Will Reeves. B) Haemadipsa zeylanica pursuing the photographer as a host on the Vietnamese forest floor. Leech size approximately 4 cm in length. C) SEM image of the head of a haemadipsid leech. The inset depicts an outline of the same image with the eye spots marked by black dots. D) Caudal sucker of a haemadipsid leech with friction rays on the sucker surface. White arrows indicate the two flaps of the auricle. Scale bars in C and D = 0.5 mm.
Fig. 4. Leech parental care. A in Leeches in the extreme: Morphological, physiological, and behavioral adaptations to inhospitable habitats
Fig. 4. Leech parental care. A) Light microscopy image of a glossiphoniid leech with pink circular eggs gathered on its ventral side for protection. B) Light microscopy image of a glossiphoniid leech with leech hatchlings gathered on the ventral side of the parent leech. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 3. Extreme feeding. A in Leeches in the extreme: Morphological, physiological, and behavioral adaptations to inhospitable habitats
Fig. 3. Extreme feeding. A) Hirudo verbana, a commercially important and frequently traded species of European medicinal leech. B) Several individuals of Hirudo verbana feeding on blood inside a nitrile rubber glove.
Fig. 11 in Description of head scalation variation, hemipenis, reproduction, and behavior of the Indian Smooth Snake, Coronella brachyura (Günther 1866)
Fig. 11. Wallaceophis gujaratensis with two distinct lateral stripes, from Saldi village, Amerli district, Gujarat. Photo credit Bhavesh Trivedi.
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.