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Figure 1. A. Habitat where observations were carried out. B. Pupal clutches. C & D in A note on the defence by Eurema blanda Boisduval (Lepidoptera: Pieridae) pupae in response to oviposition behaviour of the chalcid wasp Brachymeria sp. (Hymenoptera: Chalcididae)
Figure 1. A. Habitat where observations were carried out. B. Pupal clutches. C & D. Left and right ways movement of pupa in response to Brachymeria sp. E. Female Brachymeria sp. F. Newly emerged Eurema blanda from collected pupae.
Figure 8 in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)
Figure 8. Canonical variate analysis (CVA) of gonopod shape in relation with mating status (circle: black – nonmated males; grey – mated males).
Figure 7 in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)
Figure 7. Principal component analysis (PCA) of gonopod shape in relation with mating status (circle: black – nonmated males; grey – mated males).
Figure 4 in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)
Figure 4. Percentage of copulations achieved with the previous partner (white bars) and with a new partner (black bars) in female and male choice tests.
Figure 3 in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)
Figure 3. Positions of mating pairs of P. hungaricus. A – male and female in parallel position; B, C – male coiling around female (photo: B. Ilić).
Figure 1. A in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)
Figure 1. A – position of landmarks on the walking leg in P. hungaricus. B – position of landmarks on the gonopodal promere, mesocaudal view.
Figure 2 in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)
Figure 2. Mating in P. hungaricus. A – male; B – female; C, D – contact; E, F – extrusion of gonopods (arrowheads); G – copulation (arrowhead) (photo: B. Ilić).
Figure 2 in Aspects of the reproductive behaviour and development of two forensically relevant species, Blaesoxipha (Gigantotheca) stallengi (Lahille, 1907) and Sarcophaga (Liopygia) ruficornis (Fabricius, 1794) (Diptera: Sarcophagidae)
Figure 2. Summary of the observed reproductive behaviour for Blaesoxipha stallengi (Lahille) and Sarcophaga ruficornis (Fabricius) in the laboratory.
Figure 1 in Aspects of the reproductive behaviour and development of two forensically relevant species, Blaesoxipha (Gigantotheca) stallengi (Lahille, 1907) and Sarcophaga (Liopygia) ruficornis (Fabricius, 1794) (Diptera: Sarcophagidae)
Figure 1. Characteristics used in the identification of the specimens. A and B – Blaesoxipha stallengi (Lahille), C and D – Sarcophaga ruficornis (Fabricius).
Figs. 1-3 in Courtship And Male-Male Agonistic Behaviour Of Cosmophasis Umbratica Simon, An Ornate Jumping Spider (Araneae: Salticidae) From Singapore
Figs. 1-3. (1) Javanese Ixora, Ixora javanica, a common garden flowering plant on which Cosmophasis umbratica and many salticids were frequently found; (2) Ixora commonly planted along roads and paths in parks; (3) C. umbratica on a red inflorescences of Ixora.
Figs. 15-16 in Courtship And Male-Male Agonistic Behaviour Of Cosmophasis Umbratica Simon, An Ornate Jumping Spider (Araneae: Salticidae) From Singapore
Figs. 15-16. (15a) Male C. umbratica (facing right) posturing with hunched legs and bent abdomen; (15b) Male C. umbratica (facing onview) with hunched legs and abdomen not bent; (16a-f) Sequence of main events during agonistic interactions between two males: (16a) two males with elevated legs (Position 1); (16b) two males embracing each other (no pushing was observed) with legs I elevated (Position 2), chelicerae opened with fangs pointed downwards (Position 2), palps extended (Position 3), and body raised; (16c) the larger male (right) hooking and pushing the smaller male, with legs IV flexed at femur-patella-tibia such that body is raised, with posterior (abdomen) higher that the anterior (cephalothorax); (16d) the larger male chasing away the decamping male with elevated legs I (Position 2) and extended palps (Position 3); male (in background) in process of decamping; (16e) the larger male lifting up the smaller male after both were engaged in a hook and grapple; (16f-g) after a clash, males tend to quickly extend and retract legs (male in background).
Fig. 7. A in Courtship And Male-Male Agonistic Behaviour Of Cosmophasis Umbratica Simon, An Ornate Jumping Spider (Araneae: Salticidae) From Singapore
Fig. 7. A silken nest, consisting of a not so dense silken sheet covering a silken tube spun by male C. umbratica in a petri dish.
Figs. 4-6 in Courtship And Male-Male Agonistic Behaviour Of Cosmophasis Umbratica Simon, An Ornate Jumping Spider (Araneae: Salticidae) From Singapore
Figs. 4-6. (4) Male C. umbratica (front dorsal view), with blue-green (dorsal) and violet iridescence on the sides of femurs of legs I to IV, a line of iridescence on the dorsal abdomen from anterior to posterior, and a white line along each side of abdomen, which were joined at the anterior abdomen but discontinued at the posterior; (5) Female C. umbratica (front dorsal view). Females are generally less iridescent and have a shorter yet plump abdomen as compared to the slim and elongated abdomen of males; (6) The face of a juvenile C. umbratica (6a) lacks white hairs indicating a sexually matured male C. umbratica (6b), and black coloration on the tarsus of a palp (6c), a coloration prominent on an adult male's palps (see Fig. 4).
Figs. 17-24 in Courtship And Male-Male Agonistic Behaviour Of Cosmophasis Umbratica Simon, An Ornate Jumping Spider (Araneae: Salticidae) From Singapore
Figs. 17-24. (17) Male C. umbratica posturing with elevated legs (Position 1) during agonistic interactions with another male (partially hidden); (18) C. umbratica in a hunched position with chelicerae opened and fangs showing a little (Position 1); (19a-d) Sequences before an embrace of two male umbratica, with chelicerae opened in Position 3: (19d) extension of palps (Position 3) were only prominent just before contact; (20) Male C. umbratica (facing right) posturing with flexed up abdomen and extended palps (Position 1); (21) Male C. umbratica with almost fully extended palps contacting substrate; (22) A slightly flexed palps on contact with the surface during agonistic displays. Here the male has a slightly raised and bent abdomen; Copulating position of C. umbratica, with the male's leg II (facing right) going over the female's cephalothorax (facing downwards); (24) Male umbratica (facing on-view) copulating with a female (facing inside). The female's abdomen was rotated about 30˚ and lifted slightly from its
Figure4 in Analysis of Behavioural Patterns of the Amazonian Manatee, Trichechus manatus manatus, under Human Care (Mammalia:Sirenia)
Figure4. Space use data of the manatee individuals linked to the referring numbers on the map; 1 - 10 deepwater zone (Z); 11/12 semi-deep-water zone (Y); 13/14 shallow-water zone (X)
Figure3 in Analysis of Behavioural Patterns of the Amazonian Manatee, Trichechus manatus manatus, under Human Care (Mammalia:Sirenia)
Figure3. Map of the manatee tank divided into grid squares, each filled with similar volume of water; 1 - 10 deep-water zone (Z); 11/12 semi-deep-water zone (Y); 13/14 shallow-water zone (X)
Fig. 2 in Pollination efficiency on Ipomoea bahiensis (Convolvulaceae): morphological and behavioural aspects of floral visitors
Fig. 2. Relation between the average width of bee species and the width of the internal area of the floral tube of Ipomoea bahiensis. Horizontal dashed lines = confidence interval of the internal area of the floral tube. Points = average visitor size, Bars = confidence interval. Species: (A) Ancyloscelis apiformes; (B) Apis mellifera; (C) Centris (Hemisiela) tarsata; (D) Euglossa (Euglossa) sp.; (E) Gaesischia (Gaesischia) cf. similis; (F) Melipona quadrifasciata; (G) Melitoma segmentaria; (H) Melitoma sp. 1; (I) Melitoma sp. 2; (J) Melitomella murihirta; (K) Ptilithrix cf. plumata; (L) Ptiloglossa sp.; (M) Protomeliturga turnerae; (N) Thygater (Thygater) analis; (O) Trigona spinipes; (P) Augochlora sp.; (Q) Pseudaugochlora pandora
Fig. 1 in Pollination efficiency on Ipomoea bahiensis (Convolvulaceae): morphological and behavioural aspects of floral visitors
Fig. 1. Comparison between the probabilities of fruit formation in different treatments of reproductive biology test and the control in Ipomoea bahiensis (Convolvulaceae), in Feira de Santana (BA). Control in natural conditions in the horizontal line, points = other treatments: apomixis (A), spontaneous self-pollination (SS), manual self-pollination (MS), geitonogamy (G), and xenogamy (X).
Fig. 4 in Pathological phalanges in a camarasaurid sauropod dinosaur and implications on behaviour
Fig. 4. Photo (A) and drawing (B) of the right pedal ungual II of the camarasaurid sauropod SMA 0002 (Upper Jurassic Morrison Formation, HoweStephens Quarry, Wyoming, USA) in proximal view, showing the broken surface indicating overgrowth attachment. Modified from Tschopp et al. (2015).
Fig. 2 in Dwarfism and feeding behaviours in Oligo-Miocene crocodiles from Riversleigh, northwestern Queensland, Australia
Fig. 2. Vertebrae of mekosuchine crocodile Mekosuchus whitehunterensis Willis, 1997; White Hunter Site, Riversleigh World Heritage Area, northwestern Queensland, Australia; late Oligocene. A. Axis vertebra (QM F56039). B. Third cervical vertebra (QM F56040). C. Fourth cervical vertebra (QM F56041). D. Sixth cervical vertebra (QM F56042). E. Ninth cervical vertebra (QM F56043). F. Third thoracic vertebra (QM F56321). G. Third cervical vertebra (QM F56320). H. Eighth cervical vertebra (QM F56322). Arrows indicate extent of the neurocentral suture; left (A1–H1) and right (A2–H2) views.
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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.