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136 results for “behavioural ecology”
Figures 17-20 from: Steiner W (2014) Larvae and pupae of two North American darkling beetles (Coleoptera, Tenebrionidae, Stenochiinae), Glyptotus cribratus LeConte and Cibdelis blaschkei Mannerheim, with notes on ecological and behavioural similarities. ZooKeys 415: 311-327. https://doi.org/10.3897/zookeys.415.6891
Figures 17-20 - Pupa of Glyptotus cribratus, dorsal view (17) and ventral view (18), pronotum, dorsolateral view (19), abdominal apex and urogomphi, dorsal view (20). Length of pupa 15.1 mm.
Figures 1-8 from: Steiner W (2014) Larvae and pupae of two North American darkling beetles (Coleoptera, Tenebrionidae, Stenochiinae), Glyptotus cribratus LeConte and Cibdelis blaschkei Mannerheim, with notes on ecological and behavioural similarities. ZooKeys 415: 311-327. https://doi.org/10.3897/zookeys.415.6891
Figures 1-8 - Mature larva of Glyptotus cribratus, lateral view, length 22 mm (1), mature larva of Cibdelis blaschkei lateral view, length 25 mm (2), Glyptotus cribratus larva, mandibles, ventral view, length 0.9–1.0 mm (3), epipharyngeal sclerome, length 0.4 mm (4), epipharynx, width 0.8 mm (5), Cibdelis blaschkei larva, mandibles, ventral view, length 0.7–0.8 mm (6), epipharyngeal sclerome, length 0.3 mm (7), epipharynx, width 0.7 mm (8).
Figures 25-28 from: Steiner W (2014) Larvae and pupae of two North American darkling beetles (Coleoptera, Tenebrionidae, Stenochiinae), Glyptotus cribratus LeConte and Cibdelis blaschkei Mannerheim, with notes on ecological and behavioural similarities. ZooKeys 415: 311-327. https://doi.org/10.3897/zookeys.415.6891
Figures 25-28 - Right lateral abdominal processes of tergites 1–4, pupa of Glyptotus cribratus (25) and Cibdelis blaschkei (26), Glyptotus cribratus, live pupa (dorsolateral view) and associated larval exuvia, Kill Devil Hills, North Carolina (27), Cibdelis blaschkei, live pupa (lateral view) and associated larval exuvia in pupal cell of oak wood, Angwin, California (28). Length of pupae 15–16 mm.
Figures 9-16 from: Steiner W (2014) Larvae and pupae of two North American darkling beetles (Coleoptera, Tenebrionidae, Stenochiinae), Glyptotus cribratus LeConte and Cibdelis blaschkei Mannerheim, with notes on ecological and behavioural similarities. ZooKeys 415: 311-327. https://doi.org/10.3897/zookeys.415.6891
Figures 9-16 - Abdominal apices of mature larvae of Glyptotus cribratus (9–12), dorsal (9) and lateral (10) view, urogomphi at rest, dorsal (11) and lateral (12) view, urogomphi raised, and abdominal apices of mature larvae of Cibdelis blaschkei (13–16), dorsal (13) and lateral (14) view, urogomphi at rest, dorsal (15) and lateral (16) view, urogomphi raised. Maximum widths of abdominal segments 3.3–3.5 mm.
Figures 21-24 from: Steiner W (2014) Larvae and pupae of two North American darkling beetles (Coleoptera, Tenebrionidae, Stenochiinae), Glyptotus cribratus LeConte and Cibdelis blaschkei Mannerheim, with notes on ecological and behavioural similarities. ZooKeys 415: 311-327. https://doi.org/10.3897/zookeys.415.6891
Figures 21-24 - Pupa of Cibdelis blaschkei, dorsal view (21) and ventral view (22), pronotum, dorsolateral view (23), abdominal apex and urogomphi, dorsal view (24). Length of pupa 16.2 mm.
Data from: Ecological conditions alter cooperative behaviour and its costs in a chemically defended sawfly
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Disparate movement behaviour and feeding ecology in sympatric ecotypes of Atlantic cod
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Figure 6 from: Ziv G, Beckmann M, Bullock J, Cord A, Delzeit R, Domingo C, Dreßler G, Hagemann N, Masó J, Müller B, Neteler M, Sapundzhieva A, Stoev P, Stenning J, Trajković M, Václavík T (2020) BESTMAP: behavioural, Ecological and Socio-economic Tools for Modelling Agricultural Policy. Research Ideas and Outcomes 6: e52052. https://doi.org/10.3897/rio.6.e52052
Figure 6 Typical agricultural landscapes of BESTMAP demonstration case studies.
Figure 10 – C. t in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 10 – C. t. thysbe larval epidermis setae.
Dataset for Influence of ecological and social factors on huddling behaviour and cluster organisation in Japanese macaques (Macaca fuscata)
<p>Dataset for Influence of ecological and social factors on huddling behaviour and cluster organisation in Japanese macaques (Macaca fuscata)</p> <p><span>Huddling behaviour is present in many animal species. This behaviour involves maintaining close physical contact with conspecifics to minimise heat loss and, in general, reduce energy expenditure. Additionally, this behaviour also facilitates complex social interactions within a population. In Japanese macaques, this behaviour is observed in many populations across Japan, including Shodoshima, where huddling clusters can reach up to 100 individuals in winter. Based on several studies on this species, it appears that huddling, or <span> </span>in Japanese, is influenced by both meteorological factors and social relationships between individuals. The objective of this study is to understand the determinants that drive the expression, variation, and organisation of huddling behaviour. Two hypotheses were formulated. The first hypothesis posits that the formation and variations in the size and number of clusters are influenced by meteorological factors, while the second hypothesis suggests that the number and position of individuals within a cluster is related to existing relationships between individuals. To test these, data on the number, size, and individuals composing a cluster were collected, allowing building huddling social networks. Simultaneously, meteorological measurements were taken, along with observations on dominance and grooming interactions between individuals. This allowed us to create several statistical models and social networks for comparison. Our results suggest that the initiation of huddling is mainly related to solar radiation energy, while variations in number and size could be explained by temperature. Moreover, the organisation within a cluster is not random but reflects relationships between individuals. However, it is not a single parameter but rather a combination of social relationships that underpin the organisation of individuals within clusters.</span></p>
FIGS 14 in species of Australian cockroaches in the genus Paratemnopteryx Saussure (Blattaria, Blattellidae, Blattellinae), and a discussion of some behavioural observations with respect to the evolution and ecology of cave life
FIGS 14±17. Paratemnopteryx weinsteini sp. n., male: (14) right tegmen; (15) supraanal plate and paraprocts, ventral view; (16) subgenital plate, styles, and phallomeres, dorsal view. Female: (17) ooÈtheca. Scale bars represent 1 mm.
Fig.13 in Study on behavioural ecology of Ditomus calydonius Rossi, 1790 (Coleoptera: Carabidae: Ditomina), a strictly granivorous ground beetle with brood care
Fig.13. Distribution in the year of Ditomus population activity (dotted line) compared with the phenogram of thevegetative phases of Daucus carota. Рис.13. ГодоваЯ динамика активности D. calydonius (пунктирнаЯ линиЯ) сопрЯжённаЯ с фенограммой вегетативных фаЗ Daucus carota.
Fig. 9. Daily activity rhythm observed during two nights, August 20–21 and September 25–26 in Study on behavioural ecology of Ditomus calydonius Rossi, 1790 (Coleoptera: Carabidae: Ditomina), a strictly granivorous ground beetle with brood care
Fig. 9. Daily activity rhythm observed during two nights, August 20–21 and September 25–26, by visually inspecting the umbels every hour (all zones of the study area). Рис. 9. СуточнаЯ активность D. calydonius, наблюдаемаЯ в течение двух ночей 20–21 августа и 25–26 сентЯбрЯ, по реЗультатам виЗуального осмотра Зонтиков Daucus череЗ каждый час (даные длЯ всех исследованных Зон).
Fig. 1 in Study on behavioural ecology of Ditomus calydonius Rossi, 1790 (Coleoptera: Carabidae: Ditomina), a strictly granivorous ground beetle with brood care
Fig. 1. Male (left) and female (right) of D. calydonius, dark coloured sexually mature adults. Note the outstanding sexual dimorphism. Рис. 1. Самец (слева) и самка (справа) D. calydonius, половоЗрелые вЗрослые особи тёмного цвета (обратите внимание на выраженный половой диморфиЗм).
Fig. 10 in Study on behavioural ecology of Ditomus calydonius Rossi, 1790 (Coleoptera: Carabidae: Ditomina), a strictly granivorous ground beetle with brood care
Fig. 10. Intrahabitat migration. Recordings of individuals in the four zones of the study area. Zone C was at the top of the slope, zone O 20 m height below, not far from the bottom of the valley. Рис. 10. МиграциЯ особей D. calydonius в пределах одного биотопа между четырьмЯ исследованными Зонами (Зона C — на верШине склона, Зона O — на 20 м ниже, недалеко от дна долины).
Fig. 2 in Study on behavioural ecology of Ditomus calydonius Rossi, 1790 (Coleoptera: Carabidae: Ditomina), a strictly granivorous ground beetle with brood care
Fig. 2. Climatogram of the study area around Cosenza plotted against the Ditomus phenogram obtained 1989/90 by pitfall trapping and the gonadal status of the 13 captured individuals (columns). The precipitation data (monthly medium values) have been found in Ciancio [1971]. Рис. 2. Климатограмма района исследований в окрестностЯх КоЗенца, сопрЯжённаЯ с фенограммой D. calydonius, постоенной на основании репродуктивного статуса 13 особей, отловленных почвенными ловуШками в 1989/90 гг. СреднемесЯчные ЗначениЯ осадков даны по Ciancio [1971].
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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.