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3,507 results for “Species identification”
Fig. 4 in Redescription and taxonomic notes on Cyclops bohater Koźmiński, 1933 and Cyclops lacustris G.O. Sars, 1863 (Arthropoda, Crustacea), with an identification key to the Cyclops species of Fenno-Scandinavia
Fig. 4. Cyclops bohater Koźmiński, 1933, Ƌ. A. Habitus, dorsal. B. Prosome with distinctly wide pediger 2. C. Pediger 5, genital segment, and first abdominal segment, ventral. D−E. Antennal coxobasis. D. Frontal. E. Caudal. F. Labrum. Except for B (Lake Largen, Sweden ̅ MIZ 2/2016/15) all drawings show a paralectotype (NHMUK 2016. 40). Scale bars: A̅B = 500 µm; C̅F = 100 µm.
Fig. 5 in A revision of the genus Rhinotorus Förster, 1869 (Hymenoptera, Ichneumonidae, Ctenopelmatinae), with descriptions of three new species and an illustrated identification key
Fig. 5. Rhinotorus compactor (Thumberg, 1822). A. ♀ face. B. ♂ face. C. ♂ genitalia. D. Propodeum. E. Metasoma dorsally. F. Head dorsally. G. Ovipositor. H. Mesopleuron. I. Habitus.
Figures 91-96 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 91-96 Hymenoepimecis spp. 91, 92 fore wing, showing colour pattern. (91) H. veranii (92) H. argyraphaga93H. robertsae, propodeum and hind leg, showing colour pattern, lateral view 94H. heteropus, propodeum and metasoma, showing colour pattern, lateral view 95H. amazonensis (female), tarsal claw, lateral view 96H. argyraphaga, mesosoma, lateral view: Arrow "A" shows epicnemial carina and arrow "B" shows submetapleural carina.
Figures 76-90 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 76-90 Tarsal claws of Hymenoepimecis spp. (females), lateral view 76H. andina sp. nov. (holotype) 77H. bicolor78H. castilloi sp. nov. (holotype) 79H. dolichocarinata sp. nov. (holotype) 80H. duckensis81H. ecuatoriana sp. nov. (holotype) 82H. kleini83H. longilobus sp. nov. (holotype) 84H. manauara85H. neotropica86H. pucallpina sp. nov. (holotype) 87H. rafaelmartinezi sp. nov. (holotype) 88H. ribeiroi89H. tedfordi90H. uberensis.
Figures 72-75 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 72-75 Habitus of Hymenoepimecis spp. (females), lateral view 72H. rafaelmartinezi sp. nov. (holotype) 73H. ribeiroi74H. tedfordi75H. uberensis.
Figures 61-66 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 61-66 Habitus of Hymenoepimecis spp. (females), lateral view 61H. andina sp. nov. (holotype) 62, H. bicolor63H. castilloi sp. nov. (holotype) 64H. dolichocarinata sp. nov. (holotype) 65H. duckensis66H. ecuatoriana sp. nov. (holotype).
Figures 31-45 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 31-45 Head and part of mesosoma of Hymenoepimecis spp. (females), lateral view 31H. andina sp. nov. (holotype) 32H. bicolor33H. castilloi sp. nov. (holotype) 34H. dolichocarinata sp. nov. (holotype), arrow shows the epicnemial carina 35H. duckensis36H. ecuatoriana sp. nov. (holotype) 37H. kleini38H. longilobus sp. nov. (holotype) 39H. manauara40H. neotropica41H. pucallpina sp. nov. (holotype) 42H. rafaelmartinezi sp. nov. (holotype) 43H. ribeiroi44H. tedfordi, arrow shows the epicnemial carina 45H. uberensis.
Figures 46-60 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 46-60 Sternite I of Hymenoepimecis spp. (females), lateral view 46H. andina sp. nov. (holotype) 47H. bicolor48H. castilloi sp. nov. (holotype) 49H. dolichocarinata sp. nov. (holotype) 50H. duckensis51H. ecuatoriana sp. nov. (holotype) 52H. kleini53H. longilobus sp. nov. (holotype) 54H. manauara55H. neotropica56H. pucallpina sp. nov. (holotype) 57H. rafaelmartinezi sp. nov. (holotype) 58H. ribeiroi59H. tedfordi60H. uberensis.
Figures 67-71 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 67-71 Habitus of Hymenoepimecis spp. (females), lateral view 67H. kleini68H. longilobus sp. nov. (holotype) 69H. manauara70H. neotropica71H. pucallpina sp. nov. (holotype).
Figures 103-106 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 103-106 Habitus of Hymenoepimecis spp. (males), lateral view 103H. manauara104H. rafaelmartinezi sp. nov. (paratype) 105H. ribeiroi106H. uberensis.
Figures 16-30 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 16-30 Heads of Hymenoepimecis spp. (females), dorsal view 16H. andina sp. nov. (holotype) 17H. bicolor18H. castilloi sp. nov. (holotype) 19H. dolichocarinata sp. nov. (holotype) 20H. duckensis21H. ecuatoriana sp. nov. (holotype) 22H. kleini23H. longilobus sp. nov. (holotype) 24H. manauara25H. neotropica26H. pucallpina sp. nov. (holotype) 27H. rafaelmartinezi sp. nov. (holotype) 28H. ribeiroi29H. tedfordi30H. uberensis.
Figures 97-102 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 97-102 Habitus of Hymenoepimecis spp. (males), lateral view 97H. andina sp. nov. (paratype) 98H. bicolor99H. dolichocarinata sp. nov. (paratype) 100H. duckensis101H. kleini102H. longilobus sp. nov. (paratype).
Figures 1-15 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 1-15 Heads of Hymenoepimecis spp. (females), frontal view 1H. andina sp. nov. (holotype) 2H. bicolor3H. castilloi sp. nov. (holotype) 4H. dolichocarinata sp. nov. (holotype) 5H. duckensis6H. ecuatoriana sp. nov. (holotype) 7H. kleini8H. longilobus sp. nov. (holotype) 9H. manauara10H. neotropica11H. pucallpina sp. nov. (holotype) 12H. rafaelmartinezi sp. nov. (holotype) 13H. ribeiroi14H. tedfordi15H. uberensis.
Fig. 2 in Triplectides Kolenati (Trichoptera: Leptoceridae) from Brazil: A new species, new records and an identification key
Fig. 2. Triplectides nessimiani Desidério & Pes sp. nov., ♂ genitalia, holotype (INPA-TRI 000014). A. Lateral view. B. Dorsal view. C. Ventral view. D. Phallic apparatus, lateral view. E. Phallotremal sclerite, dorsal view. Scale bars = 0.2 mm.
Fig. 1 in Triplectides Kolenati (Trichoptera: Leptoceridae) from Brazil: A new species, new records and an identification key
Fig. 1. Triplectides nessimiani Desidério & Pes sp. nov., ♂ holotype (INPA-TRI 000014). A. Dorsal habitus. B. Venation of the forewing. C. Venation of the hind wing. Scale bars = 2 mm.
Fig. 3 in Triplectides Kolenati (Trichoptera: Leptoceridae) from Brazil: A new species, new records and an identification key
Fig. 3. Distribution of Triplectides species treated in this study and general view of the streams where Triplectides nessimiani Desidério & Pes sp. nov. was collected. A. Distribution map of T. neblinus, T. nessimiani Desidério & Pes sp. nov. and T. nevadus. B. Igarapé da Anta, Amazonas, Brazil, stream where T. nessimiani Desidério & Pes sp. nov. holotype was collected. C. First order stream, Amazonas, Brazil, collection site of T. nessimiani Desidério & Pes sp. nov. paratype.
Data-driven identification of reliable sensor species to predict regime shifts in ecological networks
<p>Signals of critical slowing down are useful for predicting impending transitions in ecosystems. However, in a system with complex interacting components not all components provide the same quality of information to detect system-wide transitions. Identifying the best indicator species in complex ecosystems is a challenging task when a model of the system is not available. In this paper, we propose a data-driven approach to rank the elements of a spatially-distributed ecosystem based on their reliability in providing early-warning signals of critical transitions. The proposed method is rooted in experimental modal analysis techniques traditionally used to identify structural dynamical systems. We show that one could use natural system fluctuations and the system responses to small perturbations to reveal the slowest direction of the system dynamics and identify indicator regions that are best suited for detecting abrupt transitions in a network of interacting components. The approach is applied to several ecosystems to demonstrate how it successfully ranks regions based on their reliability to provide early-warning signals of regime shifts. The significance of identifying the indicator species and the challenges associated with ranking nodes in networks of interacting components are also discussed.</p>
Figure 6 in Morphology, natural history and molecular identification of tadpoles of three endemic frog species of Nyctibatrachus Boulenger, 1882 (Anura: Nyctibatrachidae) from Central Western Ghats, India
Figure 6. Principal component analysis of morphometric data of tadpoles of N. jog, N. kempholeyensis and N. kumbara.
Figure 7 in Morphology, natural history and molecular identification of tadpoles of three endemic frog species of Nyctibatrachus Boulenger, 1882 (Anura: Nyctibatrachidae) from Central Western Ghats, India
Figure 7. Oral apparatus of Lankanectes corrugatus tadpole. Scale bar is 1 mm. Image courtesy of Kanishka D.B. Ukuwela.
Figure 5 in Morphology, natural history and molecular identification of tadpoles of three endemic frog species of Nyctibatrachus Boulenger, 1882 (Anura: Nyctibatrachidae) from Central Western Ghats, India
Figure 5. Tadpole of N. kumbara, BNHS 5914. (a) Dorsal view; (b) ventral view; (c) lateral view; (d) mouth part (not to scale).
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.