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1,509 results for “Host associated”
Figs 115–128 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 115–128. Forewing (♀): 115. Binodoxys heraclei. 116. Diaeretiella rapae. 117. Diaeretus leucopterus. 118. Ephedrus cerasicola. 119. Ephedrus chaitophori. 120. Ephedrus helleni. 121. Ephedrus lacertosus. 122. Ephedrus nacheri. 123. Ephedrus niger. 124. Ephedrus persicae. 125. Ephedrus plagiator. 126. Lipolexis gracilis. 127. Lysiphlebus cardui. 128. Lysiphlebus confusus.
Figs 62–72 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 62–72. Antenna (♀): 62. Toxares deltiger. 63. Trioxys asiaticus. 64. Trioxys cirsii. 65. Trioxys complanatus. 66. Trioxys curvicaudus. 67. Trioxys metacarpalis. 68. Trioxys moshei. 69. Trioxys pallidus. 70. Trioxys pannonicus. 71. Trioxys pappi. 72. Trioxys tanaceticola.
Figs 16–30 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 16–30. Antenna (♀): 16. Aphidius rhopalosiphi. 17. Aphidius rosae. 18. Aphidius salicis. 19. Aphidius setiger. 20. Aphidius smithi. 21. Aphidius stigmaticus. 22. Aphidius transcaspicus. 23. Aphidius urticae. 24. Aphidius uzbekistanicus. 25. Areopraon lepelleyi. 26. Binodoxys acalephae. 27. Binodoxys angelicae. 28. Binodoxys brevicornis. 29. Binodoxys heraclei. 30. Diaeretiella rapae.
Figs 157–170 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 157–170. Forewing (♀): 157. Praon orpheusi. 158. Praon pubescens. 159. Praon rosaecola. 160. Praon unitum. 161. Praon uroleucon. 162. Praon volucre. 163. Praon yomenae. 164. Toxares deltiger. 165. Trioxys asiaticus. 166. Trioxys cirsii. 167. Trioxys complanatus. 168. Trioxys curvicaudus. 169. Trioxys metacarpalis. 170. Trioxys moshei.
Figs. 2–5 in New record of Machaeriobia machaerii (Kieffer, 1913) (Diptera, Cecidomyiidae) in Brazil and association with host-plant species
Figs. 2–5. Diagnostic characters of Machaeriobia machaerii in the specimens from Ribeirão Preto, São Paulo State. 2. Simple tarsal claws, 3. One-segmented palpus, 4. Bulbous ovipositor of female pupa, 5. Larval thoracic spatula.
Fig. 5. Native plant hosting M in Distribution, habitat use and plant associations of Moluchia brevipennis (Saussure, 1864) (Blattodea: Ectobiidae): an endemic cockroach from Chilean Mediterranean Matorral biome
Fig. 5. Native plant hosting M. brevipennis cockroaches at our study site. (A) Cockroaches feeding pollen from Oenothera acaulis (Onagraceae) flowers, (B) Puya venusta (Bromeliaceae) inflorescences with cockroaches reaching nectar sources, (C) Carpobrotus chilensis (Aizoaceae) with cockroach inside inflorescence and climbing branch, (D) Haplopappus chrysantemifolius (Asteraceae) with adult and nymphs feeding on florets from floral head, black bar indicates a 1 cm scale.
Figures 6–7 in First records, phenology, habitat, and host-plant associations of Macrotera opuntiae (Cockerell) (Hymenoptera: Andrenidae) in Montana
Figures 6–7. Habitat in the Pryor Mountains near which Macrotera (Cockerellula) opuntiae (Cockerell) were collected. 6. View of sandstone ridges with "turtle backs" (i.e., polygonal joints from stress cracks). 7. Another view of sandstone ridges with "turtle backs".
Figure 5 in First records, phenology, habitat, and host-plant associations of Macrotera opuntiae (Cockerell) (Hymenoptera: Andrenidae) in Montana
Figure 5. Known geographic distribution of Macrotera (Cockerellula) opuntiae (Cockerell) in North America. Circles = new records from this study, triangles = literature records (centroids used for El Paso and Jefferson County, CO, literature records: Scot et al., 2011).
Figures 1–4 in First records, phenology, habitat, and host-plant associations of Macrotera opuntiae (Cockerell) (Hymenoptera: Andrenidae) in Montana
Figures 1–4. Photos of Macrotera (Cockerellula) opuntiae (Cockerell); ♀ from the Pryor Mountains and ♂ from Makoshika State Park. 1. Lateral habitus of female. 2. Lateral habitus of male. 3. Face of female. 4. Face of male (figures 1–4: scale bar = 1 mm).
Figure 4 in Nikolaj Livanow's historical collection sheds new light on potential local extinctions and host association in Hirudinea
Figure 4. Historical sample of Acanthobdella peledina Grube, 1851 (lot EEZM 387 "Onega Lake. N. Livanow, 1902"). These specimens are the only preserved part of Livanow's general sample that was used for preparation of the classical monograph on this species (Livanow 1906). (a) Anterior part of the incomplete specimen and trace of its lost posterior part by albumin-gelatin gel. (b-d) Three complete specimens. Scale bar = 2.5 mm. Photo: T. A. Eliseeva and A. V. Bespyatykh.
Figure 3 in Nikolaj Livanow's historical collection sheds new light on potential local extinctions and host association in Hirudinea
Figure 3. Extract from the Systematic Catalogue of Collections and Preparations of Invertebrates of the Zootomy Cabinet Museum of the Imperial Kazan University (Meyer 1915). (a) Title page. (b) Selected entries [In Russian] for the specimens under discussion with our English translations and remarks (red letters). Photos: T. A. Eliseeva and A. V. Bespyatykh.
Figure 2 in Nikolaj Livanow's historical collection sheds new light on potential local extinctions and host association in Hirudinea
Figure 2. Collection vials with selected samples from the historical Hirudinea collection (EEZM): (a) Acanthobdella peledina Grube, 1851 (lot EEZM 387 "Onega Lake. N. Livanow, 1902"); (b) Hirudo medicinalis Linnaeus, 1758 (lot EEZM 406-407 "Kazan. E. Meyer, 1891"); and (c) Glossiphonia grubei (Lukin & Epshtein, 1959) (lot EEZM 397 "Lake Baikal (Maloe More [Strait]). V. Garjaew, 1899"). Photos: T. A. Eliseeva and A. V. Bespyatykh.
Figure 1 in Nikolaj Livanow's historical collection sheds new light on potential local extinctions and host association in Hirudinea
Figure 1. Cabinet with the historical Hirudinea collection in the EEZM – Edward Eversman Zoology Museum and Herbarium, Kazan (Volga Region) Federal University (formerly Zootomy Cabinet Museum of the Imperial Kazan University), prepared by Nikolaj A. Livanow and Eduard A. Meyer. The red numbers indicate exposition vials with samples of Acanthobdella peledina Grube, 1851 (1), Hirudo medicinalis Linnaeus, 1758 (2), and Glossiphonia grubei (Lukin & Epshtein, 1959) (3). Photo: T. A. Eliseeva and A. V. Bespyatykh.
Figure 2 in Long forgotten record of a freshwater leech on Madagascar indicates a host-associated dispersal event from continental Africa
Figure 2. General view and labels of F. Sikora's sample of Placobdelloides multistriatus (N = 2), Andrahomana, Southern Madagascar (ZIN Hirudinea 2227). (a) Specimen No 1 (red arrow shows a rupture at the ventral side). (b) Specimen No 2. (c) Original label with locality and host data (handwritten by F. Sikora in 1899). (d) Example of the word 'Andrahomana' from a handwritten letter of F. Sikora, Fort Dauphin, 17 December 1900 (Breure 2015, fig. 55c). (e) Original label with collection number (handwritten by F. Sikora in 1899 or later). (f) Two examples of a crossed out letter 'N' from a handwritten letter of F. Sikora, Fort Dauphin, 17 December 1900 (Breure 2015, fig. 55b). (g) Secondary label containing species name with a question mark (most likely handwritten by V. Plotnikov in 1904). (h) Secondary label (most likely handwritten by E. Lukin in 1960s-1970s). Scale bar = 1.0 mm (a-b). Photos: Tatyana A. Eliseeva and Iya G. Tsiplenkina.
Figure 3 in Long forgotten record of a freshwater leech on Madagascar indicates a host-associated dispersal event from continental Africa
Figure 3. External morphology of a Placobdelloides multistriatus specimen from F. Sikora's sample, Andrahomana, Southern Madagascar (ZIN Hirudinea 2227: specimen No 2). (a) Dorsal view. (b) Ventral view. (c) Anterior region (dorsal view). Abbreviations: MO, mouth; AS, anterior sucker; PS, posterior sucker; MS, traces of the median light (aureate) stripe; mg, male gonopore; and fg, female gonopore. Body somites are indicated by roman numerals; symbols a1, a2, and a3 indicate the number of annulus. Scale bars = 1.0 mm (a-b) and 0.5 mm (c). Photos: Tatyana A. Eliseeva; graphics: Ivan N. Bolotov.
Figure 1 in Long forgotten record of a freshwater leech on Madagascar indicates a host-associated dispersal event from continental Africa
Figure 1. Range map of Placobdelloides multistriatus. The light red filling indicates country-level records from continental Africa and Western Asia (Oosthuizen 1979; Al-Safadi and El-Shimy 1993; Leslie et al. 2011); the red star indicates F. Sikora's record from Madagascar discussed herein. Map: Mikhail Y. Gofarov.
Fig. 3 in Effects of latitude, host body size, and host trophic guild on patterns of diversity of helminths associated with humans, wild and domestic mammals of Mexico
Fig. 3. Phylogenetic generalized least squares (PGLS) regression of host body mass (values were log-transformed) with richness of helminths associated to wildlife hosts (values were corrected for sampling effort).
Fig. 2 in Effects of latitude, host body size, and host trophic guild on patterns of diversity of helminths associated with humans, wild and domestic mammals of Mexico
Fig. 2. Relationships between latitude and the average taxonomic distinctness of overall helminths (A) and nematodes (B).
Fig. 9. A in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 9. A species delimitation of Bornean Myrsidea studied inferred from a partial sequence of the mitochondrial COI gene. Validation methods shown on Bayesian tree of hypothetical species. Colors represent unique partitions and correspond to operational taxonomic units (OTU) by various methods of species delimitation: morphological, Automatic Barcode Gap Discovery (ABGD), Generalized Mixed Yule Coalescent analyses (GMYC), and Poisson Tree Process analyses (PTP) respectively.
Fig. 10 in Diversity and host associations of Myrsidea chewing lice (Phthiraptera: Menoponidae) in the tropical rainforest of Malaysian Borneo
Fig. 10. Tanglegram of phylogenies of Bornean avian host (left) and associated Myrsidea lice (right) studied. Colored circles above nodes indicate cospeciation events recovered from Jane (they correspond to 83% of the solutions with p-value of 0.001). Arrow indicates a host switching event recovered by Jane. Red lines indicate significant host-parasite links estimated by the ParaFitLink1 test.
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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)
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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.