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135 results for “Imitation”
Glass Imitations of Stones in the Roman Period and their Reinterpretation in the Modern Era (PID2020-117299GB-I00), acronym LAPISVITRUMQUE [Dataset]
<p>The forms collect information on the pieces included in the Project “Glass Imitations of Stones in the Roman Period and their Reinterpretation in the Modern Era” (PID2020-117299GB-I00), acronym: LAPISVITRUMQUE, funded by MCIN/ AEI/10.13039/501100011033. There are three forms: one for glass (Tabla_vidrio), another for precious and ornamental stones (Tabla_piedras), and a third that relates the two (Tabla_correlacion). The first two include data related to the pieces themselves and the third seeks to compare glass and stone through various filters by set, group, class, colour and quality. This form is constantly being updated as new information is added. In the case of glass, it can be used to determine the shapes imitated in their decoration and the type of ornamental rocks or precious stones they imitate. And in the case of stone productions (<em>instrumenta domestica</em>, personal ornaments, etc.) to contrast their appearance or not in glass.</p>
Figure 2 in A new species of Myrmecotypus Pickard-Cambridge spider (Araneae: Corinnidae: Castianeirinae) from the Bolivian orocline, imitating one of the world's most aggressive ants
Figure 2. Myrmecotypus rubrofemoratus new species: Holotype male (IBSI-Ara 1507), dorsal.
Urine washing and urinary odor profiles in relation to dominance rank status in wild male capuchin monkeys (Cebus imitator)
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Data from: Do people imitate when making decisions? - evidence from a spatial prisoners dilemma experiment
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Using machine learning to distinguish between authentic and imitation Jackson Pollock poured paintings: Art images
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FIGURE 7. Sampling localities for Desmognathus imitator and D in Towards rectifying limitations on species delineation in dusky salamanders (Desmognathus: Plethodontidae): An ecoregion-drainage sampling grid reveals additional cryptic clades
FIGURE 7. Sampling localities for Desmognathus imitator and D. aeneus, symbols match those in Fig. 5B and 5C respectively.
Data from: Mimetic divergence and the speciation continuum in the mimic poison frog Ranitomeya imitator
While divergent ecological adaptation can drive speciation, understanding the factors that facilitate or constrain this process remains a major goal in speciation research. Here, we study two mimetic transition zones in the poison frog Ranitomeya imitator, a species that has undergone a Müllerian mimetic radiation to establish four morphs in Peru. We find that mimetic morphs are strongly phenotypically differentiated, producing geographic clines with varying widths. However, distinct morphs show little neutral genetic divergence, and landscape genetic analyses implicate isolation-by-distance as the primary determinant of among-population genetic differentiation. Mate choice experiments suggest random mating at the transition zones, although certain allopatric populations show a preference for their own morph. We present evidence that this preference may be mediated by color-pattern specifically. These results contrast with an earlier study of a third transition zone, in which a mimetic shift was associated with reproductive isolation. Overall, our results suggest that the three known mimetic transition zones in R. imitator reflect a speciation continuum, which we have characterized at the geographic, phenotypic, behavioral, and genetic level. We discuss possible explanations for variable progress toward speciation, suggesting that multifarious selection on both mimetic color-pattern and body size may be responsible for generating reproductive isolation.
Imitation Gnathian Bowl
Location: Museo Archeologico di Aidone, Aidone, Sicily, Italy Catalogue Number: 57-2557 Description: Imitation Gnathian Bowl Data Capture Method: Photogrammetry Processing Software: Reality Capture Citation: The data for this project were originally collected as a joint effort between the University of Catania and CVAST at the University of South Florida (USF), with the collaboration of the Fondazione Bruno Kessler (FBK). Dr. Mariarita Sgarlata and Dr. Herbert Maschner, Principal Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data have been transferred to Global Digital Heritage (GDH) for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, Herbert Maschner, Principal Investigator. Source: Objaverse 1.0 / Sketchfab
Vocal imitations of non-vocal sounds
<p>Vocal imitations of everyday sounds. There are two families (interactions and products), 10 imitators (I#), 8 categories, and 2 sounds per categories</p>
FIGURE 4. Rheumatobates imitator. a in The Rheumatobates Bergroth, 1892 (Hemiptera: Heteroptera: Gerridae) of Colombia, including the description of R. plumipes n. sp. and a key to represented species
FIGURE 4. Rheumatobates imitator. a. dorsal view of apterous male. b. dorsal view of apterous female.
FIGURES 8–9 in Association and description of the male of Aplochares imitator (Smith) (Hymenoptera: Pompilidae)
FIGURES 8–9. Aplochares imitator; Fig. 8. Male, subgenital plate; and Fig. 9. Male genitalia, dorsal right, ventral left.
FIGURES 1–5 in Association and description of the male of Aplochares imitator (Smith) (Hymenoptera: Pompilidae)
FIGURES 1–5. Aplochares imitator; Fig. 1. Habitus, female; Fig. 2. Habitus, male; Fig. 3. Face, female; Fig. 4. Face, male; and Fig 5. Mesosoma and legs, male, dorsal view.
Nabataean painted juglet (imitation)
Imitation Nabataean painted juglet Source: Objaverse 1.0 / Sketchfab
On following pages: 18. Spix's White-fronted Capuchin (Cebus unicolon; 19. Humboldt's White-fronted Capuchin 22. Venezuelan Brown Capuchin (Cebus brunneus); 23. Sierra de Perija White-fronted Capuchin (Cebus leucocephalus versicolon; 26. Santa Marta White-fronted Capuchin (Cebus malitiosus); 27. Ecuadorian White-fronted Capuchin Capuchin (Cebus imitator). (Cebus albifrons); 20. Guianan Weeper Capuchin (Cebus olivaceus); 21. Ka'apor Capuchin (Cebus kaapori);); 24. Rio Cesar White-fronted Capuchin (Cebus cesarae); 25. Varied White-fronted Capuchin (Cebus (Cebus aequatorialis); 28. Colombian White-faced Capuchin (Cebus capucinus); 29. Panamanian White-faced in Cebidae
On following pages: 18. Spix's White-fronted Capuchin (Cebus unicolon; 19. Humboldt's White-fronted Capuchin 22. Venezuelan Brown Capuchin (Cebus brunneus); 23. Sierra de Perija White-fronted Capuchin (Cebus leucocephalus versicolon; 26. Santa Marta White-fronted Capuchin (Cebus malitiosus); 27. Ecuadorian White-fronted Capuchin Capuchin (Cebus imitator). (Cebus albifrons); 20. Guianan Weeper Capuchin (Cebus olivaceus); 21. Ka'apor Capuchin (Cebus kaapori);); 24. Rio Cesar White-fronted Capuchin (Cebus cesarae); 25. Varied White-fronted Capuchin (Cebus (Cebus aequatorialis); 28. Colombian White-faced Capuchin (Cebus capucinus); 29. Panamanian White-faced
On following pages: 218. Kalinga Shrew Mouse (Soricomys kalinga); 219. Leonardo Shrew Mouse (Soricomys leonardocoi); 220. Mountain Shrew Mouse (Soricomys montanus); 221. Sierra Madre Shrew Mouse (Soricomys musseri); 222. Sundaic Ranee Mouse (Haeromys pusillus); 223. Margaret's Ranee Mouse (Haeromys margarettae); 224. Lowland Sulawesi Ranee Mouse (Haeromys minahassae); 225. Papuan Highland Brush Mouse (Abeomelomys sevia); 226. Uneven-toothed Rat (Anisomys imitator); 227. Mountain Water Rat (Baiyankamys habbema); 228. Shaw Mayer's Water Rat (Baiyankamys shawmayeri); 229. \White-toothedMouse (Brassomys albidens); 230. Forbes's Tree Mouse (Chiruromys forbesi); 231. Broad-headed Tree Mouse (Chiruromys lamia); 232. Lesser Tree Mouse (Chiruromys vates); 233. Tawny Brush Mouse (Coccymys kirrhos); 234. Rimmler's Brush Mouse (Coccymys ruemmleri); 235. Central Cordillera Brush Mouse (Coccymys shawmayeri), 236. Earless New Guinea Water Rat (Crossomys moncktoni); 237. Common Water Rat (Hydromys chrysogasten; 238. Husson's Water Rat (Hydromys hussoni); 239. New Britain Water Rat (Hydromys neobritannicus); 240. Ziegler's Water Rat (Hydromys ziegleri); 241. Western White-eared Giant Rat (Hyomys dammermani); 242. Eastern White-eared Giant Rat (Hyomys goliath); 243. Arfak Water Rat (Leptomys arfakensis), 244. Elegant Water Rat (Leptomys elegans); 245. Ernst Mayr's Water Rat (Leptomys ernstmayri); 246. Small Water Rat (Leptomys paulus); 247. Fly River Water Rat (Leptomys signatus). in Muridae
On following pages: 218. Kalinga Shrew Mouse (Soricomys kalinga); 219. Leonardo Shrew Mouse (Soricomys leonardocoi); 220. Mountain Shrew Mouse (Soricomys montanus); 221. Sierra Madre Shrew Mouse (Soricomys musseri); 222. Sundaic Ranee Mouse (Haeromys pusillus); 223. Margaret's Ranee Mouse (Haeromys margarettae); 224. Lowland Sulawesi Ranee Mouse (Haeromys minahassae); 225. Papuan Highland Brush Mouse (Abeomelomys sevia); 226. Uneven-toothed Rat (Anisomys imitator); 227. Mountain Water Rat (Baiyankamys habbema); 228. Shaw Mayer's Water Rat (Baiyankamys shawmayeri); 229. \White-toothedMouse (Brassomys albidens); 230. Forbes's Tree Mouse (Chiruromys forbesi); 231. Broad-headed Tree Mouse (Chiruromys lamia); 232. Lesser Tree Mouse (Chiruromys vates); 233. Tawny Brush Mouse (Coccymys kirrhos); 234. Rimmler's Brush Mouse (Coccymys ruemmleri); 235. Central Cordillera Brush Mouse (Coccymys shawmayeri), 236. Earless New Guinea Water Rat (Crossomys moncktoni); 237. Common Water Rat (Hydromys chrysogasten; 238. Husson's Water Rat (Hydromys hussoni); 239. New Britain Water Rat (Hydromys neobritannicus); 240. Ziegler's Water Rat (Hydromys ziegleri); 241. Western White-eared Giant Rat (Hyomys dammermani); 242. Eastern White-eared Giant Rat (Hyomys goliath); 243. Arfak Water Rat (Leptomys arfakensis), 244. Elegant Water Rat (Leptomys elegans); 245. Ernst Mayr's Water Rat (Leptomys ernstmayri); 246. Small Water Rat (Leptomys paulus); 247. Fly River Water Rat (Leptomys signatus).
FIGURE 6 in Morphological redescription of Culex (Microculex) davisi and Cx. (Mcx.) imitator (Diptera: Culicidae) including structures and stages not previously described
FIGURE 6. Larva of Culex (Mcx.) davisi. A, head. B, thorax and abdominal segments I–VI. C, abdominal segments VII–X. a = antenna; APP = anal papilla; CS = comb scale; Dm = dorsomentum; M = mesothorax; P = prothorax; PS = pecten spine; S = siphon; T = metathorax; I–X = abdominal segments.
FIGURE 1 in Morphological redescription of Culex (Microculex) davisi and Cx. (Mcx.) imitator (Diptera: Culicidae) including structures and stages not previously described
FIGURE 1. Dorsal views of scutum of: A, Culex (Mcx.) imitator of the present study. B, Culex (Mcx.) davisi Kumm. C, Culex (Mcx.) imitator Theobald (1903). D, Culex (Mcx.) imitator of Kumm (1933).
FIGURE 2. Genitalia. A in Morphological redescription of Culex (Microculex) davisi and Cx. (Mcx.) imitator (Diptera: Culicidae) including structures and stages not previously described
FIGURE 2. Genitalia. A, female Culex (Mcx.) imitator. B, male Culex (Mcx.) imitator, 1. detail of the subapical lobe; 2. detail of the tergum IX. C, female Culex (Mcx.) davisi. D: male Culex (Mcx.) davisi, 1. detail of the subapical lobe; 2. detail of the tergum IX. Ce = cercus; GC = gonocoxite; Gs = gonostylus; I = insula; PGL = postgenital lobe; SL = subapical lobe; UVL = upper vaginal lip; IX-Te = tergum IX.
FIGURE 5 in Morphological redescription of Culex (Microculex) davisi and Cx. (Mcx.) imitator (Diptera: Culicidae) including structures and stages not previously described
FIGURE 5. Pupa of Culex (Mcx.) davisi. A, cephalothorax. B, metanotum and abdomen. GL = genital lobe. Mtn – metanotum; Pa = paddle; T = trumpet; I–VIII = abdominal segments.
FIGURE 4 in Morphological redescription of Culex (Microculex) davisi and Cx. (Mcx.) imitator (Diptera: Culicidae) including structures and stages not previously described
FIGURE 4. Larva of Culex (Mcx.) imitator. A, head. B, thorax and abdominal segments I–VI. C, abdominal segments VII–X. a = antenna; APP = anal papilla; CS = comb scale; Dm = dorsomentum; M = mesothorax; P = prothorax; PS = pecten spine; S = siphon; T = metathorax; I–X= abdominal segments.
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International Brain Laboratory public data
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OpenNeuro
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