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17 results for “Dracula”
Data from: Dracula's ménagerie: A multispecies occupancy analysis of lynx, wildcat, and wolf in the Romanian Carpathians
<p>The recovery of terrestrial carnivores in Europe is a conservation success story. Initiatives focused on restoring top predators, require information on how resident species may interact with the re-introduced species as their interactions have the potential to alter food webs, yet such data are scarce for Europe.</p> <p>In this study, we assessed patterns of occupancy and interactions between three carnivore species in the Romanian Carpathians. Romania houses one of the few intact carnivore guilds in Europe, making it an ideal system to assess intraguild interactions, and serve as a guide for reintroductions elsewhere.</p> <p>We used camera trap data from two seasons in Transylvanian forests to assess occupancy and co-occurrence of carnivores using multispecies occupancy models.</p> <p>Mean occupancy in the study area was highest for lynx ( <span>Y</span><sub>winter</sub>= 0.76 95% CI: 0.42-0.92; <span>Y</span>autumn= 0.71 CI: 0.38-0.84) and wolf (<span>Y</span><sub>winte</sub>r= 0.60 CI: 0.34-0.78; <span>Y</span><sub>autum</sub>n= 0.81 CI: 0.25-0.95) and lowest for wildcat (<span>Y</span><sub>winter</sub>= 0.40 CI: 0.19-0.63; <span>Y</span><sub>autumn</sub>= 0.52 CI: 0.17-0.78)</p> <p>We found that marginal occupancy predictors for carnivores varied between seasons. We also found differences in predictors of co-occurrence between seasons for both lynx-wolf and wildcat-wolf co-occurrence. For both seasons, we found that conditional occupancy probabilities of all three species were higher when another species was present.</p> <p>Our results indicate that while there are seasonal differences in predictors of occupancy and co-occurrence of the three species, co-occurrence in our study area is high, and is dependent on the existence of continuous, relatively undisturbed forests.</p> <p>Terrestrial carnivore recovery efforts are ongoing worldwide. Insights into interspecific relations between carnivore species are critical when considering the depauperate communities they are introduced in. Our work showcases that apex carnivore coexistence is possible, but dependent on protection afforded to forest habitats and their prey base.</p>
Data from: Dracula’s ménagerie: A multispecies occupancy analysis of lynx, wildcat, and wolf in the Romanian Carpathians
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FIGURE 27A–F. Patrera dracula n in An update of morphological and distributional data of the genus Patrera Simon (Araneae: Anyphaenidae: Anyphaeninae) with the description of twenty-five new species from Colombia
FIGURE 27A–F. Patrera dracula n. sp. Male (ICN-Ar-9556): A habitus, dorsal view; B chelicerae, dorsal view; C chelicerae, ventral view; D left palp, retroventral view; E palp, ventral view; F palp, retrolateral view. Abbreviations: Cdp, cheliceral dorsal projection; Cvp, cheliceral ventral projection. Scale bars: A: 2mm; B–C: 1mm; D: 0.5mm; E–F: 0.2mm.
Data from: Disentangling visual and olfactory signals in mushroom-mimicking Dracula orchids using realistic three-dimensional printed flowers
Flowers use olfactory and visual signals to communicate with pollinators. Disentangling the relative contributions and potential synergies between signals remains a challenge. Understanding the perceptual biases exploited by floral mimicry illuminates the evolution of these signals. Here, we disentangle the olfactory and visual components of Dracula lafleurii, which mimics mushrooms in size, shape, color and scent, and is pollinated by mushroom-associated flies. To decouple signals, we used three-dimensional printing to produce realistic artificial flower molds that were color matched and cast using scent-free surgical silicone, to which we could add scent. We used GC-MS to measure scents in co-occurring mushrooms, and related orchids, and used these scents in field experiments. By combining silicone flower parts with real floral organs, we created chimeras that identified the mushroom-like labellum as a source of volatile attraction. In addition, we showed remarkable overlap in the volatile chemistry between D. lafleurii and co-occurring mushrooms. The characters defining the genus Dracula – a mushroom-like, 'gilled' labellum and a showy, patterned calyx – enhance pollinator attraction by exploiting the visual and chemosensory perceptual biases of drosophilid flies. Our techniques for the manipulation of complex traits in a nonmodel system not conducive to gene silencing or selective breeding are useful for other systems.
Castlevania 2 Simons Quest - Dracula's Ring
NES - Castlevania 2 Simons Quest - Dracula's Ring Source: Objaverse 1.0 / Sketchfab
On following pages: 229. Bornean White-toothed Shrew (Crocidura foetida); 230. Kinabalu White-toothed Shrew Shrew (Crocidura orientalis); 233. Bangka White-toothed Shrew (Crocidura vosmaeri); 234. Hutan White-toothed White-toothed Shrew (Crocidura lepidura); 237. Mount Malindang White-toothed Shrew (Crocidura grandis); 238. 240. Panay White-toothed Shrew (Crocidura panayensis); 241. Negros White-toothed Shrew (Crocidura negrina); 242 Palawan White-toothed Shrew (Crocidura palawanensis); 245. Javan Long-tailed White-toothed Shrew (Crocidura (Crocidura horsfieldii); 248. Sinharaja White-toothed Shrew (Crocidura hikmiya); 249. Sri Lankan White-toothed Shrew White-toothed Shrew (Crocidura fuliginosa); 252. Large White-toothed Shrew (Crocidura dracula); 253. Sumatran dsinezumi); 255. Chinese White-toothed Shrew (Crocidura rapax); 256. Ussuri White-toothed Shrew (Crocidura lasiura (Crocidura zaitsevi); 259. Indochinese White-toothed Shrew (Crocidura indochinensis); 260. Hainan White-toothed Shrew (Crocidura maxi); 263. Javan Ghost White-toothed Shrew (Crocidura umbra); 264. Sunda White-toothed Shrew (Crocidura baluensis); 231. Thick-tailed White-toothed Shrew (Crocidura brunnea); 232. Oriental White-toothed Shrew (Crocidura hutanis); 235. Beccari's White-toothed Shrew (Crocidura beccarii); 236. Sumatran Giant Mindanao White-toothed Shrew (Crocidura beata); 239. Mindoro White-toothed Shrew (Crocidura mindorus);. Luzon White-toothed Shrew (Crocidura grayi); 243. Sibuyan White-toothed Shrew (Crocidura ninoyi); 244. abscondita); 246. Gathorne's White-toothed Shrew (Crocidura gathornei); 247. Horsfield's White-toothed Shrew (Crocidura miya); 250. Lesser Ryukyu White-toothed Shrew (Crocidura watasel); 251. Southeast Asian Long-tailed White-toothed Shrew (Crocidura paradoxura); 254. Dsinezumi White-toothed Shrew (Crocidura); 257. Asian Gray White-toothed Shrew (Crocidura attenuata); 258. Zaitsev's White-toothed Shrew Shrew (Crocidura wuchihensis); 261. Timor White-toothed Shrew (Crocidura tenuis); 262. Javan White-toothed (Crocidura monticola); 265. Neglected White-toothed Shrew (Crocidura neglecta). in Soricidae
On following pages: 229. Bornean White-toothed Shrew (Crocidura foetida); 230. Kinabalu White-toothed Shrew Shrew (Crocidura orientalis); 233. Bangka White-toothed Shrew (Crocidura vosmaeri); 234. Hutan White-toothed White-toothed Shrew (Crocidura lepidura); 237. Mount Malindang White-toothed Shrew (Crocidura grandis); 238. 240. Panay White-toothed Shrew (Crocidura panayensis); 241. Negros White-toothed Shrew (Crocidura negrina); 242 Palawan White-toothed Shrew (Crocidura palawanensis); 245. Javan Long-tailed White-toothed Shrew (Crocidura (Crocidura horsfieldii); 248. Sinharaja White-toothed Shrew (Crocidura hikmiya); 249. Sri Lankan White-toothed Shrew White-toothed Shrew (Crocidura fuliginosa); 252. Large White-toothed Shrew (Crocidura dracula); 253. Sumatran dsinezumi); 255. Chinese White-toothed Shrew (Crocidura rapax); 256. Ussuri White-toothed Shrew (Crocidura lasiura (Crocidura zaitsevi); 259. Indochinese White-toothed Shrew (Crocidura indochinensis); 260. Hainan White-toothed Shrew (Crocidura maxi); 263. Javan Ghost White-toothed Shrew (Crocidura umbra); 264. Sunda White-toothed Shrew (Crocidura baluensis); 231. Thick-tailed White-toothed Shrew (Crocidura brunnea); 232. Oriental White-toothed Shrew (Crocidura hutanis); 235. Beccari's White-toothed Shrew (Crocidura beccarii); 236. Sumatran Giant Mindanao White-toothed Shrew (Crocidura beata); 239. Mindoro White-toothed Shrew (Crocidura mindorus);. Luzon White-toothed Shrew (Crocidura grayi); 243. Sibuyan White-toothed Shrew (Crocidura ninoyi); 244. abscondita); 246. Gathorne's White-toothed Shrew (Crocidura gathornei); 247. Horsfield's White-toothed Shrew (Crocidura miya); 250. Lesser Ryukyu White-toothed Shrew (Crocidura watasel); 251. Southeast Asian Long-tailed White-toothed Shrew (Crocidura paradoxura); 254. Dsinezumi White-toothed Shrew (Crocidura); 257. Asian Gray White-toothed Shrew (Crocidura attenuata); 258. Zaitsev's White-toothed Shrew Shrew (Crocidura wuchihensis); 261. Timor White-toothed Shrew (Crocidura tenuis); 262. Javan White-toothed (Crocidura monticola); 265. Neglected White-toothed Shrew (Crocidura neglecta).
Distribution. Widely distributed in South-east Asia (Myanmar, Laos, Thailand, Cambodia, S Vietnam, and Peninsular Malaysia, including offshore islands). Distribution boundary between this species and the Large White-toothed Shrew (C. dracula), especially in Myanmar or whether their distributions overlapped, is not clear. in Soricidae
Distribution. Widely distributed in South-east Asia (Myanmar, Laos, Thailand, Cambodia, S Vietnam, and Peninsular Malaysia, including offshore islands). Distribution boundary between this species and the Large White-toothed Shrew (C. dracula), especially in Myanmar or whether their distributions overlapped, is not clear.
FIGURE 1. Dracula agnosia. A. Habit. B in Dracula agnosia (Orchidaceae: Pleurothallidinae), a long confused undescribed species
FIGURE 1. Dracula agnosia. A. Habit. B. Column and lip attached to ovary. C. Upper surface of lip, lower surface of lip. D. Outer surface of petal, profile of petal, inner surface of petal. E. Dorsal sepal, lateral sepal, both with a portion of the tail removed. Drawn from the holotype Doucette 4001.
FIGURE 3 in Dracula agnosia (Orchidaceae: Pleurothallidinae), a long confused undescribed species
FIGURE 3. Comparison of species similar to Dracula agnosia. A–C. D. maduroi. D. D. agnosia Davis s.n., E. D. agnosia, Doucette 4003, F. D. agnosia, Doucette 4001. G–I. D. olmosii.
NES - Castlevania - Dracula
Source: Objaverse 1.0 / Sketchfab
Data from: Snap-jaw morphology is specialized for high-speed power amplification in the Dracula ant, Mystrium camillae
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Data from: Disentangling visual and olfactory signals in mushroom-mimicking Dracula orchids using realistic three-dimensional printed flowers
Open the record for dataset details and reuse information.
FIGURE 2 in Dracula agnosia (Orchidaceae: Pleurothallidinae), a long confused undescribed species
FIGURE 2. Dracula agnosia in situ, Panama, 18 Jan 2012, Davis s.n.
FIGURES 1 in Malagasycoelum dracula gen. and sp. nov., a new genus and a new species of the subfamily Mirinae (Hemiptera: Heteroptera: Miridae) from Madagascar
FIGURES 1. Habitus and head structures of Malagasycoelum dracula Kim & Jung, sp. nov. A: male, Holotype; B: female, Paratype; C: holotype in lateral view; D: head in frontal view. Scale bar: 1mm.
FIGURES 2 in Malagasycoelum dracula gen. and sp. nov., a new genus and a new species of the subfamily Mirinae (Hemiptera: Heteroptera: Miridae) from Madagascar
FIGURES 2. Genital structures of male and female of Malagasycoelum dracula Kim & Jung, sp. nov. A–B: left paramere; C: right paramere; D–E: endosoma; F: sclerotized rings; G: posterior wall. Scale bar: 0.1mm.
NES - Castlevania 3 Draculas Curse - Axe
Source: Objaverse 1.0 / Sketchfab
NES - Castlevania 2 Simons Quest - Dracula's Eye
Source: Objaverse 1.0 / Sketchfab
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