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223 results for “Cristatus”

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zenodo36/100

Telenomus cristatus Johnson, holotype female, FSCA 00060143

<p><em>Telenomus cristatus </em>Johnson, holotype female, FSCA 00060143</p> <p>[St. Johns Bluff Duval Co., FLA.] [E. E. Grissell 30-VIII-1978 Collection] [HOLOTYPE Telenomus cristatus Johnson 1982]</p>

opencc-by-4.0Mar 2023View details →
zenodo32/100

FIGURE 2. Comparative head morphology. A in On the specific status of Hedotettix cristatus Karny, 1915 (Tetrigidae: Tetriginae)

FIGURE 2. Comparative head morphology. A) Hedotettix cristatus and B) Hedotettix punctatus (males A, C; females B, D) (A and D photo S. Ingrisch, B photo S. Young, C photo S. K. Gupta).

opennotspecifiedDec 2015View details →
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FIGURE 4. Hedotettix cristatus brachypronotal morphology. A in On the specific status of Hedotettix cristatus Karny, 1915 (Tetrigidae: Tetriginae)

FIGURE 4. Hedotettix cristatus brachypronotal morphology. A male holotype (photo S. Ingrisch), C-D specimens Kaohsiung (photo yunol).

opennotspecifiedDec 2015View details →
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FIGURE 3 in On the specific status of Hedotettix cristatus Karny, 1915 (Tetrigidae: Tetriginae)

FIGURE 3. Hedotettix punctatus macroptonotal morphology. Blue background—female from Rajasthan (photo S. Ingrisch), white background—male from Chhatisgarh (photo: S. K. Gupta) (scale bar = 1mm).

opennotspecifiedDec 2015View details →
zenodo32/100

FIGURE 1 in On the specific status of Hedotettix cristatus Karny, 1915 (Tetrigidae: Tetriginae)

FIGURE 1. Distribution map of Hedotettix punctatus (red area) and H. cristatus (blue area). The map is generated after unpublished and all the literature data.

opennotspecifiedDec 2015View details →
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FIGURE 18. Male Apteroscirtus cristatus n in Annotated list of Tettigoniidae (Orthoptera) from the East Usambara Mountains Tanzania and new Tettigoniidae species from East Africa

FIGURE 18. Male Apteroscirtus cristatus n. sp., Mazumbai forest reserve in the West Usambara Mountains. Arrows point to keels of abdominal tergites which are conspicuous in this species, but hardly discernible in A. planidorsatus n. sp. from the Uluguru Mountains and thus a good character distinguishing these two Tanzanian species.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURE 10. Sargassocarcinus cristatus. A, B in Revision of the spider crab genus Sargassocarcinus Ward, 1936 (Crustacea: Brachyura: Epialtidae)

FIGURE 10. Sargassocarcinus cristatus. A, B, female (10.8 × 8.9 mm) (NMMBCD 4065), Taiwan; C, D, ovigerous female (16.2 × 12.1 mm) (ZRC 2015.289), Taiwan. A, overall habitus; B, ventral view of cephalothorax showing buccal cavity, epistome, eyes and abdomen; D, sterno-abdominal cavity showing vulvae. Abbreviation: v, vulvae.

opennotspecifiedDec 2016View details →
zenodo32/100

Species TX OK Distribution Map FH Hosts Phloeotribus liminaris (Harris) 1* 1* SENA 15 ph Prunus Phloeotribus pseudoscabricollis Atkinson 1 MEX+NT 16 ph Zanthoxylum Phloeotribus texanus Schaeffer 1 1* SE+MEX 17 ph Celtis Phloeosinina Chramesus chapuisii LeConte 1 1 SE+MEX 18 ph Celtis Chramesus hicoriae LeConte 1* 1* SENA 19 ph Carya Chramesus mimosae Blackman 1 MEX+NT 18 ph Legume trees Chramesus subopacus Schaeffer 1 MEX+NT 20 ph Celtis Chramesus varius Wood 1 MEX+NT 19 ph Legume trees Phloeosinus cristatus (LeConte) 1 SWNA 21 ph Cupressus Phloeosinus dentatus (Say) 1 1 SENA 22 ph Juniperus Phloeosinus hoferi Blackman 1 SWNA 25 ph Juniperus Phloeosinus scopulorum neomexicanus Blackman 1 SWNA 23 ph Juniperus Phloeosinus serratus (LeConte) 1 SWNA 24 ph Juniperus Phloeosinus taxodii Blackman 1 SE+MEX 21 ph Taxodium Hypoborina Chaetophloeus fasciatus (Blackman) 1 SWNA 26 ph Prosopis Chaetophloeus heterodoxus (Casey) 1 SWNA ph Rosaceae Chaetophloeus mexicanus Wood 1* MEX+NT 27 ph Eysenhardtia Chaetophloeus sulcatus Wood 1* MEX+NT 28 ph Composite shrubs Liparthrum squamosum (Blackman) 1*? SENA 29 ph Maclura pomifera Polygraphina Carphobius arizonicus Blackman 1* SWNA 30 ph Juniperus Carphoborus bicornus Wood 1* 1* SENA 31 ph Pinus Carphoborus bifurcus (Chapuis) 1* SENA 32 ph Pinus Carphoborus convexifrons Wood 1 SWNA 31 ph Pinus in Atlas and checklist of the bark and ambrosia beetles of Texas and Oklahoma (Curculionidae: Scolytinae and Platypodinae)

Species TX OK Distribution Map FH Hosts Phloeotribus liminaris (Harris) 1* 1* SENA 15 ph Prunus Phloeotribus pseudoscabricollis Atkinson 1 MEX+NT 16 ph Zanthoxylum Phloeotribus texanus Schaeffer 1 1* SE+MEX 17 ph Celtis Phloeosinina Chramesus chapuisii LeConte 1 1 SE+MEX 18 ph Celtis Chramesus hicoriae LeConte 1* 1* SENA 19 ph Carya Chramesus mimosae Blackman 1 MEX+NT 18 ph Legume trees Chramesus subopacus Schaeffer 1 MEX+NT 20 ph Celtis Chramesus varius Wood 1 MEX+NT 19 ph Legume trees Phloeosinus cristatus (LeConte) 1 SWNA 21 ph Cupressus Phloeosinus dentatus (Say) 1 1 SENA 22 ph Juniperus Phloeosinus hoferi Blackman 1 SWNA 25 ph Juniperus Phloeosinus scopulorum neomexicanus Blackman 1 SWNA 23 ph Juniperus Phloeosinus serratus (LeConte) 1 SWNA 24 ph Juniperus Phloeosinus taxodii Blackman 1 SE+MEX 21 ph Taxodium Hypoborina Chaetophloeus fasciatus (Blackman) 1 SWNA 26 ph Prosopis Chaetophloeus heterodoxus (Casey) 1 SWNA ph Rosaceae Chaetophloeus mexicanus Wood 1* MEX+NT 27 ph Eysenhardtia Chaetophloeus sulcatus Wood 1* MEX+NT 28 ph Composite shrubs Liparthrum squamosum (Blackman) 1*? SENA 29 ph Maclura pomifera Polygraphina Carphobius arizonicus Blackman 1* SWNA 30 ph Juniperus Carphoborus bicornus Wood 1* 1* SENA 31 ph Pinus Carphoborus bifurcus (Chapuis) 1* SENA 32 ph Pinus Carphoborus convexifrons Wood 1 SWNA 31 ph Pinus

opennotspecifiedMar 2013View details →
zenodo32/100

Figure 3 in Phenology and impact of abiotic factors with a temporal lag on the abundance of common crab spider, Xysticus cristatus (Clerck, 1757) (Araneae: Thomisidae) in the agroecosystems of Kashmir

Figure 3. Carapace width frequency distribution of the monthly catches of Xysticus cristatus from April to September 2019.

opennotspecifiedFeb 2024View details →
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Figure 4 in Phenology and impact of abiotic factors with a temporal lag on the abundance of common crab spider, Xysticus cristatus (Clerck, 1757) (Araneae: Thomisidae) in the agroecosystems of Kashmir

Figure 4. Activity pattern in terms of number of females caught in pitfall traps and abdominal width from March to July 2019 during the reproductive period in females of Xysticus cristatus.

opennotspecifiedFeb 2024View details →
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Figure 2 in Phenology and impact of abiotic factors with a temporal lag on the abundance of common crab spider, Xysticus cristatus (Clerck, 1757) (Araneae: Thomisidae) in the agroecosystems of Kashmir

Figure 2. Circular histograms illustrating the frequency of age structure established for the population of Xysticus cristatus in agroecosystems of Kashmir from March 2018 to February 2020. The angular mean or direction of the data is indicated by the grey line vector inside the circle. The 95% confidence interval is indicated by the transverse line in the sector outside the circle.

opennotspecifiedFeb 2024View details →
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Corythornis cristatus decontaminated FSCR

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opencc-by-4.0Dec 2021View details →
zenodo32/100

Corythornis cristatus decontaminated gx

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opencc-by-4.0Jul 2022View details →
zenodo32/100

On following pages: 142. Shortridge's Langur (Trachypithecus shortridgei); 143. East Javan Langur (Trachypithecus 146. Selangor Silvery Langur (Trachypithecus selangorensis); 147. Germain's Langur (Trachypithecus germaini); 148 auratus; 144. West Javan Langur (Trachypithecus mauritius); 145. Silvered Langur (Trachypithecus cristatus));. Annamese Langur (Trachypithecus margarita). in Cercopithecidae

On following pages: 142. Shortridge's Langur (Trachypithecus shortridgei); 143. East Javan Langur (Trachypithecus 146. Selangor Silvery Langur (Trachypithecus selangorensis); 147. Germain's Langur (Trachypithecus germaini); 148 auratus; 144. West Javan Langur (Trachypithecus mauritius); 145. Silvered Langur (Trachypithecus cristatus));. Annamese Langur (Trachypithecus margarita).

opennotspecifiedMar 2013View details →
zenodo32/100

Corythornis cristatus zanfona 1

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opencc-by-4.0Jul 2022View details →
zenodo32/100

FIGURE 9. Antichiropus cristatus Car, n in The millipede genus Antichiropus (Diplopoda: Polydesmida: Paradoxosomatidae), part 3: species of the Pilbara bioregion of Western Australia

FIGURE 9. Antichiropus cristatus Car, n. sp., holotype male (WAM T146704), A,C, habitus: A, lateral view; C, dorsal view.; B, D-G, left gonopod:B tip of left gonopod in detail lateral view; D posterior view; E anterior view; F, medial view; G, lateral view. Abbreviations: C, coxa; F, femorite; MFP, main femoral process; PF, prefemur; prof, prolongation of femorite; S, so- lenomere; sp1, sp2, sp3 and sp4, solenomere processes 1,2, 3 and 4. Scale bars: A = 2 mm; B = 1 mm; C-F = 0.5 mm; G = 0.1 mm.

opennotspecifiedJun 2019View details →
dryad32/100

Data from: Scale-dependent effects of terrestrial habitat on genetic variation in the great crested newt (Triturus cristatus)

<p><b>Context</b></p> <p class="CxSpMiddle">Terrestrial landscapes surrounding aquatic habitat influence the persistence of amphibian spatially structured populations (SSPs) via their crucial role in providing estivation and overwintering sites, facilitating or hampering dispersal and colonisation, and consequently the maintenance or loss of genetic diversity.</p> <p><b>Objectives</b></p> <p class="CxSpMiddle">To highlight the landscape drivers of genetic variation, we investigated the relationship between the level of genetic variation measured within ponds of the great crested newt (<i>Triturus cristatus</i>), and the composition of the surrounding landscape at various spatial scales.</p> <p><b>Methods</b></p> <p class="CxSpMiddle">Based on the sampling of 40 ponds in thirteen SSPs, the influence of landscape features on several estimators of genetic variation was investigated via linear mixed models, with effects within and between SSPs incorporated.</p> <p><b>Results</b></p> <p class="CxSpMiddle">The best models depended on the spatial scale, with more significant associations within radii of 50 and 100 m of core ponds, particularly for allelic richness. Responses within and between SSPs were mostly similar. The availability of aquatic habitat in the landscape had a positive effect, while woodland, arable land and pasture had different effects depending on scale and response variable. Total length of roads within a 250 m radius influenced effective population size negatively.</p> <p><b>Conclusions</b></p> <p class="CxSpMiddle">Our results stress the need to investigate the influence of environmental predictors at multiple spatial scales for an adequate understanding of ongoing processes. Generally, the landscape affected genetic variation similarly within and between SSPs. This allowed us to provide general guidelines for the persistence of great crested newt populations, with an emphasis on the importance of the aquatic habitat.</p>

opencc-zeroJul 2021View details →
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Figs. 1–4. Phasmister cristatus, new species. 1 in New Fossil Histerid Species from Cretaceous Burmese Amber (Coleoptera: Histeridae)

Figs. 1–4. Phasmister cristatus, new species. 1) Anterior view; 2) Dorsal view; 3) Lateral view; 4) Ventral view.

opennotspecifiedMar 2021View details →
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FIGURE 6. A–B. Lithacrosiphon cristatus. A in Peanut worms of the phylum Sipuncula from the Nha Trang Bay (South China Sea) with a key to species

FIGURE 6. A–B. Lithacrosiphon cristatus. A) lateral view, introvert everted; B) hooks. C–D. Cloesiphon aspergillus. C) lateral view, introvert retracted; D) hook. Scale bars: A, 5 mm; B, 20 µm; C, 2 mm; D, 20 µm.

opennotspecifiedDec 2012View details →
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Figure 5. a in Morphological and performance modifications in the world's only marine lizard, the Galápagos marine iguana, Amblyrhynchus cristatus

Figure 5. a, LD function for variation in stride kinematics between iguanids, two of the fastest runs for each individual were retained (marine iguana N = 65, black spiny-tailed iguana N = 35, green iguana N = 22). Kernel density ellipses for each species illustrate 90% and 70% of the data distribution. b, loadings for iguanid stride kinematics in (a). c, LD function for variation in stride kinematics between subspecies of marine iguana. d, Loadings for iguanid stride kinematics in (c).

opennotspecifiedDec 2020View details →

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