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300 results for “longhorn beetle”
Figure 5 from: Lingafelter S (2011) New myrmecomorphous longhorned beetles from Haiti and the Dominican Republic with a key to Anaglyptini and Tillomorphini of Hispaniola (Coleoptera, Cerambycidae, Cerambycinae). ZooKeys 106: 55-75. https://doi.org/10.3897/zookeys.106.1470
Figure 5 - Tilloclytus neiba sp. n., dorsal habitus. Digital painting by Taina Litwak.
Figure 2 from: Lingafelter S (2011) New myrmecomorphous longhorned beetles from Haiti and the Dominican Republic with a key to Anaglyptini and Tillomorphini of Hispaniola (Coleoptera, Cerambycidae, Cerambycinae). ZooKeys 106: 55-75. https://doi.org/10.3897/zookeys.106.1470
Figure 2 - Licracantha formicaria sp. n., lateral habitus. Digital painting by Taina Litwak.
Figure 1 from: Lingafelter S (2011) New myrmecomorphous longhorned beetles from Haiti and the Dominican Republic with a key to Anaglyptini and Tillomorphini of Hispaniola (Coleoptera, Cerambycidae, Cerambycinae). ZooKeys 106: 55-75. https://doi.org/10.3897/zookeys.106.1470
Figure 1 - Licracantha formicaria sp. n., dorsal habitus. Digital painting by Taina Litwak.
Figure 4 from: Lingafelter S (2011) New myrmecomorphous longhorned beetles from Haiti and the Dominican Republic with a key to Anaglyptini and Tillomorphini of Hispaniola (Coleoptera, Cerambycidae, Cerambycinae). ZooKeys 106: 55-75. https://doi.org/10.3897/zookeys.106.1470
Figure 4 - Tilloclytus baoruco sp. n., dorsal habitus. Digital painting by Taina Litwak.
Figure 3 from: Lingafelter S (2011) New myrmecomorphous longhorned beetles from Haiti and the Dominican Republic with a key to Anaglyptini and Tillomorphini of Hispaniola (Coleoptera, Cerambycidae, Cerambycinae). ZooKeys 106: 55-75. https://doi.org/10.3897/zookeys.106.1470
Figure 3 - Calliclytus macoris sp. n., dorsal habitus. Digital painting by Taina Litwak.
Figure 3 from: Gobbi M, Priore C, Tattoni C, Lencioni V (2012) Surprising longhorned beetle (Coleoptera, Cerambycidae) richness along an Italian alpine valley. ZooKeys 208: 27-39. https://doi.org/10.3897/zookeys.208.3193
Figure 3 - Dendrogram drawn on the base of the Jaccard similarities between the sites.
Figure 2 from: Gobbi M, Priore C, Tattoni C, Lencioni V (2012) Surprising longhorned beetle (Coleoptera, Cerambycidae) richness along an Italian alpine valley. ZooKeys 208: 27-39. https://doi.org/10.3897/zookeys.208.3193
Figure 2 - Relationship between the species richness (S) and the altitudinal gradient.
Figure 1 from: Gobbi M, Priore C, Tattoni C, Lencioni V (2012) Surprising longhorned beetle (Coleoptera, Cerambycidae) richness along an Italian alpine valley. ZooKeys 208: 27-39. https://doi.org/10.3897/zookeys.208.3193
Figure 1 - Accumulation curve on the number of species observed during the surveys.
FIGURES 61–69. 61 in Primary types of longhorned beetles (Coleoptera, Cerambycidae, Vesperidae and Disteniidae) of Southwest University (SWU)
FIGURES 61–69. 61. Paraleprodera bimaculata Wang & Chiang, 2000 (a, holotype; b. labels). 62. Pseudoechthistatus acutipennis Chiang, 1981. 63. Pseudomacrochenus albipennis Chiang, 1981 (a, holotype; b. labels). 64. Sternohammus yunnana Wang & Chiang, 1998 (a, holotype; b. labels). 65. Thylactus densepunctatus Chiang & Li, 1984 (a, holotype; b. labels). 66. Thylactus dentipennis Wang & Chiang, 1998 (a, holotype; b. labels). 67. Uraecha longzhouensis Wang & Chiang, 2000 (a, holotype; b. labels). 68. Xenohammus albomaculata Wang & Chiang, 2000 (a, holotype; b. labels). 69. Xylariopsis albofasciata Wang & Chiang, 1998 (a, holotype; b. labels).
FIGURE 10 in Longhorned beetles (Coleoptera: Cerambycidae) of southeastern Mongolia with particular emphasis on the genus Anoplistes Audinet-Serville, 1833 (Cerambycinae: Trachyderini)
FIGURE 10. Photographs of adults and larvae in situ and habitats of typical SE Mongolian cerambycid species. A, stony hills with dense shrub vegetation, including Zygophyllum, most likely habitat of Anoplistes kaszabi; B, saxaul and tamarisk shrubs in strongly desertified area in southern Mongolia, most likely typical habitat of Anoplistes mongolicus; C, male of Eodorcadion exaratum argali; D, female of E. exaratum argali under cow dung; E, melanistic female of E. exaratum argali; F, Achnatherum splendens enclave in semi-desert area, habitat of Eodorcadion gorbunovi; G, freshly digged larva of E. gorbunovi; H, male of E. gorbunovi climbing onto stems of grasses.
FIGURE 6 in Longhorned beetles (Coleoptera: Cerambycidae) of southeastern Mongolia with particular emphasis on the genus Anoplistes Audinet-Serville, 1833 (Cerambycinae: Trachyderini)
FIGURE 6. Habitus of longhorned beetle taxa distributed in the region of SE Mongolia (genus Anoplistes). A, Anoplistes halodendri minutus (male, sand ecotype, Dornogovi aimag—steppe region); B, A. halodendri minutus (female, sand ecotype, ibid); C, A. halodendri minutus (male, sand ecotype, Dornogovi aimag—desert region); D, A. halodendri minutus (female, sand ecotype, ibid); E, A. halodendri minutus (male, sand ecotype, Bulgan aimag—sand dunes); F, A. halodendri minutus (female, sand ecotype, ibid); G, Anoplistes kaszabi (male, paratype); H, A. kaszabi (female, holotype); I, A. kaszabi (male, paratype, melanistic form); J, Anoplistes mongolicus (male); K, A. mongolicus (female); L, Anoplistes gobiensis (female). Scale bar: 5 mm.
Fig. 2 in New data on the occurrence of longhorn beetles (Coleoptera: Cerambycidae) in the Eastern Beskid Mountains (Poland)
Fig. 2. Pupa and larval feeding grounds of Nivellia sanguinosa (Gyllenhal, 1827) in a Padus avium (Mill.) trunk. Photo by W.T. Szczepański.
Fig. 7 in Ecological patterns strongly impact the biogeography of western Palaearctic longhorn beetles (Coleoptera: Cerambycoidea)
Fig. 7 Factor analysis by species calculated as principal component analysis with varimax rotation based on Jaccard similarity coefficients for 95 geographic regions. a–c All species, d–f broad-leaved feeders and g–i conifer feeders
Fig. 6 in Ecological patterns strongly impact the biogeography of western Palaearctic longhorn beetles (Coleoptera: Cerambycoidea)
Fig. 6 Factor analysis by regions calculated as principal components analysis with varimax rotation based on Jaccard similarity coefficients for 95 geographic regions. a, b All species, c, d broad-leaved feeders and e, f conifer feeders
Fig. 2 in Ecological patterns strongly impact the biogeography of western Palaearctic longhorn beetles (Coleoptera: Cerambycoidea)
Fig. 2 Species and genera richness of Cerambycoidea in 95 geographic regions of the western Palaearctic: a all species, b all genera, c Cerambycinae, d Lepturinae, e Spondylidinae, and f Lamiinae
Fig. 3 in Ecological patterns strongly impact the biogeography of western Palaearctic longhorn beetles (Coleoptera: Cerambycoidea)
Fig. 3 Percentages of the Cerambycoidea species in 95 geographic regions of the western Palaearctic a having an area <500,000 km2, b having wingless females or being wingless species, and c being winged species
Fig. 1 in Longhorned Beetles (Coleoptera: Cerambycidae and Disteniidae) Collected in the Canopy of a Dry Tropical Lowland Forest in Panama
Fig. 1. Number of Cerambycidae and Disteniidae individuals collected with Malaise traps in nine tree species in Metropolitan Natural Park. The species column with less than or eQual to 10 individuals corresponds to data from 25 species. No specimens were collected in the trap placed in Cecropia peltata; this tree species is therefore not represented in the graph.
Fig. 5 in New Longhorn Beetles from Puerto Rico (West Indies) (Coleoptera: Cerambycidae)
Fig. 5. SEM photo of pronotal surface of Decarthria boricua.
FIGURE 2. Species accumulation curve generated from 6,220 in The longhorn beetles (Coleoptera: Cerambycidae) of Kentucky with notes on larval hosts, adult nectar use, and semiochemical attraction
FIGURE 2. Species accumulation curve generated from 6,220 specimen records.
Fig. 2 in Longhorned Beetles (Coleoptera: Cerambycidae and Disteniidae) Collected in the Canopy of a Dry Tropical Lowland Forest in Panama
Fig. 2. Number of Cerambycidae and Disteniidae specimens collected over 60 weeks in the MNP canopy.
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Allen Brain Atlas
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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.