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1,308 results for “99”
FIGURES 98–99. 98 in The bumblebees of North China (Apidae, Bombus Latreille)
FIGURES 98–99. 98. Map showing the distributions of B. sylvestris in North China with record in black spots, the province boundaries in dark grey, and all sites with records of all bumblebee species in light grey. 99. Bombus (Psithyrus) sylvestris male from Shanxi.
FIGURES 94–99 in Annotated checklist of the Blennidus subgenus Agraphoderus species from Peru with description of B. bombonensis n. sp. and synonymic notes (Coleoptera: Carabidae: Pterostichinae)
FIGURES 94–99. Aedeagus (left lateral and dorsal aspects) of Blennidus: curtatus HT (94); etontii HT (95); euphaenops HT (96); fitzcarraldi HT (97); huascarani HT (98); inca LT (99).
FIGURES 99−106 in The Cossidae (Lepidoptera) of Afghanistan with description of three new species and special notes on the fauna of Bande-Amir National Park
FIGURES 99−106. Distribution maps of Cossidae of Afghanistan: 99. Holcocerus gloriosa (Erschoff, 1874); 100. Holcocerus holosericeus Staudinger, 1884; 101. Deserticossus arenicolus (Staudinger, 1879); 102. Cryptoholcocerus mongolicus (Erschoff in Alpheraky, 1882); 103. Cossulus griseatellus Yakovlev, 2006; 104. Cossulus herzi (Alpheraky, 1893); 105. Cossulus intractatus (Staudinger, 1887); 106. Cossulus kabulense (Daniel, 1965).
FIG. 99. Acropora subglabra, G65114 in Revision and catalogue of worldwide staghorn corals Acropora and Isopora (Scleractinia: Acroporidae) in the Museum of Tropical Queensland
FIG. 99. Acropora subglabra, G65114 Ribbon Reefs, Great Barrier Reef, Australia, 2007 (photo: P. Muir). Map of documented distribution: blue squares = MTQ specimens; pink squares = literature records; orange diamonds = type localities (where given), including primary synonyms.
FIGURE 4. Legs and coxosternal region. A and B in Hirsutisoma grimaldii sp. nov., a ca. 99-million-year-old ricinuleid (Primoricinulei, Hirsutisomidae) from Cretaceous Burmese amber with a corticolous, scansorial lifestyle
FIGURE 4. Legs and coxosternal region. A and B, Legs, dorsal aspect, of modern ricinuleid (Ricinoididae Ewing, 1929, schematic representation) (A) and Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137), dextral leg IV (B). C and D, Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137), coxosternal region (C) (legs identified by Roman numerals); sinistral leg III, prolateral aspect (D) (note modified first tarsomere and unmodified second tarsomere). Abbreviations: cx, coxa; fe, femur; me, metatarsus; pa, patella; st, sternum; ti, tibia; tr, trochanter; tr1, trochanter 1; first and second, proximal tarsomeres.
FIGURE 3 in Hirsutisoma grimaldii sp. nov., a ca. 99-million-year-old ricinuleid (Primoricinulei, Hirsutisomidae) from Cretaceous Burmese amber with a corticolous, scansorial lifestyle
FIGURE 3. Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137). A, Schematic representation of soma, showing how both tagmata presumably connected by exposed pedicel. B, Prosoma, dorsal aspect, showing raptorial pedipalp, and legs I and II. C, Opisthosoma, posterior part, dorsal aspect (note median and lateral sclerites of tergites XII and XIII). D and E, Dextral pedipalp, retroventral aspect (D), and closeup of tarsus (movable finger) and lamellate projections (E). F, Sinistral pedipalp, distal segments, dorsal aspect. G and H, Dextral leg I femur, dorsal (G) and prodorsal (H) aspects. I, Sinistral leg IV tarsus, prolateral aspect. Abbreviations: ca, carapace; cu, cucullus; fe, femur; me, metatarsus; pa, patella; ta, tarsus (movable finger); ti, tibia; tr, trochanter; tr2, trochanter 2.
FIGURE 1 in Hirsutisoma grimaldii sp. nov., a ca. 99-million-year-old ricinuleid (Primoricinulei, Hirsutisomidae) from Cretaceous Burmese amber with a corticolous, scansorial lifestyle
FIGURE 1. Hirsutisoma grimaldii sp. nov., holotype ♂ (AMNH_IZC 00357137). A and B, Habitus, dorsal (A) and ventral (B) aspects. C, Prosoma, anterodorsal aspect. D, Coxosternal region.
Supplementary material 14 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
Population structure on Aedes albopictus samples from all Connecticut samples (no temporal series) based on 15 microsatellite markers
Supplementary material 12 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
Population structure of Aedes albopictus at the United States northeastern invasion front (New York, Connecticut, Massachusetts) based on 15 microsatellite markers
Supplementary material 11 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
Population structure of Aedes albopictus from the United States and Japan based on 15 microsatellite markers
Supplementary material 10 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
Estimates of effective population size based of Connecticut populations obtained with NeEstimator (Do et al. 2014)
Supplementary material 8 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
Genetic clusters inferred from all Connecticut collections using discriminant analysis of principal components in the ADEGENET package
Supplementary material 5 from: Gloria-Soria A, Shragai T, Ciota AT, Duval TB, Alto BW, Martins AJ, Westby KM, Medley KA, Unlu I, Campbell SR, Kawalkowski M, Tsuda Y, Higa Y, Indelicato N, Leisnham PT, Caccone A, Armstrong PM (2022) Population genetics of an invasive mosquito vector, Aedes albopictus in the Northeastern USA. NeoBiota 78: 99-127. https://doi.org/10.3897/neobiota.78.84986
Probability of a recent bottleneck at each Aedes albopictus location, under the infinite allele model (IAM) and the two-phase model (TPM) with variance of 0.36
FIGURE 99. Opsiphanes sallei nicandrus Fruhstorfer, 1912 in Systematics of Opsiphanes Doubleday, [1849] (Lepidoptera: Nymphalidae, Satyrinae, Brassolini): an integrative approach
FIGURE 99. Opsiphanes sallei nicandrus Fruhstorfer, 1912: Male: a. (NHMUK), Female: b. (USNMENT01590314-USNM), dorsal and ventral views: Bolivia: Rio Songo [=Zongo], 750 m Coll. Fassl.
FIGURES 72–99 in Taxonomy and ecology of Achnanthidium (Bacillariophyta, Achnanthidiaceae) from southeastern Brazil with the description of six new species
FIGURES 72–99. LM and SEM images of Achnanthidium lusitanicum from Guarapiranga reservoir, São Paulo state (SP-428513). 72–83. LM views of raphe valves. 84–95. LM views of rapheless valves. 96, 97. SEM external view of raphe valves showing striation pattern, axial and central areas. 98. SEM external view of the rapheless valve showing striation pattern, axial and central areas. 99. SEM internal view of the rapheless valve. LM scale bar = 10 μm. SEM scale bars indicated in each figure.
FIGURE 99. Xerococcus fouqueriae Ferris 1921 in New genera and species of felt scales (Hemiptera: Coccomorpha: Eriococcidae), with descriptions of new species and immature instars of described species
FIGURE 99. Xerococcus fouqueriae Ferris 1921, second-instar female, intercepted at San Ysidro, State?, Mexico, August 29, 1953, on Fouquieria sp., E.D. Algert. A=enlarged seta; E=3-locular pore; G=macrotubular duct; I=anal ring; J=antenna; Z=body margin (hatched areas on the body of the inset with nodules).
finals_2022_99
Log and boot files of game 99
Supplementary material 4 from: Konopleva ES, Bolotov IN, Vikhrev IV, Inkhavilay K, Gofarov MYu, Kondakov AV, Tomilova AA, Chapurina YE, Van Do T, Pfeiffer JM, Lopes-Lima M, Bogan AE (2023) A freshwater mussel species reflects a Miocene stream capture between the Mekong Basin and East Asian rivers. Zoosystematics and Evolution 99(1): 29-43. https://doi.org/10.3897/zse.99.90784
Figure S1. Fossil-calibrated Unionidae tree, including the genus Cristaria, based on the complete data set of mitochondrial and nuclear gene sequences (five partitions: three codons of COI + 16S rRNA + 28S rRNA)
Supplementary material 1 from: Konopleva ES, Bolotov IN, Vikhrev IV, Inkhavilay K, Gofarov MYu, Kondakov AV, Tomilova AA, Chapurina YE, Van Do T, Pfeiffer JM, Lopes-Lima M, Bogan AE (2023) A freshwater mussel species reflects a Miocene stream capture between the Mekong Basin and East Asian rivers. Zoosystematics and Evolution 99(1): 29-43. https://doi.org/10.3897/zse.99.90784
List of sequences used in this study, including species names, localities, voucher numbers, and GenBank accession numbers
Supplementary material 1 from: Tibiriçá Y, Strömvoll J, Cervera JL (2023) Can you find me? A new sponge-like nudibranch from the genus Jorunna Bergh, 1876 (Mollusca, Gastropoda, Discodorididae). Zoosystematics and Evolution 99(1): 63-75. https://doi.org/10.3897/zse.99.95222
Bayesian maximum credibility tree of the COI and 16S sequence alignments for Jorunna liviae sp. nov.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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