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88 results for “370”
FIGURES 363–370 in Systematics of Robustagramma, a new genus of New World Sphaeroceridae (Diptera)
FIGURES 363–370. Robustagramma spp. wings (not to scale): 363, R. atratum sp. nov.; 364, R. lingulatum sp. nov.; 365, R. setilamella sp. nov.; 366, R. robustinervus sp. nov.; 367, R. binitidum sp. nov.; 368, R. macrosternum sp. nov.; 369, R. longistylum sp. nov.; 370, R. hebes sp. nov.
FIGURES 363–370 in Structural characterization of the type III pilotin-secretin interaction in Shigella flexneri by NMR spectroscopy
FIGURES 363–370. Female genitalia of Geometridae. 363. Nearcha curtaria, 364. Acalyphes philorites, 365. Acalyphes sp., 366. Archiearides fidonioides, 367. Dirce aesiodora, 368. Dirce lunaris, 369. Dirce sp, 370. Dirce oriplancta, 371. Dirce solaris.
FIGURES 367–370. 367–368 in Systematics and biogeography of the spider genus Mallinella Strand, 1906, with descriptions of new species and new genera from Southeast Asia (Araneae, Zodariidae) 3369
FIGURES 367–370. 367–368. Mallinella ponikii, paratype (BMNH). 369–370. M. hamata, female from Indonesia (MHNG). 367. Male palp, ventral. 368. Ditto, prolateral. 369. Epigyne. 370. Internal genitalia, lateral.
FIGURES 370–373 in New species of Colombian Triplocania Roesler (Psocodea: ' Psocoptera': Ptiloneuridae)
FIGURES 370–373. Phallosome (370, 371) and ninth sternum (372, 373) of Triplocania species. 370. T. furcata New. 371. T. erwini Silva Neto et al. 372. T. colombiana García Aldrete. 373. T. lamasoides Silva-Neto et al.
Data from: MicroRNAs 9 and 370 association with biochemical markers in T2D and CAD complication of T2D
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Chord voicings for 370 chorales by J. S. Bach as generated by the 'voicer' algorithm
<p>This is a dataset of 370 chorales by J S. Bach as generated by the 'voicer' algorithm for automatic chord voicing. This dataset is intended to accompany the paper 'A Computational Model for the Analysis and Generation of Chord Voicings'.</p> <p>Note: there are 370 chorales, but the numbering goes from 1 to 371, with one chorale omitted, matching the original dataset from http://kern.humdrum.org.</p>
Figs. 367–374. Pholcus tagoman. 367. Male prosoma, dorsal view. 368. Male sternum, ventral view. 369. Male chelicerae, frontal view. 370 in The Pholcids Of Australia (Araneae; Pholcidae): Taxonomy, Biogeography, And Relationships
Figs. 367–374. Pholcus tagoman. 367. Male prosoma, dorsal view. 368. Male sternum, ventral view. 369. Male chelicerae, frontal view. 370. Distal apophysis on male chelicera. 371. Left procursus, dorsal view. 372. Left genital bulb, retrolateral view; ''a'' = appendix; ''e'' = embolus; ''u'' = uncus; ''c'' = connecting piece between bulb and cymbium. 373, 374. Epigynum, ventral (373) and dorsal (374) views. Scale lines: 0.3 mm (367–369, 371–374), 0.05 mm (370).
Endogenous 17O DNP of Gd-Doped CeO2 from 100 to 370 K
<p>Raw and processed 17O NMR and DNP-enhanced NMR spectra, and EPR spectra, for Gd-doped CeO2 with Gd concentrations from 0.01 atom% to 1 atom%, as presented in the publication "Endogenous 17O DNP of Gd-Doped CeO2 from 100 to 370 K". NMR data is given as zip files of the native Bruker Topspin format. See the README file for more details.</p> <p>In the previous version of this dataset, the JCAMP-DX format was used, but due to a bug the titles describing the spectra were incorrectly saved. </p>
Figure 8 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 8 - Dorsolateral views of adult males of A Hypsiboas fasciatus, QCAZ 48584, SVL = 33.77 mm B Hypsiboas almendarizae, QCAZ 39649, SVL = 36.54 mm C Hypsiboas calcaratus, QCAZ 43256, SVL = 40.07 mm D Hypsiboas maculateralis, QCAZ 40082, SVL = 36.16 mm E Hypsiboas alfaroi, QCAZ 43260, SVL = 30.35 mm F Hypsiboas tetete, QCAZ 40081, SVL = 31.15 mm.
Figure 4 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 4 - Dorsolateral views of adult females of A Hypsiboas fasciatus, QCAZ 48611, SVL = 51.79 mm B Hypsiboas almendarizae, QCAZ 32638, SVL = 51.26 mm C Hypsiboas calcaratus, QCAZ 24282, SVL = 51.26 mm D Hypsiboas maculateralis, QCAZ 43825, SVL = 55.31 mm E Hypsiboas alfaroi, QCAZ 43252, SVL = 45.37 mm.
Figure 3 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 3 - Dorsolateral (top), ventral (left), and dorsal (right) views of the holotype of Hypsiboas fasciatus (BMNH 58.4.25.22).
Figure 16 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 16 - Adult Hypsiboas maculateralis showing variation in dorsal and ventral coloration of preserved specimens. From left to right, first and second rows: QCAZ 43825, 44531, 44651, 28004, 28401 (females); third and fourth rows: QCAZ 40082 (holotype), 43897, 44020–21, 44184 (males). See Appendix for locality data. All specimens are shown at the same scale.
Figure 15 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 15 - Distribution of species of the Hypsiboas calcaratus complex. Localities are based on museum specimens from Museo de Historia Natural Gustavo Orcés of Escuela Politécnica Nacional, Museo de Zoología of Pontificia Universidad Católica del Ecuador, Natural History Museum University of Kansas, and Smithsonian Institution National Museum of Natural History.
Figure 12 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 12 - Calls of the Hypsiboas calcaratus species complex. A–B Hypsiboas fasciatus (QCAZ 48585) from La Pradera, Provincia Morona Santiago C–D Hypsiboas almendarizae (QCAZ 39650) from Limón, Provincia Morona Santiago E–F Hypsiboas calcaratus (QCAZ 40085) from Tena, Provincia Napo. A, C, E are oscilograms and B, D, F spectrograms.
Figure 11 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 11 - Syntype of Hyla steinbachi (BM 1947.2.13.61). Above: dorsal (left) and ventral (right) views; below: lateral view of head and ventral view of left hand.
Figure 1 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 1 - Maximum likelihood phylogram depicting relationships within Hypsiboas. The phylogram was derived from analysis of 2400 bp of mitochondrial DNA (gene fragments 12S, 16S, COI). Museum catalog number and locality are shown for each sample. Bootstrap values are shown above the branches and Bayesian posterior probabilities are shown below; missing values indicate values below 50 (bootstrap) or 0.5 (posterior probability). Outgroup species (Hypsiboas lanciformis, Hypsiboas pellucens andHypsiboas rubracylus) are not shown. Abbreviations are: ARG Argentina, BO Bolivia, EC Ecuador, FG French Guiana, GUY Guyana, PE Peru, SU Suriname.
Figure 19 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 19 - Adult Hypsiboas tetete showing variation in dorsal and ventral coloration of preserved specimens. From left to right, first and second rows: QCAZ 48095–96 (females), 40060 (male); third and fourth rows: QCAZ 40079, 40081 (holotype), 48094 (males). See Appendix for locality data. All specimens are shown at the same scale.
Figure 7 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 7 - Principal components from analysis of six size-corrected morphological variables for A 34 females and B 136 males of Hypsiboas. See Table 8 for character loadings on each component.
Figure 6 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 6 - Adult Hypsiboas almendarizae showing variation in dorsal and ventral coloration of preserved specimens. From left to right, first and second rows: QCAZ 32638, 32645 (females), 24392 (male); third and fourth rows: QCAZ 39647, 39650, 24394 (males). See Appendix for locality data. All specimens are shown at the same scale.
Figure 10 from: Ron S, Caminer M (2014) Systematics of treefrogs of the Hypsiboas calcaratus and Hypsiboas fasciatus species complex (Anura, Hylidae) with the description of four new species. ZooKeys 370: 1-68. https://doi.org/10.3897/zookeys.370.6291
Figure 10 - Holotype of Hyla leptoscelis (BM 1947.2.23.10). Above: dorsolateral view; below: ventral (left) and dorsal (right) views.
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