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101 results for “character variations”
FIGURE. Umbellules within four populations of Sanicula orthacantha, showing the fruits characters and the variation in numbers of staminate flowers (each line represents a plant individual). The ratio of staminate flowers number/ umbellule number is given for each individual. A. China, Hubei, Xuan'en, Qizimei Mountain, H.M. Li, Y.M. Yi & Y.S. Zhang 1077 (NAS). B. China, Jiangxi, Jiujiang, Lushan, H.M. Li, Y.S. Zhang & Y. Xu 1109 (NAS). C. China, Chongqing, Nanchuan, Jinfo Shan, H.M. Li, Y.S. Zhang & X. Zhang 1141 (NAS). D. China, Sichuan, Emei Shan, H.M. Li & Y.S. Zhang 1157 (NAS). All same scale. in Taxonomic studies on the genus Sanicula (Apiaceae) from China ( ): The clarification of some morphological distinction between S. orthacantha var. orthacantha and S. orthacantha var. brevispina, with the reduction of S. petagnioides to the synonymy of the former, and S. orthacantha var. stolonifera to
FIGURE. Umbellules within four populations of Sanicula orthacantha, showing the fruits characters and the variation in numbers of staminate flowers (each line represents a plant individual). The ratio of staminate flowers number/ umbellule number is given for each individual. A. China, Hubei, Xuan'en, Qizimei Mountain, H.M. Li, Y.M. Yi & Y.S. Zhang 1077 (NAS). B. China, Jiangxi, Jiujiang, Lushan, H.M. Li, Y.S. Zhang & Y. Xu 1109 (NAS). C. China, Chongqing, Nanchuan, Jinfo Shan, H.M. Li, Y.S. Zhang & X. Zhang 1141 (NAS). D. China, Sichuan, Emei Shan, H.M. Li & Y.S. Zhang 1157 (NAS). All same scale.
FIGURE. Umbellules within two populations of Sanicula orthacantha var. brevispina from China, Sichuan, Emei Shan, showing the fruits characters and the variation in numbers of staminate flowers (each line represents a plant individual). The ratio of staminate flowers number/ umbellule number is given for each individual. A. C.H. Li 1122 (NAS). B. H.M. Li & Y.S. Zhang 1151 (NAS). in Taxonomic studies on the genus Sanicula (Apiaceae) from China ( ): The clarification of some morphological distinction between S. orthacantha var. orthacantha and S. orthacantha var. brevispina, with the reduction of S. petagnioides to the synonymy of the former, and S. orthacantha var. stolonifera to
FIGURE. Umbellules within two populations of Sanicula orthacantha var. brevispina from China, Sichuan, Emei Shan, showing the fruits characters and the variation in numbers of staminate flowers (each line represents a plant individual). The ratio of staminate flowers number/ umbellule number is given for each individual. A. C.H. Li 1122 (NAS). B. H.M. Li & Y.S. Zhang 1151 (NAS).
FIGURE. Individuals in two Populations of Sanicula orthacantha var. brevispina from China, Sichuan, Emei Shan, showing the variation in plant size and rhizome character (each line represents a population). A. C.H. Li 1122 (NAS). B. H.M. Li & Y.S. Zhang 1151 (NAS). in Taxonomic studies on the genus Sanicula (Apiaceae) from China ( ): The clarification of some morphological distinction between S. orthacantha var. orthacantha and S. orthacantha var. brevispina, with the reduction of S. petagnioides to the synonymy of the former, and S. orthacantha var. stolonifera to
FIGURE. Individuals in two Populations of Sanicula orthacantha var. brevispina from China, Sichuan, Emei Shan, showing the variation in plant size and rhizome character (each line represents a population). A. C.H. Li 1122 (NAS). B. H.M. Li & Y.S. Zhang 1151 (NAS).
FIGURES 63–68 in Character state variation within Dendrothrips (Thysanoptera: Thripidae) with a revision of the species from China
FIGURES 63–68. Dendrothrips. octosparsus sp. n. 63–64: (63) female; (64) male. (65) sexmaculatus. (66) maltimaculatus. stannardi 67–68: (67) female; (68) male.
FIGURES 57–62. Dendrothrips. magnoliae 57–58 in Character state variation within Dendrothrips (Thysanoptera: Thripidae) with a revision of the species from China
FIGURES 57–62. Dendrothrips. magnoliae 57–58: (57) female; (58) male. minowai 59–60: (59) female; (60) male. ornatus 61–62: (61) female; (62) male.
FIGURES 41–49 in Character state variation within Dendrothrips (Thysanoptera: Thripidae) with a revision of the species from China
FIGURES 41–49. Antenna: (41) homalii male; (42) latimaculatus female; (43) latimaculatus male; (44) minowai; (45) magnoliae female; (46) magnoliae male; (47) octosparsus sp. n. female; (48) octosparsus sp. n. male; (49) stannardi.
FIGURES 38–40 in Character state variation within Dendrothrips (Thysanoptera: Thripidae) with a revision of the species from China
FIGURES 38–40. Male tergites: (38) homalii III–IX; (39) latimaculatus IV–IX. (40) octosparsus sp. n. IV–VIII.
FIGURES 12–23. Dendrothrips. Fore wing 12–16 in Character state variation within Dendrothrips (Thysanoptera: Thripidae) with a revision of the species from China
FIGURES 12–23. Dendrothrips. Fore wing 12–16: (12) homalii; (13) minowai; (14) stannardi; (15) howeii; (16) stannardi. Tergites 17–23: (17) homalii III–VI; (18) sexmaculatus III–VI; (19) virgulatus III–VI; (20) latimaculatus IV–VII; (21) howeii III–V; (22) ornatus IV–VI; (23) octosparsus sp. n. IV–VII.
FIGURES 32–37. Dendrothrips. Tergites 32–35 in Character state variation within Dendrothrips (Thysanoptera: Thripidae) with a revision of the species from China
FIGURES 32–37. Dendrothrips. Tergites 32–35: (32) diaspora IV–VI; (33) jeanneli IV–VI; (34) magnoliae IV–VII; (35) stannardi V–VII. Sternites 36–37: (36) jeanneli V–VII; (37) octosparsus sp. n. VI–VII.
FIGURES 24–31 in Character state variation within Dendrothrips (Thysanoptera: Thripidae) with a revision of the species from China
FIGURES 24–31. Dendrothrips. Meso- and metanotum 24–26: (24) latimaculatus; (25) ornatus; (26) octosparsus sp. n. Forewing 27–31: (27) latimaculatus female; (28) latimaculatus male; (29) magnoliae female; (30) magnoliae male; (31) ornatus.
FIGURE 5 in Ontogenetic And Sexual Variation In Cranial Characters Of Aegialomys Xanthaeolus (Thomas, 1894) (Cricetidae: Sigmodontinae) From Ecuador And Peru
FIGURE 5: Scores of principal component analysis based on the values of 19 variables and designed in the first and second principal component, showing sexual differentiation.
FIGURE 4 in Ontogenetic And Sexual Variation In Cranial Characters Of Aegialomys Xanthaeolus (Thomas, 1894) (Cricetidae: Sigmodontinae) From Ecuador And Peru
FIGURE 4: Scores of principal component analysis based on the values of 19 variables and designed in the first and second principal component, showing differentiation among age classes.
FIGURE 6 in Ontogenetic And Sexual Variation In Cranial Characters Of Aegialomys Xanthaeolus (Thomas, 1894) (Cricetidae: Sigmodontinae) From Ecuador And Peru
FIGURE 6: Scores based on the values of the first nine principal components and designed in the first and second canonical discriminant function.
FIGURE 1 in Ontogenetic And Sexual Variation In Cranial Characters Of Aegialomys Xanthaeolus (Thomas, 1894) (Cricetidae: Sigmodontinae) From Ecuador And Peru
FIGURE 1: Known collection localities of Aegialomys xanthaeolus in South America. The area delimited by a square is detailed in Figure 2. See gazetteer (Appendix B), where numbers are associated with collection localitites.
FIGURE 3 in What about intraspecific variation? Reassessment of taxonomic and phylogenetic characters in the genus Synoeca de Saussure (Hymenoptera: Vespidae: Polistinae)
FIGURE 3. Variation of lower frontal face region for several Synoeca species indicating either contact (left column) or not (right column) between eye and clypeus. A, B. S. septentrionalis. C, D. S. cyanea. E, F. S. surinama.
FIGURE 6 in What about intraspecific variation? Reassessment of taxonomic and phylogenetic characters in the genus Synoeca de Saussure (Hymenoptera: Vespidae: Polistinae)
FIGURE 6. Principal component analysis plots of the geometric morphometric landmarks of the three body regions studied in Synoeca species. A. Head, frontal view; B. Head, dorsal view; C. Metasomal tergum 1 (T1), dorsal view.
FIGURE 2 in What about intraspecific variation? Reassessment of taxonomic and phylogenetic characters in the genus Synoeca de Saussure (Hymenoptera: Vespidae: Polistinae)
FIGURE 2. Variation of clypeus length / malar space length ratio in Synoeca species. Dots refer to the mean and whiskers to the range.
FIGURE 1 in What about intraspecific variation? Reassessment of taxonomic and phylogenetic characters in the genus Synoeca de Saussure (Hymenoptera: Vespidae: Polistinae)
FIGURE 1. Landmarks used in the geometric morphometric analysis indicated in a specimen of Synoeca surinama. A. Head, frontal view. B. Head, dorsal view. C. Metasomal tergum 1 (T1), dorsal view.
FIGURE 5 in What about intraspecific variation? Reassessment of taxonomic and phylogenetic characters in the genus Synoeca de Saussure (Hymenoptera: Vespidae: Polistinae)
FIGURE 5. Variation in thyridium shape. A, B. Synoeca septentrionalis; C, D. S. surinama; E, F. S. cyanea (the same specimen); G, H. S. virginea; I, J. S. chalibea.
FIGURE 7 in What about intraspecific variation? Reassessment of taxonomic and phylogenetic characters in the genus Synoeca de Saussure (Hymenoptera: Vespidae: Polistinae)
FIGURE 7. Phylogenetic analyses of Synoeca species. A. Excluding polymorphic characters. B. Including polymorphic characters. Numbers below each clade refer to the character list in Table 1. Numbers in front of species indicated highly variable characters (Table 1) and their states observed in that species appear within brackets.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.