Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
609
datasets available to search
ShareScore release 0.9.0
Dataset results
609 results for “morphometric analysis”
Figure 1 in Taxonomic revision of the Hydroporus bodemeyeri species complex (Coleoptera: Dytiscidae) with a geometric morphometric analysis of body shape within the group
Figure 1. Location of the landmarks (black circles) and sliding semilandmarks (white circles) on the body of Hydroporus.
F in Revision and biogeographical analysis of the black-chinned tilapia Sarotherodon melanotheron (Teleostei, Cichlidae): results of morphometric, allozyme, globin chain and mtDNA studies
F. 6. Neighbour-joining cladogram of the different mtDNA haplotypes identified in S. melanotheron, including cytochrome b sequences of six outgroup species: Oreochromis niloticus, Onil; O. tanganicae, Otan; O. malagarasi, Omal; O. mossambicus, Omos; O. aureus, Oau; Sarotherodon galilaeus, Sgal. Genetic distances were calculated following Kimura's (1980) two-parameter model. For abbreviations of haplotypes see table 1.
F in Revision and biogeographical analysis of the black-chinned tilapia Sarotherodon melanotheron (Teleostei, Cichlidae): results of morphometric, allozyme, globin chain and mtDNA studies
F. 7. Historical biogeographic scenario proposed for S. melanotheron/S. nigripinnis. Main migration routes/expansions from the centre of origin (Congo-Brazzaville/Gabon) are indicated by arrows. The systematic revision of the subspecies complex as proposed in this study is also indicated. The concrete species border between S. melanotheron and S. nigripinnis presently remains unknown.
F in Revision and biogeographical analysis of the black-chinned tilapia Sarotherodon melanotheron (Teleostei, Cichlidae): results of morphometric, allozyme, globin chain and mtDNA studies
F. 5. Unrooted neighbour-joining phylogeny of the 26 different mtDNA haplotypes identified within the sequenced part of the cytochrome b gene (307 bp). Genetic distances were calculated using Kimura's (1980) two-parameter model. The numbers at each node indicate percentage recovery of the particular node (1000 replicates). For abbreviations of haplotypes see table 1.
F in Revision and biogeographical analysis of the black-chinned tilapia Sarotherodon melanotheron (Teleostei, Cichlidae): results of morphometric, allozyme, globin chain and mtDNA studies
F. 2. Plot of factor 1 taken from a PCA on six meristic counts and factor 3 taken from a PCA on 18 log-transformed measurements of 187 specimens. Populations from 'natural' environments are illustrated.
F in Revision and biogeographical analysis of the black-chinned tilapia Sarotherodon melanotheron (Teleostei, Cichlidae): results of morphometric, allozyme, globin chain and mtDNA studies
F. 1. Geographic origin of the S. melanotheron samples examined. The numbering of the sampling localities corresponds to the listing of populations as indicated in table 1.
F in Revision and biogeographical analysis of the black-chinned tilapia Sarotherodon melanotheron (Teleostei, Cichlidae): results of morphometric, allozyme, globin chain and mtDNA studies
F. 4. Genetic relationships between the populations of S. melanotheron examined, based on allozyme data and globin chain characteristics. Unrooted bootstrap 50% majority rule consensus tree. The branch lengths correspond to the number of character changes along the branches. Numbers indicate the percentage obtained using bootstrapping (1000 replicates). For abbreviations of populations see table 1.
FIGURES 145–150. Habitus. 145 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 145–150. Habitus. 145) M. rubens, 146) M. rugonasus, 147) M. townsendi, 148) M. santanderensis sp. nov., 149) M. uno, 150) M. yamijuanum. Scale bar: 2 mm.
FIGURES 139–144. Habitus. 139 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 139–144. Habitus. 139) M. megalops, 140) M. muiscai sp. nov., 141) M. oviedoi, 142) M. papiliovorus, 143) M. quimbayensis sp. nov., 144) M. rogerblancoi. Scale bar: 2 mm.
FIGURES 133–138. Habitus. 133 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 133–138. Habitus. 133) M. huilensis sp. nov., 134) M. iguaquensis sp. nov., 135) M. jerodi sp. nov., 136) M. mariamartae, 137) M. laphygmae, 138) M. magdalensis sp. nov. Scale bar: 2 mm.
FIGURES 127–132. Habitus. 127 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 127–132. Habitus. 127) M. dimidiatus, 128) M. dixi sp. nov., 129) M. dos, 130) M. farallonensis sp. nov., 131) M. guacharensis sp. nov., 132) M. guineverae sp. nov. Scale bar: 2 mm.
FIGURES 121–126. Habitus. 121 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 121–126. Habitus. 121) M. desmiae sp. nov., 122) M. caquetensis sp. nov., 123) M. cecavorum sp. nov., 124) M. chingazensis sp. nov., 125) M. corniculatus, 126) M. calimai. Scale bar: 2 mm.
FIGURES 115–120. Habitus. 115 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 115–120. Habitus. 115) M. alejandromasisi, 116) M. andreae sp. nov., 117) M. amazonensis sp. nov., 118) M. antioquensis sp. nov., 119) M. arizonensis, 120) M. boyacensis sp. nov. Scale bar: 2 mm.
FIGURES 7–14 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 7–14. Mesosoma and metasoma characters. Numbers represent the following species: 7 and 14) M. townsendi, 8) M. caquetensis sp. nov., 9) M. huilensis sp. nov., 10) M. oviedoi, 11) M. uno, 12) M. megalops, 13) M. corniculatus, 7) median depression on propodeum present (arrow), 8) median depression on propodeum absent, 9) notauli distinct and mesonotal lobes well defined, 10) notauli not distinct and mesonotal lobes not well defined, 11) sternaulus long, narrow and foveolate, 12) sternaulus short, narrow and foveolate, 13) sternaulus long, wide and rugose, 14) ftl: first tergite length; ol: ovipositor length.
FIGURE 46 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURE 46. PCA diagrams for the first two factors. Biplot shows distribution of twelve morphological characters. Characters four and five are discussed in the results section. The projection of the first two components may suggest a strong correlation between others couples of characters such as 8 and 9, 6 and 12, but these characters are associated to components other than first and second. Numbers represent the following characters: 1) head width/height ratio, 2) head height/eye height ratio, 3) temple length/eye length in dorsal view ratio, 4) face maximum width/minimum width ratio, 5) face minimum width/clypeus width ratio, 6) malar space length/ mandible width basally ratio, 7) ocelli-ocular distance/ocellar diameter ratio, 8) length of vein r/length of 3RSa ratio, 9) length of vein 3RSa/lenght of r-m ratio, 10) length of vein 1M/lenght of cu-a ratio, 11) length of vein 1M/length of r-m ratio, 12) ovipositor length/ first tergite length ratio.
FIGURES 86–97 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 86–97. Head in lateral view. 86) M. amazonensis sp. nov., 87) M. andreae sp. nov., 88) M. antioquensis sp. nov., 89) M. boyacensis sp. nov., 90) M. caquetensis sp. nov., 91) M. cecavorum sp. nov., 92) M. chingazensis sp. nov., 93) M. dixi sp. nov., 94) M. farallonensis sp. nov., 95) M. guacharensis sp. nov., 96) M. guineverae sp. nov., 97) M. huilensis sp. nov.
FIGURES 63–74 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 63–74. Head in dorsal view 63–66. Head in anterior view 67–74. 63) M. magdalensis sp. nov., 64) M. muiscai sp. nov., 65) M. quimbayensis sp. nov., 66) M. santanderensis sp. nov., 67) M. amazonensis sp. nov., 68) M. andreae sp. nov., 69) M. antioquensis sp. nov., 70) M. farallonensis sp. nov., 71) M. calimai sp. nov., 72) M. caquetensis sp. nov., 73) M. cecavorum sp. nov., 74) M. chingazensis sp. nov.
FIGURES 1–6 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 1–6. Morphometric characters of head. Numbers represent the following species: 1) M. rugonasus sp. nov., 2) M. cecavorum sp. nov., 3) M. huilensis sp. nov., 4) M. jerodi sp. nov., 5) M. santanderensis sp. nov., 6) M. jerodi sp. nov. Abbreviations indicate the following characters, hw: head width, hh: head height, eh: eye height, maw: face maximum width, miw: face minimum width, cw: clypeus width, tl: temples length, el: eyes length in dorsal view, msl: malar space length, mwb: basal mandible width. Fig. 3 shows protuberant eyes and fig. 4 shows not protuberant eyes.
FIGURES 104–114. Propodeum. 104 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 104–114. Propodeum. 104) M. andreae sp. nov., 105) M. antioquensis sp. nov., 106) M. calimai sp. nov., 107) M. cecavorum sp. nov., 108) M. chingazensis sp. nov., 109) M. dixi sp. nov., 110) M. iguaquensis sp. nov., 111) M. magdalensis sp. nov., 112) M. muiscai sp. nov., 113) M. quimbayensis sp. nov., 114) M. santanderensis sp. nov.
FIGURES 33–38 in Taxonomic revision and morphometric analysis of Meteorus Haliday, 1835 (Hymenoptera: Braconidae: Meteorinae) from Colombia 2938
FIGURES 33–38. Boxplots for morphometric measurement ranges of Meteorus species. Numbers represent the following species: 1) M. alejandromasisi, 2) M. dos, 3) M. gigas, 4) M. laphygmae, 5) M. mariamartae, 6) M. megalops, 7) M. oviedoi, 8) M. rogerblancoi, 9) M. townsendi, 10) M. uno, 11) M. yamijuanum, 12) M. huilensis sp. nov., 13) M. guineverae sp. nov., 14) M. muiscai sp. nov., 15) M. jerodi sp. nov., 16) M. rugonasus, 17) M. rubens, 18) M. cecavorum sp. nov., 19) M. andreae sp. nov., 20) M. farallonensis sp. nov., 21) M. quimbayensis sp. nov., 22) M. amazonensis sp. nov., 23) M. arizonensis, 24) M. corniculatus. Horizontal continuous line on figs. 34 and 36 indicate the gap between discrete categories proposed in this work. Dotted line indicates the gap proposed by previous authors.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.