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690 results for “Geometric morphometrics”
Figure 1 in Using 3D geometric morphometrics to aid taxonomic and ecological understanding of a recent speciation event within a small Australian marsupial (Antechinus: Dasyuridae)
Figure 1. Distribution map of the specimens used for this study. Labelled are Antechinus stuartii south, A. stuartii north, A. subtropicus, specimens of unknown identity within the A. stuartii–A. subtropicus species complex, the holotype of A. subtropicus and the neotype of A. stuartii. All figures in this paper are labelled: A. stuartii south in orange, A. stuartii north in pink and A. subtropicus in green. The phylogeny is adapted from Mutton et al. (2019).
Figure 2. A in Using 3D geometric morphometrics to aid taxonomic and ecological understanding of a recent speciation event within a small Australian marsupial (Antechinus: Dasyuridae)
Figure 2. A, box plot and dot plot of centroid size labelling each clade as per Figure 1. Centroid size differences were clear only between the larger Antechinus subtropicus and the smaller A. stuartii (both mean comparisons between A. subtropicus and the two clades of A. stuartii were significant; P = 0.003), but not between A. stuartii south and A. stuartii north (P = 0.282). B, allometry plot consisting of centroid sizes versus shape scores obtained from the regression of shape on size (Drake & Klingenberg, 2008).
Figure 5 in Cranial variation between coastal and offshore boưlenose dolphins, Tursiops truncatus (Cetacea: Delphinidae) in Ecuador and the Mediterranean: a three-dimensional geometric morphometric study
Figure 5. Linear discriminant analysis (LDA) on the first 55 PCs of principal component analysis (PCA) of the three a priori groups of boưlenose dolphins, generated from: A, manual landmarking; B, automatic landmarking.
Figure 3. 3D in Cranial variation between coastal and offshore boưlenose dolphins, Tursiops truncatus (Cetacea: Delphinidae) in Ecuador and the Mediterranean: a three-dimensional geometric morphometric study
Figure 3. 3D LMs points generated from the automatic landmarking from the boưlenose dolphin skull reference template.
Figure 2 in Cranial variation between coastal and offshore boưlenose dolphins, Tursiops truncatus (Cetacea: Delphinidae) in Ecuador and the Mediterranean: a three-dimensional geometric morphometric study
Figure 2. Three-dimensional landmarks used in this study, showed in dorsal (A), ventral (B), lateral (C), and occipital (D) aspects of the boưlenose dolphin skull.
Figure 6 in Cranial variation between coastal and offshore boưlenose dolphins, Tursiops truncatus (Cetacea: Delphinidae) in Ecuador and the Mediterranean: a three-dimensional geometric morphometric study
Figure 6. Ward's clustering analysis based on the first 55 PCs of principal component analysis (PCA) Euclidean distances: A, automatic landmarking; B, manual landmarking. Location shown indicates the origin of the majority of specimens within each cluster.
Figure 1 in Cranial variation between coastal and offshore boưlenose dolphins, Tursiops truncatus (Cetacea: Delphinidae) in Ecuador and the Mediterranean: a three-dimensional geometric morphometric study
Figure 1. Map showing sample number of common boưlenose dolphin individuals per location. Offshore populations in dark red, coastal populations from Guayaquil (Ecuador) in purple, coastal populations from the Mediterranean Sea in orange.
Supplementary material 2 from: Morales-Alonso A, Villaverde T, Jiménez-Mejías P (2023) Geometric Morphometrics sheds light on the systematics affinities of two enigmatic dwarf Neotropical sedges (Carex, Cyperaceae). PhytoKeys 232: 167-187. https://doi.org/10.3897/phytokeys.232.100410
Utricle slide with landmarks; PCA plot with C. macrosolen; Consensus configurations; Group comparison
Data from: BMI and WHR are reflected in female facial shape and texture: a geometric morphometric image analysis
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Data from: Taxonomic and evolutionary pattern revisions resulting from geometric morphometric analysis of Pennsylvanian Neognathodus conodonts, Illinois Basin
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Data from: 2D or Not 2D? Testing the utility of 2D vs. 3D landmark data in geometric morphometrics of the sculpin subfamily Oligocottinae (Pisces; Cottoidea)
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Using 2D dental geometric morphometrics to identify modern Perognathus and Chaetodipus specimens (Rodentia, Heteromyidae)
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Data from: Geometric morphometric analyses of worn cheek teeth help identify extant and extinct gophers (Rodentia: Geomyidae)
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Data from: Bat species comparisons based on external morphology: a test of traditional versus geometric morphometric approaches
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Data from: Morphological disparity in theropod jaws: comparing discrete characters and geometric morphometrics
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Data from: Taxonomic revision of genus Ablattaria Reitter (Coleoptera, Silphidae) employing geometric morphometrics
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Taxonomic identification using virtual palaeontology and geometric morphometrics: a case study of Jurassic nerineoidean gastropods
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Geometric morphometric analysis of Protoconites minor from the Cambrian (Terreneuvian) Yanjiahe Formation in Three Gorges, South China
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Data from: Dealing with allometry in linear and geometric morphometrics: a taxonomic case study in the Leporinus cylindriformis group (Characiformes: Anostomidae) with description of a new species from Suriname
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Data from: Geometric morphometrics suggests different environmental pressures on small and large <em>Polygnathus</em> conodonts during the recovery after the Hangenberg crisis (latest Devonian-earliest Carboniferous)
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.