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81.
The subgenus Anopheles (Nyssorhynchus) (Diptera: Culicidae) includes the primary vectors of Plasmodium spp. in Colombia. Most adult females of this subgenus are difficult to identify in the field using the available keys. With the objective of further investigating the discriminatory power of modern morphometrics, both landmark‐based and outline‐based approaches were explored using the wing venation geometry of 11 Anopheles (Nyssorhynchus) species. Wing shape was able to separate the closest species of the subgenus. When the 11 species were analysed together, validated classification scores on average 5.3–8.6 times higher than those expected by chance were observed. These scores computed from the total sample of 11 species were not satisfactory for the recognition of Anopheles benarrochi B, Anopheles oswaldoi s.l. and Anopheles strodei. These sibling species were captured in sympatry. To improve the identification power of the morphometric tool, it was necessary to analyse these species separately from the remaining species. The best classification scores were obtained using a combination of 12 landmarks collected not only on the intersections of wing veins, but also on spots. An outline approach also gave excellent reclassification scores. Another pair of sibling species, collected in allopatry, Anopheles nuneztovari and Anopheles rangeli, also showed high classification scores.  相似文献   
82.
Discovered in 1971 by Henry and Marie-Antoinette de Lumley, Arago 21 is the oldest complete human face from Europe. Three-dimensional virtual imaging methods were used to isolate the fossil fragments before articulating them according to their anatomical constraints. This new reconstruction of Arago 21, the first virtual one, was then compared by Procrustes superimposition to Pleistocene European, Asian and African fossils. These results, limited to the frontal bone, highlight the proximity between Arago 21 and fossils like Sima de los Huesos 5. However, anatomical and metric differences remain.  相似文献   
83.
Appropriate sampling effort is crucial for ecologists. Procrustes analysis can be used to tackle this question by quantifying the match between subsamples and the complete dataset. We used stream macroinvertebrates to show how sampling design can be optimized by reducing the number of subsamples and increasing the number of sites.  相似文献   
84.
The ability to generate large closing forces is important for many animals. Several studies have demonstrated that bite or pinching force capacity is usually related to the linear dimensions of the closing apparatus. However, relatively few studies have applied geometric morphometrics to examine the effects of size‐independent shape on force production, particularly in studies of crustacean pinching force. In this study, we utilized traditional and geometric morphometric techniques to compare the pinching force of Procambarus clarkii crayfish to their chela morphology. We found that males possessed larger chelae and pinched harder than females, but that their chela shape and size were weak predictors of strength. Female pinching force was significantly affected by both chela size and shape, with shape variation along the short axis of the claw contributing most to pinching force. We discuss our results in the context of reliable signaling of strength by males and females, and the different selective forces acting on chela shape in the two sexes.  相似文献   
85.
The cranial morphology of Lemur catta and of the five species of the genus Eulemur is investigated here by landmark identification and Procrustes superimpositions. This geometrical morphometric method makes it possible to describe pure shape differences independent of size effects, and to quantify differences between specimens. The aim of this study is to determine whether the morphological disparity of lemur skulls is constrained by the environment and/or by the group's phylogenetic history. First, Procrustes residuals are analysed by principal component analysis and the scatter-plots interpreted against the geographical distributions of taxa to determine whether morphology is correlated with geography. Then, a morphological distance tree is computed and compared with various cladograms reported in the literature to test for any correlation between morphology and phylogeny. Morphological disparity is found to be closely correlated with geographical distribution but independent of phylogeny. This confirms that the morphological disparity of lemur skulls is associated with a high degree of homoplasy, probably as a result of ecological constraints.  © 2002 The Linnean Society of London, Biological Journal of the Linnean Society , 2002, 76 , 577–590.  相似文献   
86.
Locomotion in terrestrial tetrapods is reliant on interactions between distal limb bones (e.g. metapodials and phalanges). The metapodial–phalangeal joint in horse (Equidae) limbs is highly specialized, facilitating vital functions (shock absorption; elastic recoil). While joint shape has changed throughout horse evolution, potential drivers of these modifications have not been quantitatively assessed. Here, I examine the morphology of the forelimb metacarpophalangeal (MCP) joint of horses and their extinct kin (palaeotheres) using geometric morphometrics and disparity analyses, within a phylogenetic context. I also develop a novel alignment protocol that explores the magnitude of shape change through time, correlated against body mass and diet. MCP shape was poorly correlated with mass or diet proxies, although significant temporal correlations were detected at 0–1 Myr intervals. A clear division was recovered between New and Old World hipparionin MCP morphologies. Significant changes in MCP disparity and high rates of shape divergence were observed during the Great American Biotic Interchange, with the MCP joint becoming broad and robust in two separate monodactyl lineages, possibly exhibiting novel locomotor behaviour. This large-scale study of MCP joint shape demonstrates the apparent capacity for horses to rapidly change their distal limb morphology to overcome discrete locomotor challenges in new habitats.  相似文献   
87.
The field of morphometrics is developing quickly and recent advances allow for geometric techniques to be applied easily to many zoological problems. This paper briefly introduces geometric morphometric techniques and then reviews selected areas where those techniques have been applied to questions of general interest. This paper is relevant to non-specialists looking for an entry into geometric morphometric methods and for ideas of how to incorporate them into the study of variation within and between species, the measurement of developmental stability, the role of development in shaping evolution and the special problem of measuring the shape of fossil specimens that are deformed from their original shape.  相似文献   
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