Literature DB >> 9740306

Fluctuating asymmetry and morphometric variation of hand bones.

G Livshits1, K Yakovenko, L Kletselman, D Karasik, E Kobyliansky.   

Abstract

The major aim of this study was to test three hypotheses: 1) more complex traits of the hand are less prone to developmental insults and therefore show lower fluctuating asymmetry (FA) as compared with simple traits; 2) the manifestation of FA correlates with the variability of the trait (i.e., CV); and 3) FA is an organ-wide property, and therefore a concordance exists between the FA measures of different traits in hand bones. Seventy-two bilateral measurements of hand bones, were made from plain-film radiographs of 365 cadavers. A complex trait was considered as the total length of the three phalanges of a finger and their contiguous metacarpals. Simple traits were considered to be the lengths of individual bone that made up the complex trait. The following results were obtained: 1) on the average simple traits, composing the complex trait, show much higher FA than the corresponding complex trait, but this result is expected if there is no correlation (or low correlation) between FA of simple traits within the complex trait, due to random direction of right-left differences; 2) strong and highly significant correlation was observed between FA and CV of studied traits, regardless of sex and age of individuals; and 3) the majority of FA measurements of hand bones showed no correlation. However, correlations between some sets of FA traits were highly significant. They were interpreted, although not specifically tested, as the result of a tight relationship between traits related not only developmentally but also by active performance of the same function.

Mesh:

Year:  1998        PMID: 9740306     DOI: 10.1002/(SICI)1096-8644(199809)107:1<125::AID-AJPA10>3.0.CO;2-2

Source DB:  PubMed          Journal:  Am J Phys Anthropol        ISSN: 0002-9483            Impact factor:   2.868


  8 in total

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3.  Frequency variations of discrete cranial traits in major human populations. III. Hyperostotic variations.

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4.  Assessment of the bilateral asymmetry of human femurs based on physical, densitometric, and structural rigidity characteristics.

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6.  A genome wide linkage scan of metacarpal size and geometry in the Framingham Study.

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Review 7.  Canalization, developmental stability, and morphological integration in primate limbs.

Authors:  Benedikt Hallgrímsson; Katherine Willmore; Brian K Hall
Journal:  Am J Phys Anthropol       Date:  2002       Impact factor: 2.868

8.  Asymmetry and structural system analysis of the proximal femur meta-epiphysis: osteoarticular anatomical pathology.

Authors:  Ali A Samaha; Alexander V Ivanov; John J Haddad; Alexander I Kolesnik; Safaa Baydoun; Maher R Arabi; Irena N Yashina; Rana A Samaha; Dimetry A Ivanov
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  8 in total

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