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A Fourier-wavelet representation of 2-D shapes

Sexual dimorphism in the Japanese cranial base

Dados Bibliográficos

ID6136046
AutoresPete E Lestrel (School of Dentistry, University of California, Los Angeles), Roberto M César (0000-0003-2701-4288, Universidade de São Paulo), ROBERTO M CESAR Jr (Universidade de São Paulo), Osamu Takahashi (0000-0002-6454-3990, Nihon University School of Dentistry at Matsudo), Eisaku Kanazawa (Nihon University School of Dentistry at Matsudo)
Ano2004
Volume112
Fascículo1
Páginas3-28
Data de publicação2004-01-01
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoAnthropological Science (JOURNAL)
Identificadores do periódicoISSN: 0918-7960 • E-ISSN: 1348-8570
EditoraAnthropological Society of Nippon (PUBLISHER • JP)
DOI10.1537/ase.00069
OpenAlexW1970436921
IdiomaEN
Citações recebidas6
Referências citadas51

We present a new approach called computational shape analysis, which utilizes a Fourier-wavelet representation for characterizing shape features of 2-D forms commonly encountered in a wide set of sub-disciplines within the biological sciences. The morphology of interest consists of the human cranial base (CB) as depicted on lateral cephalometric radiographs. Given a complex irregularly bounded form in Cartesian coordinate space, we first compute elliptical Fourier functions (EFFs) using a set of closely-spaced pseudo-homologous (x, y) points, starting at basion, to create a precise analog of the closed contour. This computed contour is then scaled (size-standardization) and rotated (positional-orientation) to provide for a common normalization. This insures that the representation is invariant with respect to starting point, size and orientation. Utilizing the EFFs, global aspects of the CB can then be extracted. The coordinates derived from the EFF were subsequently submitted to a continuous wavelet transform (CWT). Wavelet coefficients were then computed to identify localized features. The significant advantage of wavelets is that they are able to objectively identify changes in boundary curvature, thereby depicting localized aspects not easily attainable with other methods. Utilizing a sample of 297 Japanese cranial base outlines, statistically-significant differences in sex and archeological age were found. Although archeological age differences were present, they were small and largely random in character, suggesting stability in the CB structures. The presence of sexually dimorphic differences is consistent with earlier data derived from studies of Macaca nemestrina. In the current study, these differences in sexual dimorphism were present for every group starting with the Yayoi period and continuing up to the Modern period. Consequently, one may infer that the pattern of sexual dimorphism documented in the Japanese CB, is a primate pattern with an ancient evolutionary history. Wavelets were particularly useful in objectively identifying this sexual dimorphism. The results demonstrate that the Fourier-wavelet representation is a practical approach for numerically describing and visually depicting both global and localized features

Biology · Fourier transform · Geometry · Mathematical analysis · Normalization (sociology · Pattern recognition (psychology · Representation (politics · Sexual dimorphism · Wavelet · Computer Science · Image Processing and 3D Reconstruction · Image Retrieval and Classification Techniques · Mathematics · Morphological variations and asymmetry · Artificial Intelligence

  • Mandibular shape analysis in fossil hominins

    Open Access•Pete E Lestrel, C A Wolfe et al.•HOMO•2013

  • Fuzzy Typological (Re)arrangement

    Open Access•Danai Kafetzaki, Jeroen Poblome et al.•Journal of Archaeological Method…•2023

  • Morphometrics of Second Iron Age ceramics – strengths, weaknesses, and comparison with traditional typology

    Open Access•Josef Wilczek, Fabrice Monna et al.•Journal of Archaeological Science•2014

  • Sexual dimorphism in chin shape

    Open Access•Zaneta M Thayer, Seth D Dobson•American Journal of Physical…•2010

  • Sexual dimorphism in the Japanese cranial base

    Open Access•Pete E Lestrel, Roberto M César et al.•American Journal of Physical…•2005

  • Sexual dimorphism using elliptical Fourier analysis

    Open Access•Pete E Lestrel, Eisaku Kanazawa et al.•Anthropological Science•2010

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    Open Access•Frank P Kuhl, Charles R Giardina•Computer Graphics and Image…•1982

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    J W Herivel, J Herivel et al.•Physics Today•1975

  • Analysis of the velocity curve for height by the wavelet interpolation method in children classified by maturity rate

    Open Access•Katsunori Fujii, Yoshiyuki Matsuura•American Journal of Human Biology•1999

  • Analysis of the velocity curve for height by the wavelet interpolation method in children classified by maturity rate

    Open Access•Katsunori Fujii, Yoshiyuki Matsuura•American Journal of Human Biology•1999

  • Method for analyzing complex two‐dimensional forms

    Open Access•Pete E Lestrel•American Journal of Human Biology•1989

  • Longitudinal study of cranial base shape changes in Macaca nemestrina

    Open Access•Pete E Lestrel, Albert Bodt et al.•American Journal of Physical…•1993

  • The promise of geometric morphometrics

    Open Access•Joan T Richtsmeier, Valerie B Deleon et al.•American Journal of Physical…•2002

  • Temporal Changes in Maxillary Alveolar Profile Angle and Inclination of Incisor in Japan

    Open Access•Miho Ohsako•Anthropological Science•2000

Obras citantes distintas6
Citações por ano0,29
Intervalo de citações2005 - 2023 (19)
Velocidade de citaçãohistorical
Altamente citadoNão
Tipos de citaçãoNeutras: 5
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