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Modulation of mandibular loading and bite force in mammals during mastication.

Publication ,  Journal Article
Ross, CF; Dharia, R; Herring, SW; Hylander, WL; Liu, Z-J; Rafferty, KL; Ravosa, MJ; Williams, SH
Published in: The Journal of experimental biology
March 2007

Modulation of force during mammalian mastication provides insight into force modulation in rhythmic, cyclic behaviors. This study uses in vivo bone strain data from the mandibular corpus to test two hypotheses regarding bite force modulation during rhythmic mastication in mammals: (1) that bite force is modulated by varying the duration of force production, or (2) that bite force is modulated by varying the rate at which force is produced. The data sample consists of rosette strain data from 40 experiments on 11 species of mammals, including six primate genera and four nonprimate species: goats, pigs, horses and alpacas. Bivariate correlation and multiple regression methods are used to assess relationships between maximum (epsilon(1)) and minimum (epsilon(2)) principal strain magnitudes and the following variables: loading time and mean loading rate from 5% of peak to peak strain, unloading time and mean unloading rate from peak to 5% of peak strain, chew cycle duration, and chew duty factor. Bivariate correlations reveal that in the majority of experiments strain magnitudes are significantly (P<0.001) correlated with strain loading and unloading rates and not with strain loading and unloading times. In those cases when strain magnitudes are also correlated with loading times, strain magnitudes are more highly correlated with loading rate than loading time. Multiple regression analyses reveal that variation in strain magnitude is best explained by variation in loading rate. Loading time and related temporal variables (such as overall chew cycle time and chew duty factor) do not explain significant amounts of additional variance. Few and only weak correlations were found between strain magnitude and chew cycle time and chew duty factor. These data suggest that bite force modulation during rhythmic mastication in mammals is mainly achieved by modulating the rate at which force is generated within a chew cycle, and less so by varying temporal parameters. Rate modulation rather than time modulation may allow rhythmic mastication to proceed at a relatively constant frequency, simplifying motor control computation.

Published In

The Journal of experimental biology

DOI

EISSN

1477-9145

ISSN

0022-0949

Publication Date

March 2007

Volume

210

Issue

Pt 6

Start / End Page

1046 / 1063

Related Subject Headings

  • Time Factors
  • Regression Analysis
  • Physiology
  • Mastication
  • Mandible
  • Mammals
  • Bite Force
  • Biomechanical Phenomena
  • Animals
  • 31 Biological sciences
 

Citation

APA
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ICMJE
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Ross, C. F., Dharia, R., Herring, S. W., Hylander, W. L., Liu, Z.-J., Rafferty, K. L., … Williams, S. H. (2007). Modulation of mandibular loading and bite force in mammals during mastication. The Journal of Experimental Biology, 210(Pt 6), 1046–1063. https://doi.org/10.1242/jeb.02733
Ross, Callum F., Ruchi Dharia, Susan W. Herring, William L. Hylander, Zi-Jun Liu, Katherine L. Rafferty, Matthew J. Ravosa, and Susan H. Williams. “Modulation of mandibular loading and bite force in mammals during mastication.The Journal of Experimental Biology 210, no. Pt 6 (March 2007): 1046–63. https://doi.org/10.1242/jeb.02733.
Ross CF, Dharia R, Herring SW, Hylander WL, Liu Z-J, Rafferty KL, et al. Modulation of mandibular loading and bite force in mammals during mastication. The Journal of experimental biology. 2007 Mar;210(Pt 6):1046–63.
Ross, Callum F., et al. “Modulation of mandibular loading and bite force in mammals during mastication.The Journal of Experimental Biology, vol. 210, no. Pt 6, Mar. 2007, pp. 1046–63. Epmc, doi:10.1242/jeb.02733.
Ross CF, Dharia R, Herring SW, Hylander WL, Liu Z-J, Rafferty KL, Ravosa MJ, Williams SH. Modulation of mandibular loading and bite force in mammals during mastication. The Journal of experimental biology. 2007 Mar;210(Pt 6):1046–1063.
Journal cover image

Published In

The Journal of experimental biology

DOI

EISSN

1477-9145

ISSN

0022-0949

Publication Date

March 2007

Volume

210

Issue

Pt 6

Start / End Page

1046 / 1063

Related Subject Headings

  • Time Factors
  • Regression Analysis
  • Physiology
  • Mastication
  • Mandible
  • Mammals
  • Bite Force
  • Biomechanical Phenomena
  • Animals
  • 31 Biological sciences