Structural equation modeling of female gait attractiveness using gait kinematics.

Sci Rep

Japan Society for the Promotion of Science, 5-3-1 Kojimachi, Chiyoda-ku, Tokyo, 102-0083, Japan.

Published: October 2023

AI Article Synopsis

  • This study examines how the attractiveness of a person's walk (gait) influences how we perceive them physically and socially, using specific measurements of movement and body shape.
  • Researchers created animations of 17 women, including professional models, walking in both barefoot and high-heel scenarios, and then analyzed various gait characteristics that might contribute to attractiveness.
  • The findings identified two main factors that predict gait attractiveness: one related to the shape of the upper body and head, and another that combines body physique with health-related movement features, enhancing our understanding of nonverbal communication through body movement.

Article Abstract

In our social lives, movement's attractiveness greatly affects interpersonal cognition, and gait kinematics mediates walkers' attractiveness. However, no model using gait kinematics has so far predicted gait attractiveness. Thus, this study constructed models of female gait attractiveness with gait kinematics and physique factors as explanatory variables for both barefoot and high-heel walking. First, using motion capture data from 17 women walking, including seven professional runway models, we created gait animations. We also calculated the following gait kinematics as candidate variables to explain walking's attractiveness: four body-silhouette-related variables and six health-related variables. Then, 60 observers evaluated each gait animation's attractiveness and femininity. We performed correlation analysis between these variables and evaluation scores to obtain explanatory variables. Structural equation modeling suggested two models for gait attractiveness, one composed of trunk and head silhouette factors and the other of physique, trunk silhouette, and health-related gait factors. The study's results deepened our understanding of mechanisms behind nonverbal interpersonal cognition through physical movement and brought us closer to realization of artificial generation of attractive gait motions.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10587354PMC
http://dx.doi.org/10.1038/s41598-023-45130-2DOI Listing

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