<p>The tactile sensation of hair depends on its shape and mechanical properties. However, scientific analysis of hair bundles during the combing process is not a lot. This study explored hand movements and mechanical stimuli using an in-situ tactile sensing system to uncover the physical origin of tactile sensation and the attractiveness of three hair bundle types: straight, curly, and wavy. The straight hair type received the highest attractiveness score (6.9 ± 2.5), closely associated with the sensations of smoothness and slipperiness. While a higher smoothness score correlated with a smaller vertical force <i>F</i><sub><i>z</i></sub>, with a value exceeding eight at <i>F</i><sub><i>z</i></sub> &lt; 1.2&#xa0;N, a higher slippery sensation score correlated with a smaller moment <i>M</i><sub><i>x</i></sub>, with a value surpassing eight at <i>M</i><sub><i>x</i></sub> &lt; 0.15&#xa0;N m. Smooth and slippery sensations were implicated as the dominant factors of hair attractiveness. The smooth sensation arises when fingers glide through the hair during hand-combing without encountering resistance, while the slippery sensation is perceived as fingers pass through the ends of the hair with minimal force.</p>

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Tactile sensation and attractiveness of hair bundles in the combing process

  • Shuko Konno,
  • Koji Asanuma,
  • Yoshimune Nonomura

摘要

The tactile sensation of hair depends on its shape and mechanical properties. However, scientific analysis of hair bundles during the combing process is not a lot. This study explored hand movements and mechanical stimuli using an in-situ tactile sensing system to uncover the physical origin of tactile sensation and the attractiveness of three hair bundle types: straight, curly, and wavy. The straight hair type received the highest attractiveness score (6.9 ± 2.5), closely associated with the sensations of smoothness and slipperiness. While a higher smoothness score correlated with a smaller vertical force Fz, with a value exceeding eight at Fz < 1.2 N, a higher slippery sensation score correlated with a smaller moment Mx, with a value surpassing eight at Mx < 0.15 N m. Smooth and slippery sensations were implicated as the dominant factors of hair attractiveness. The smooth sensation arises when fingers glide through the hair during hand-combing without encountering resistance, while the slippery sensation is perceived as fingers pass through the ends of the hair with minimal force.