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The effect of female breast surface area on skin stiffness and tactile sensitivity at rest and following exercise in the heat.

The effect of female breast surface area on skin stiffness and tactile sensitivity at rest and following exercise in the heat.

Authors :
Blount, Hannah
Valenza, Alessandro
Ward, Jade
Caggiari, Silvia
Worsley, Peter R.
Filingeri, Davide
Source :
Experimental Physiology. Oct2024, Vol. 109 Issue 10, p1698-1709. 12p.
Publication Year :
2024

Abstract

Female development includes significant morphological changes across the breast. Yet, whether differences in breast surface area (BrSA) modify breast skin stiffness and tactile sensitivity at rest and after exercise in the heat remain unclear. We investigated the relationship between BrSA and skin stiffness and tactile sensitivity in 20 young to middle‐aged women (27 ± 8 years of age) of varying breast sizes (BrSA range: 147–502 cm2) at rest and after a submaximal run in a warm climatic chamber (32C${\mathrm{C}}$ ± 0.6C;${\mathrm{0}}{\mathrm{.6C;}}$ 53% ± 1.7% relative humidity). Skin stiffness above and below the nipple and tactile sensitivity from the nipple down were measured. Associations between BrSA and both skin stiffness and tactile sensitivity at rest were determined via correlation analyses. Effects of exercise and test site were assessed by a two‐way ANOVA. Skin stiffness was positively correlated with BrSA 3 cm above the areola edge (r = 0.61, P = 0.005) and at the superior areola border (r = 0.54, P = 0.016), but not below the nipple (P > 0.05). The area 3 cm below the areola was also significantly stiffer than all other test sites (P < 0.043). Tactile sensitivity did not vary with BrSA (P > 0.09), but it varied across the breast (i.e., the area 3 cm below the areola was more sensitive than the inferior areola edge; P = 0.018). Skin stiffness and tactile sensitivity across the breast decreased after exercise by ∼37% (P < 0.001) and ∼45% (P = 0.008), respectively. These findings expand our fundamental understanding of the mechanosensory properties of the female breast, and they could help to inform sportswear innovation to better meet the support needs of women of different breast sizes at rest and following exercise. What is the central question of this study?How do differences in breast surface area impact skin stiffness and tactile sensitivity in healthy women before and after running in the heat?What is the main finding and its importance?We found a new relationship between breast morphology and skin stiffness, such that skin stiffness increased linearly with breast surface area in the upper breast. Furthermore, skin stiffness and tactile sensitivity decreased after exercise in the heat. These findings expand our fundamental understanding of breast mechanosensory properties and they could help to inform sportwear innovation to meet the support needs of women of different breast sizes better. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09580670
Volume :
109
Issue :
10
Database :
Academic Search Index
Journal :
Experimental Physiology
Publication Type :
Academic Journal
Accession number :
180044910
Full Text :
https://doi.org/10.1113/EP091990