Yazdekhasti Saba, LaVoy Emily C, Gorniak Stacey L
Department of Health and Human Performance, University of Houston, Houston, TX, United States.
Department of Health and Human Performance, University of Houston, Houston, TX, United States.
J Biomech. 2025 Apr;183:112640. doi: 10.1016/j.jbiomech.2025.112640. Epub 2025 Mar 19.
This study investigates breast biomechanics during physical activities, aiming to evaluate the magnitude of breast tissue acceleration using different modalities.We aim to compare existing methodologies for evaluating breast movement by comparing acceleration data derived from 3D motion capture marker displacement of the nipple-region and triaxial accelerometry data collected from multiple breast regions. Twenty female participants, with cup sizes ranging from D to H, engaged in a series of physical tasks while wearing different types of support, ranging from conventional everyday bras to sports bras designed for full-busted women. Triaxial accelerometers consistently indicated higher acceleration magnitudes, potentially due to their ability to detect localized movements that 3D motion capture may smooth out during data post-processing. Our findings suggest that when breasts are well-supported by a sports bra, external triaxial accelerometry markers accurately reflect breast tissue acceleration. This reinforces the reliability of sports bras in ensuring uniform support and highlights the need for standardized breast biomechanics measurement protocols. The findings of this study may be used to help optimize sports bra design as well as the refining of breast biomechanics measurement methodologies in women with larger bra sizes.
本研究调查了体育活动期间的乳房生物力学,旨在使用不同方法评估乳房组织加速度的大小。我们旨在通过比较从乳头区域的三维运动捕捉标记位移得出的加速度数据和从多个乳房区域收集的三轴加速度计数据,来比较现有的评估乳房运动的方法。二十名杯罩尺寸从D到H的女性参与者,在穿着从传统日常胸罩到为胸部丰满女性设计的运动胸罩等不同类型支撑物的情况下,进行了一系列体育任务。三轴加速度计始终显示出更高的加速度大小,这可能是由于它们能够检测到三维运动捕捉在数据后处理过程中可能会平滑掉的局部运动。我们的研究结果表明,当乳房得到运动胸罩的良好支撑时,外部三轴加速度计标记能准确反映乳房组织加速度。这强化了运动胸罩在确保均匀支撑方面的可靠性,并突出了标准化乳房生物力学测量方案的必要性。本研究结果可用于帮助优化运动胸罩设计,以及完善大杯罩尺寸女性的乳房生物力学测量方法。