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一个人的皮肤硬度可预测其触觉敏锐度。

An individual's skin stiffness predicts their tactile acuity.

作者信息

Li Bingxu, Gerling Gregory J

机构信息

Systems and Information Engineering, Mechanical Engineering, University of Virginia.

出版信息

bioRxiv. 2023 Jul 18:2023.07.17.548686. doi: 10.1101/2023.07.17.548686.

Abstract

Individual differences in tactile acuity have been correlated with age, gender, and finger size, while the role of the skin's stiffness has been underexplored. Using an approach to image the 3-D deformation of the skin surface while in contact with transparent elastic objects, we evaluate a cohort of 40 young participants, who present a diverse range of finger size, skin stiffness, and fingerprint ridge breadth. The results indicate that skin stiffness generally correlates with finger size, although individuals with relatively softer skin can better discriminate compliant objects. Analysis of contact at the skin surface reveals that softer skin generates more prominent patterns of deformation, in particular greater rates of change in contact area, which correlate with higher rates of perceptual discrimination, regardless of finger size. Moreover, upon applying hyaluronic acid to soften individuals' skin, we observe immediate, marked and systematic changes in skin deformation and consequent improvements in perceptual acuity. Together, the combination of 3-D imaging of the skin surface, biomechanics measurements, multivariate regression and clustering, and psychophysical experiments show that subtle distinctions in skin stiffness modulate the mechanical signaling of touch and shape individual differences in perceptual acuity.

摘要

触觉敏锐度的个体差异已与年龄、性别和手指大小相关联,而皮肤硬度的作用尚未得到充分研究。我们采用一种方法对皮肤表面与透明弹性物体接触时的三维变形进行成像,评估了40名年轻参与者,他们的手指大小、皮肤硬度和指纹嵴宽度各不相同。结果表明,皮肤硬度通常与手指大小相关,尽管皮肤相对较软的个体能够更好地辨别柔顺物体。对皮肤表面接触情况的分析表明,较软的皮肤会产生更明显的变形模式,尤其是接触面积的变化率更大,这与更高的感知辨别率相关,与手指大小无关。此外,在给个体的皮肤涂抹透明质酸使其变软后,我们观察到皮肤变形立即出现明显且系统的变化,随之感知敏锐度也得到改善。综合来看,皮肤表面的三维成像、生物力学测量、多元回归和聚类分析以及心理物理学实验表明,皮肤硬度的细微差异调节了触觉的机械信号传导,并塑造了感知敏锐度的个体差异。

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