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皱纹形成的力学机制:紫外线照射诱导小鼠皮肤形成皱纹过程中的皮肤变形的细观力学分析。

Mechanics of wrinkle formation: micromechanical analysis of skin deformation during wrinkle formation in ultraviolet-irradiated mice.

机构信息

Biomechanics Laboratory, Department of Mechanical Engineering, Nagoya Institute of Technology, Omohi College, Nagoya, Japan.

出版信息

Skin Res Technol. 2010 May;16(2):179-89. doi: 10.1111/j.1600-0846.2009.00419.x.

Abstract

BACKGROUND/PURPOSE: The mechanical aspects of wrinkle formation were studied in the dorsal skin of hairless mice.

METHODS

Wrinkles were induced by irradiating with ultraviolet (UV) B for 10 weeks, while observing skin deformation during wrinkle formation. Changes in skin dimensions were also observed during the specimen excision process. Wrinkle depth and interval were measured before and after removal of the cutaneous muscle layer. Local deformation of wrinkled skin during uniaxial stretch was also measured. Changes in curvature of skin specimens upon muscle layer removal were then observed to determine the force balance in skin layers.

RESULTS

The skin showed spontaneous contraction in response to UV irradiation. Wrinkled skin showed a marked decrease in the wrinkle depth and a slight increase in wrinkle interval following muscle layer removal, a peculiar mechanical response that cannot be explained by homogeneous deformation of the skin. This response was due to compressive deformations of dermal tissue caused by the muscle layer and concentrated at valleys of the wrinkles. Curvature measurements indicated that the muscle layer compressed the dermal tissue predominantly in the craniocaudal direction. Morphological observations showed that the wrinkles coincided with rows of pores and sulci cutis, where the structural stiffness of the horny layer was relatively low. The horny layer showed significant thickening.

CONCLUSION

Taken together, we propose the following hypothetical mechanisms of wrinkle formation during UV irradiation: spontaneous contraction of the dermis while maintaining or increasing the epidermal area induces buckling of the epidermis into the dermis at mechanically weak lines, namely, the rows of pores and sulci cutis, and buckling may be amplified by the axial compression of the dermis by the muscle layer.

摘要

背景/目的:研究无毛小鼠背部皮肤的皱纹形成的力学方面。

方法

通过用紫外线(UV)B 照射 10 周来诱导皱纹,同时观察皱纹形成过程中的皮肤变形。在标本切除过程中还观察了皮肤尺寸的变化。在去除皮肤肌肉层前后测量皱纹深度和间隔。还测量了单轴拉伸过程中皱纹皮肤的局部变形。观察去除肌肉层后皮肤标本曲率的变化,以确定皮肤层中的力平衡。

结果

皮肤对紫外线照射表现出自发收缩。去除肌肉层后,皱纹皮肤的皱纹深度明显减小,皱纹间隔略有增加,这是一种特殊的机械响应,不能用皮肤的均匀变形来解释。这种反应是由于肌肉层对真皮组织的压缩变形引起的,并且集中在皱纹的山谷处。曲率测量表明,肌肉层主要沿颅尾方向压缩真皮组织。形态学观察表明,皱纹与毛孔和皮肤沟线重合,角质层的结构刚度相对较低。角质层明显增厚。

结论

综上所述,我们提出了以下在 UV 照射下形成皱纹的假设机制:真皮的自发收缩同时保持或增加表皮区域会导致表皮在机械上较弱的线处向真皮起皱,即毛孔和皮肤沟线,并且起皱可能被肌肉层对真皮的轴向压缩放大。

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