首页> 外文期刊>British Journal of Dermatology >Fingerprint maintenance, a new dermatoglyphic mechanism.
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Fingerprint maintenance, a new dermatoglyphic mechanism.

机译:指纹维护,一种新的皮肤雕刻机制。

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BACKGROUND: Although dermatoglyphic structure has been mechanistically related to fingerprint formation, a separate mechanism for fingerprint maintenance must exist or prints would be lost by friction. OBJECTIVES: To test this prediction and study its operation. METHODS: Palmar and plantar prints were studied visually and by silicone rubber impressions after surface removal by abrasives, scalpel and adhesive stripping, using surface staining to stage surface loss. RESULTS: All depths and methods of surface removal left the print ridges intact visually and in silicone rubber impressions. When abrasion was applied only to ridge surfaces, keratinocytes were lost concomitantly in the troughs between them, leaving ridge structure intact. When palmar or plantar stratum corneum was cleaved or peeled apart, the separated layer followed the undulating ridges and troughs, thus maintaining the normal print pattern. CONCLUSIONS: A new mechanism of fingerprint maintenance was predicted theoretically and confirmed experimentally. It is achieved by an organization of the print corneum which ensures its continuous separation over the whole of the undulating print surface, even when friction is applied only to the tips of the ridges; the preferred route of separation of print keratinocytes runs up and down the print ridges and troughs and thereby maintains them, and is presumably ordered by predominantly horizontal intercellular attachments between print keratinocytes. The reason print maintenance has been missed until now may be that dermatoglyphic researchers have little interest in fingerprint disguise, while those who are interested in disguise have little interest in research.
机译:背景:尽管皮纹结构在机械上与指纹的形成有关,但是必须存在一个单独的指纹维护机制,否则摩擦会导致指纹丢失。目的:测试该预测并研究其运行。方法:目视研究手掌和足底的印记,并通过用磨料,手术刀和胶粘剂剥离去除表面后的硅橡胶压痕进行研究,并使用表面染色法处理表面损失。结果:所有深度和表面去除方法都在视觉上和硅橡胶印痕上保持印刷脊完整无缺。当仅对脊表面进行磨蚀时,角质形成细胞同时在其间的槽中丢失,使脊结构完整。当手掌或足底角质层被劈开或剥离时,分离的层跟随起伏的脊和谷,从而保持正常的印刷图案。结论:从理论上预测并通过实验证实了一种新的指纹维持机制。这是通过打印角质层的结构来实现的,即使在仅对脊的尖端施加摩擦的情况下,也可以确保其在整个起伏的打印表面上的连续分离。印刷角质形成细胞的优选分离途径在印刷隆起和波谷之间上下移动,从而维持它们,并且大概是由印刷角质形成细胞之间主要水平的细胞间附着所决定的。到目前为止,一直缺少打印维护的原因可能是因为皮肤雕刻研究人员对指纹伪装的兴趣不大,而对伪装感兴趣的人对研究的兴趣却很小。

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