2001
DOI: 10.1034/j.1600-0846.2001.007001018.x
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Viscoelastic properties of human skin and processed dermis

Abstract: The differences in the collagen types present in skin and tendon may influence collagen self-assembly and the resulting viscoelastic properties.

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Cited by 399 publications
(369 citation statements)
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“…AllodermÒ consists of 2 layers, papillary dermis and reticular dermis, that differ in porosity. 12,13 The papillary dermis is composed of randomly and loosely oriented collagen fibers, whereas the reticular layer is composed of dense collagen fiber bundles that form a complex 3-dimensional array. In addition, contained in both layers of the dermis are blood vessels, hair follicles, and glands.…”
Section: Discussionmentioning
confidence: 99%
“…AllodermÒ consists of 2 layers, papillary dermis and reticular dermis, that differ in porosity. 12,13 The papillary dermis is composed of randomly and loosely oriented collagen fibers, whereas the reticular layer is composed of dense collagen fiber bundles that form a complex 3-dimensional array. In addition, contained in both layers of the dermis are blood vessels, hair follicles, and glands.…”
Section: Discussionmentioning
confidence: 99%
“…The mechanical properties of skin and isolated dermis are similar suggesting that the epidermis normally does not play a significant role in mechanical properties of skin [2]. However, under extreme loading conditions the epidermis thickens and produces calluses that stiffen the skin.…”
Section: Introductionmentioning
confidence: 69%
“…The correlation coefficient between these moduli is 0.984 as previously reported [22]. The relationship between tensile and vibrational moduli was approximated using Equation (2). The material behavior was reported to be reversible for strains less than about 14% for up to three cycles of tensile testing [21] [22].…”
Section: Calibration Studiesmentioning
confidence: 92%
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“…Em relação às propriedades mecânicas, a pele humana é viscoelástica, ou seja, apresenta tanto características elásticas quanto plásti-cas, devido aos seus constituintes e à sua ultra-estrutura organizacional. Devido a este comportamento viscoelástico, esta tende a não retornar ao seu estado inicial de maneira imediata, quando submetida a uma deformação temporária em sua estrutura por meio da aplicação de forças externas (Silver et al, 2001;Silver et al, 2003). Esse fenômeno ocorre na pele jovem e é acentuado na pele envelhecida (Oba et al, 2002).…”
Section: Propriedades Mecânicas Da Peleunclassified