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P Corcuff

Publications and source records attributed to P Corcuff.

24 records · Page 2Linked to original sources

In vivo studies of the evolution of physical properties of the human skin with age.

In vivo measurements taken by valid methods, help to interpret the phenomena associated with the aging process. The authors developed some routine techniques to measure physical properties of the skin both deep in the dermis-epidermis and at the surface (stratum corneum). Measurements on the forearm of 150 people yielded the following results regarding the dermis-epidermis level: (1) skin thickness begins to decrease at 45 years of age for men and women, when women's skin becomes thinner than men's skin; (2) torsion extensibility, normalized for a given skin thickness, sharply decreases after 35 years of age; (3) skin optical properties are modified, ie the photoplethysmographic signal, measured on the forehead, greatly increase after 60 years of age; (4) at the cutaneous surface level, the main modifications are increased shedding of stratum corneum after 60 years of age in parallel with a modification of the stratum corneum cohesivity, altered skin microrelief during the aging process, and slightly decreased transepidermal water loss while the corneocyte projected size increases. These findings allow consideration of the aging process at the skin level as a phased process. The alterations of the physical properties and their kinetics suggest a various process according to the different cutaneous sections.

Adolescent↗

In vivo spatio-temporal visualization of the human skin by real-time confocal microscopy.

A modified tandem scanning confocal microscope is used to obtain in vivo images of the human skin in real time. Three-dimensional and temporal visualizations are demonstrated with volume reconstruction and blood flow images. Two image processing methods based on Fourier transform and logarithmic processing are presented. Their applications in noise removal of the scanning disk lines and of the heterogeneity of light are illustrated.

Adult↗

Three-dimensional measurements of skin surface topography by triangulation with a new laser profilometer.

The fast measurement of furrows or wrinkles requires the use of a non-contact device. We have chosen a laser detector based on a triangulation principle, using position-sensitive detectors. This apparatus has a sensitivity of about 2-3 microns for a vertical range > 1 mm; this vertical range can reach 8 mm. There is no contact between the detector and the surface and this reduces the measurement time because, while data are being transmitted, there is no decrease in the scanning speed as with earlier methods. We describe the device and its technical characteristics. The limits of use are shown in the measurement of low-amplitude defects (> 3-4 microns) and of wide defects of < or = 8 mm. Examples of software possibilities and practical applications related to skin microrelief, wrinkles and pathological cases, are also described.

Biomechanical Phenomena↗

Skin optics revisited by in vivo confocal microscopy: melanin and sun exposure.

A new confocal prototype dedicated to the exploration of in vivo human skin has been constructed around a laser confocal module (Oz Noran, Inc.) and a skin contact device, assuring perfect stability of skin images. The power of the Argon/Krypton laser source has been limited to 2mW to secure safety, and the laser provides three visible wavelengths: 488, 568, and 647 nm. Optical sections were digitized at video rate, providing easy and rapid measurements of the thickness of epidermal layers and time-resolved information. Unexpected details of the epidermis were recorded with the blue laser line. Melanin provided strong reflection of the basal keratinocytes instead of the absorption expected. The 3D reconstruction of the melanin cap in basal keratinocytes confirmed the behavior of melanosomes acting as myriads of nanomirrors that reflected light. Confocal images of the posterior aspect of the forearm were recorded before sun exposure and then for one month after exposure. There was a 25% increase in the thickness of the stratum corneum. Bright inclusions into the dark nucleus of numerous spinous cells were interpreted as local condensation of chromatin. Numerous bright intercellular filaments were attributed to melanosomes filling up dendrites of melanocytes. A striking observation concerned the lack of melanosome caps in basal keratinocytes. In vivo confocal microscopy affords new insight to the role of melanin and its gradual migration after sun exposure.

Adult↗