Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) [and] International Society for Digital Imaging of Skin (ISDIS) [and] International Society for Skin Imaging (ISSI)
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Treatment of breast cancer involves an association of conservative surgery and radiotherapy. This implies various cutaneous complications, well known for their clinical and histological aspects. Little data are available concerning modifications of the cutaneous microrelief after radiotherapy. We have done a profilometric analysis of the skin of breast cancer patients treated with surgery and radiotherapy. The results obtained on the irradiated breast have been compared with the ones of the controlateral normal breast. ⋯ This study shows a breakdown effect of irradiation on the skin in correlation with the fibrosis inducing by ionising radiation. The imprints modifications are clearly different from those usually observed in the ageing process. Our results can be a basis for studying the effects of treatments on cutaneous complications linked to the radiation-induced fibrosis.
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The present study investigated the reproducibility of measurements with the Dermascan C on post-burn scars. Intra- and inter-rater reproducibility and test-retest reliability with a one week time lapse were examined on 40 post-burn scars of 6 volunteering burn patients by means of intra-class- correlation coefficients (ICC) and standard error of measurements (SEM). Results showed good to excellent values for ICC in all the three conditions. On the basis of these results, we concluded that the instrument provides reliable information and can be used in comparative clinical trials that examine therapeutic strategies on healing scars.
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Sulphur mustard (SM) is a potent incapacitating chemical warfare agent that remains a threat to war fighters and civilians worldwide. SM lesions may require weeks or months to heal, depending upon their severity. This study was undertaken to find a treatment regimen that promotes speedier healing of deep cutaneous SM burns in a weanling pig model. The principal objective of the study was to compare four treatment regimens and establish which achieved the shortest healing time. ⋯ Bioengineering methods were useful in evaluating multiple characteristics during wound healing: (i) reflectance colourimetry for skin colour, (ii) evaporimetry to measure transepidermal water loss as an indicator of barrier function, (iii) laser Doppler perfusion imaging to assess cutaneous blood flow, and (iv) ballistometry to measure the mechanical properties of skin hardness and elasticity. Perhaps the most useful method was evaporimetry, as a restored barrier function was the best indicator of healed wounds. The use of reflectance colourimetry and ballistometry will continue in future wound healing studies for their contributions in judging cosmetic and functional outcomes. While useful, laser Doppler perfusion imaging was found to be rather time consuming. This methodology will be limited in the future to burn depth estimation prior to treatment, and for evaluation of pharmaceuticals specifically designed to improve or sustain blood flow into damaged areas.
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The visualization of skin hemodynamics and tissue water content has important implications in a number of areas of dermatology, plastic surgery, and clinical skin evaluation. The aim of this study was to develop instrumentation and techniques for infrared spectroscopic imaging, and to evaluate whether they can be used to make objective assessments of skin health, perhaps even before clinical signs are evident. ⋯ Near-infrared reflectance spectroscopic imaging is demonstrated to be a powerful augmentation to the standard clinical assessment of skin.
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In this report the reproducibility of measurements with the Minolta Chromameter CR-300 on healthy skin was investigated. ⋯ On the basis of these results we concluded that the instrument provides reliable information and can be used in comparative clinical trials.