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识别反映机械和化学刺激后皮肤状况的生物物理参数。

The identification of biophysical parameters which reflect skin status following mechanical and chemical insults.

机构信息

School of Health Sciences, University of Southampton, Southampton, UK.

School of Nursing and David Geffen School of Medicine, University of California at Los Angeles (UCLA), Los Angeles, CA, USA.

出版信息

Clin Physiol Funct Imaging. 2021 Jul;41(4):366-375. doi: 10.1111/cpf.12707. Epub 2021 May 15.

Abstract

BACKGROUND

Skin is constantly exposed to mechanical and chemical insults, in the form of prolonged loading, overhydration or exposure to irritants. An array of non-invasive biophysical tools has been adopted to monitor the changes in skin response. The present study aims to identify a set of robust parameters sensitive to mechanical and chemical challenges to skin integrity.

MATERIALS AND METHODS

Eleven healthy participants were recruited to evaluate the skin response following mechanical loading, tape stripping, overhydration and chemical irritation. Forearm skin responses were recorded at baseline and at three time points following the insult. Measurements included transepidermal water loss, sub-epidermal moisture, erythema and laser Doppler imaging. Thresholds were informed by basal values, and the sensitivity of parameters to detect skin changes was evaluated.

RESULTS

High degree of variability in skin response was observed with selected biophysical parameters, such as sub-epidermal moisture, laser Doppler imaging and erythema, even in the absence of an applied insult. Temporal skin response revealed distinct response profiles during each evoked insult. Indeed, the sensitivity of the biophysical parameters was influenced by the threshold values and time point of measurement. Some statistically significant correlations were determined between the biophysical parameters.

CONCLUSION

The study revealed that thresholds derived from single biophysical parameters were limited in detecting skin changes following insults. A complementary evaluation using combined parameters has the potential to provide a more sensitive assessment. Further research is required to identify robust biophysical parameters, to aid the early detection of skin damage in clinical settings.

摘要

背景

皮肤不断受到机械和化学刺激的影响,如长时间的负荷、过度水合或接触刺激物。人们采用了一系列非侵入性的生物物理工具来监测皮肤反应的变化。本研究旨在确定一组对皮肤完整性的机械和化学挑战敏感的稳健参数。

材料和方法

招募了 11 名健康参与者,以评估机械负荷、胶带剥离、过度水合和化学刺激后皮肤的反应。在基线和刺激后三个时间点记录前臂皮肤反应。测量包括经表皮水分流失、表皮下水分、红斑和激光多普勒成像。阈值由基础值提供,并评估参数检测皮肤变化的敏感性。

结果

即使在没有施加刺激的情况下,选择的生物物理参数(如表皮下水分、激光多普勒成像和红斑)的皮肤反应也存在高度的可变性。时间性皮肤反应在每个诱发刺激中呈现出不同的反应特征。事实上,生物物理参数的敏感性受到阈值和测量时间点的影响。确定了生物物理参数之间存在一些统计学上显著的相关性。

结论

该研究表明,从单个生物物理参数得出的阈值在检测刺激后皮肤变化方面存在局限性。使用组合参数进行补充评估有可能提供更敏感的评估。需要进一步研究以确定稳健的生物物理参数,以帮助在临床环境中早期检测皮肤损伤。

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