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一种评价局部皮肤冷却对骶骨持续机械负荷引起的微血管、炎症、结构和感觉反应的影响的方法:研究方案。

An evaluation of the effects of localised skin cooling on microvascular, inflammatory, structural, and perceptual responses to sustained mechanical loading of the sacrum: A study protocol.

机构信息

ThermosenseLab, Skin Sensing Research Group, School of Health Science, University of Southampton, Southampton, United Kingdom.

PressureLab, Skin Sensing Research Group, School of Health Science, University of Southampton, Southampton, United Kingdom.

出版信息

PLoS One. 2024 May 10;19(5):e0303342. doi: 10.1371/journal.pone.0303342. eCollection 2024.

Abstract

This study protocol aims to investigate how localised cooling influences the skin's microvascular, inflammatory, structural, and perceptual tolerance to sustained mechanical loading at the sacrum, evaluating factors such as morphology, physiology, and perceptual responses. The protocol will be tested on individuals of different age, sex, skin tone and clinical status, using a repeated-measure design with three participants cohorts: i) young healthy (n = 35); ii) older healthy (n = 35); iii) spinal cord injured (SCI, n = 35). Participants will complete three testing sessions during which their sacrum will be mechanically loaded (60 mmHg; 45 min) and unloaded (20 min) with a custom-built thermal probe, causing pressure-induced ischemia and post-occlusive reactive hyperaemia. Testing sessions will differ by the probe's temperature, which will be set to either 38°C (no cooling), 24°C (mild cooling), or 16°C (strong cooling). We will measure skin blood flow (via Laser Doppler Flowmetry; 40 Hz); pro- and anti-inflammatory biomarkers in skin sebum (Sebutape); structural skin properties (Optical Coherence Tomography); and ratings of thermal sensation, comfort, and acceptance (Likert Scales); throughout the loading and unloading phases. Changes in post-occlusive reactive hyperaemia will be considered as the primary outcome and data will be analysed for the independent and interactive effects of stimuli's temperature and of participant group on within- and between-subject mean differences (and 95% Confidence Intervals) in peak hyperaemia, by means of a 2-way mixed model ANOVA (or Friedman). Regression models will also be developed to assess the relationship between absolute cooling temperatures and peak hyperaemia. Secondary outcomes will be within- and between-subject mean changes in biomarkers' expression, skin structural and perceptual responses. This analysis will help identifying physiological and perceptual thresholds for the protective effects of cooling from mechanically induced damage underlying the development of pressure ulcers in individuals varying in age and clinical status.

摘要

本研究方案旨在探究局部冷却如何影响皮肤对骶骨处持续机械负荷的微血管、炎症、结构和感知耐受性,评估形态、生理和感知反应等因素。该方案将在不同年龄、性别、肤色和临床状况的个体中进行测试,采用重复测量设计,分为三个参与者队列:i)年轻健康(n=35);ii)老年健康(n=35);iii)脊髓损伤(SCI,n=35)。参与者将完成三次测试,在此期间,他们的骶骨将使用定制的热探头进行机械加载(60mmHg;45 分钟)和卸载(20 分钟),导致压力诱导的缺血和闭塞后反应性充血。测试将因探头温度而异,温度将设置为 38°C(无冷却)、24°C(轻度冷却)或 16°C(强冷却)。我们将通过激光多普勒血流仪(40Hz)测量皮肤血流;皮肤皮脂中的促炎和抗炎生物标志物(Sebutape);皮肤结构特性(光学相干断层扫描);以及热感觉、舒适度和接受度的评分(Likert 量表);在整个加载和卸载阶段。闭塞后反应性充血的变化将被视为主要结果,通过 2 因素混合模型方差分析(或 Friedman)分析数据,以评估刺激温度和参与者组对峰值充血的个体内和个体间平均差异(以及 95%置信区间)的独立和交互影响。还将建立回归模型来评估绝对冷却温度与峰值充血之间的关系。次要结果将是生物标志物表达、皮肤结构和感知反应的个体内和个体间平均变化。这项分析将有助于确定年龄和临床状况不同的个体中,冷却对机械诱导损伤的保护作用的生理和感知阈值,从而预防压疮的发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71ea/11086830/c26af6fba6e4/pone.0303342.g001.jpg

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