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压力性溃疡和红斑在小鼠模型中的发展和愈合阶段的生物电阻抗差异。

Differences of bioelectrical impedance in the development and healing phase of pressure ulcers and erythema in mouse model.

机构信息

Department of Biomedical Engineering, Chung Yuan Christian University, Chung Pei Road, Chung Li District, Taoyuan City, Taiwan.

Department of Physical Medicine and Rehabilitation, Ten-Chan General Hospital, Yanping Road, Chung Li District, Taoyuan City, Taiwan.

出版信息

J Tissue Viability. 2024 May;33(2):225-230. doi: 10.1016/j.jtv.2024.02.010. Epub 2024 Feb 28.

Abstract

Pressure ulcers (PUs) are economically burdensome medical conditions. Early changes in pressure ulcers are associated with erythema. In this study, bioelectrical impedance was used to measure the differences between PUs and blanchable erythema. We divided 21 ICR mice into three groups: control, 1000 mmHg-1h, and 1000 mmHg-6h. Healthy skin, blanchable erythema, and PUs were induced on the dorsal skin. The results indicated an immediate increase in impedance, resistance, and reactance values in the pressure group after release, followed by a subsequent decrease until two days after release. Compared with the control group, impedance and reactance significantly increased by 30.9% (p < 0.05) and 30.1% (p < 0.01), respectively, in the 6 h-loading group immediately after release. One and two days after release, the 1 h-loading and 6 h-loading groups exhibited significantly different degrees of decline. One day after release, impedance and resistance decreased by 30.2% (p < 0.05) and 19.8% (p < 0.05), respectively, in the 1 h-loading group; while impedance, resistance, and reactance decreased by 39.2% (p < 0.01), 26.8% (p < 0.01), and 45.7% (p < 0.05), respectively, in the 6 h-loading group. Two days after release, in the 1 h-loading group, impedance and resistance decreased by 28.3% (p < 0.05) and 21.7% (p < 0.05), respectively; while in the 6 h-loading group, impedance, resistance, and reactance decreased by 49.8% (p < 0.001), 34.2% (p < 0.001), and 59.8% (p < 0.01), respectively. One and two days after release the pressure group reductions were significantly greater than those in the control group. Additionally, we monitored changes during wound healing. Distinguishing early PUs from blanchable erythema by noninvasive bioelectrical impedance technology may have applications value in early assessment of PUs.

摘要

压力性溃疡(PU)是一种经济负担沉重的医疗状况。PU 的早期变化与红斑有关。在这项研究中,我们使用生物电阻抗来测量 PU 和可褪色红斑之间的差异。我们将 21 只 ICR 小鼠分为三组:对照组、1000mmHg-1h 组和 1000mmHg-6h 组。在背部皮肤诱导健康皮肤、可褪色红斑和 PU。结果表明,加压组在释放后立即增加阻抗、电阻和电抗值,随后下降,直到释放后两天。与对照组相比,释放后立即,加载 6h 组的阻抗和电抗分别显著增加 30.9%(p<0.05)和 30.1%(p<0.01)。释放后 1 天和 2 天,1h 加载组和 6h 加载组表现出明显不同程度的下降。释放后 1 天,1h 加载组的阻抗和电阻分别下降 30.2%(p<0.05)和 19.8%(p<0.05);而 6h 加载组的阻抗、电阻和电抗分别下降 39.2%(p<0.01)、26.8%(p<0.01)和 45.7%(p<0.05)。释放后 2 天,1h 加载组的阻抗和电阻分别下降 28.3%(p<0.05)和 21.7%(p<0.05);而 6h 加载组的阻抗、电阻和电抗分别下降 49.8%(p<0.001)、34.2%(p<0.001)和 59.8%(p<0.01)。释放后 1 天和 2 天,加压组的减少量明显大于对照组。此外,我们还监测了伤口愈合过程中的变化。使用非侵入性生物电阻抗技术区分早期 PU 和可褪色红斑可能具有早期评估 PU 的应用价值。

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