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通过拉曼光谱和力学特性评估下肢截肢者的皮肤适应性。

Skin adaptation in lower limb amputees assessed through Raman spectroscopy and mechanical characterization.

作者信息

Hayes Jack, Andrews Jennifer, Abdelwahab Omar, Andriuskevicius Tomas, Briggs Tom, Gordon Ralph, Worsley Peter, Higgins Claire A, Masen Marc

机构信息

Department of Mechanical Engineering, Imperial College London, London, UK.

School of Health and Society, University of Salford, Manchester, UK.

出版信息

J R Soc Interface. 2025 Jan;22(222):20240475. doi: 10.1098/rsif.2024.0475. Epub 2025 Jan 8.

Abstract

Following lower limb amputation residuum skin from the lower leg is used to reconstruct the residual limb. Unlike skin on the sole of the foot (plantar skin), leg skin is not inherently load bearing. Despite this, leg skin is required to be load bearing in the prosthetic socket. Current hypotheses propose that lower limb amputee skin can adapt to become load bearing with repeated prosthesis use. Here, we show using confocal Raman spectroscopy, mechanical characterization and cytokine analysis that adaptations occur which actually result in impaired barrier function, higher baseline inflammation, increased coefficient of friction and reduced stiffness. Our results demonstrate that repeated frictional trauma does not confer beneficial adaptations in amputee skin. We hypothesize that non-plantar skin lacks the biological capabilities to respond positively to repeated mechanical trauma in the same manner observed in plantar skin. This finding highlights the need for improved therapies as opposed to current mechanical conditioning or product solutions that directly relate to improving load-bearing capacity on the skin of lower limb amputees. This study also highlights the importance of measuring multiple parameters of application-specific skin at different scales for skin tribology applications.

摘要

下肢截肢后,小腿的残肢皮肤用于重建残肢。与足底皮肤(足底皮肤)不同,腿部皮肤本身并不具备承重能力。尽管如此,腿部皮肤在假肢接受腔内仍需具备承重能力。目前的假说认为,下肢截肢者的皮肤可以通过反复使用假肢而适应承重。在此,我们通过共聚焦拉曼光谱、力学表征和细胞因子分析表明,适应过程实际上会导致屏障功能受损、基线炎症加剧、摩擦系数增加和硬度降低。我们的结果表明,反复的摩擦创伤并不会给截肢者皮肤带来有益的适应性变化。我们推测,非足底皮肤缺乏以与足底皮肤相同的方式对反复机械创伤做出积极反应的生物学能力。这一发现凸显了改进治疗方法的必要性,而不是目前直接与提高下肢截肢者皮肤承重能力相关的机械调节或产品解决方案。这项研究还强调了在皮肤摩擦学应用中,在不同尺度上测量特定应用皮肤的多个参数的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f0c/11706637/eb01a01ca18b/rsif.2024.0475.f001.jpg

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