Graduate School of Biomedical Engineering, University of New South Wales, Sydney, Australia.
School of Mechanical Engineering, University of New South Wales, Sydney, Australia.
Trends Biotechnol. 2018 May;36(5):537-548. doi: 10.1016/j.tibtech.2018.02.013. Epub 2018 Mar 29.
For a century-old problem, edema and its treatment have gone remarkably unnoticed by the biomedical community. Given the prevalence of lymphedema and its debilitating repercussions, there is an acute need for both efficacy-based measures and clinical standards to guide compression garment design and therapeutic application. This review outlines the current state of the art in compression treatment and suggests an integrated biomedical engineering approach going forward. Characterizing the pressure gradient profiles of commercial compression sleeves is necessary to better understand the role of compression treatment in the mitigation of swelling. Integration of pressure sensor technologies with advanced materials design and manufacture provides a critical path not only to elucidate the mechanisms of but also to improve on current compression-based therapies and associated therapeutic devices.
一个世纪以来,水肿及其治疗方法一直被生物医学领域所忽视。鉴于淋巴水肿的普遍性及其带来的严重后果,我们迫切需要基于疗效的措施和临床标准来指导压缩衣的设计和治疗应用。本文综述了目前压缩治疗的最新进展,并提出了一种综合的生物医学工程方法。对商业压缩袖套压力梯度分布进行分析,有助于更好地理解压缩治疗在减轻肿胀方面的作用。压力传感器技术与先进材料设计和制造的结合不仅为阐明其机制提供了重要途径,也为改进现有的基于压缩的治疗方法和相关治疗设备提供了可能。