School of Fashion and Textiles, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong Special Administrative Region (SAR), China; Laboratory for Artificial Intelligence in Design, Hong Kong Science Park, New Territories, Hong Kong SAR, China.
School of Fashion and Textiles, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong Special Administrative Region (SAR), China; Laboratory for Artificial Intelligence in Design, Hong Kong Science Park, New Territories, Hong Kong SAR, China.
J Mech Behav Biomed Mater. 2024 Mar;151:106392. doi: 10.1016/j.jmbbm.2024.106392. Epub 2024 Jan 9.
Biomedical therapeutic compression textiles (TCTs) have been extensively applied in the prevention and treatment of chronic venous insufficiency of lower extremities. An efficiency and operable development strategy to achieve the morphologic control and pressure fitness of TCTs needs to be proposed to improve the medical precision and patient adherence. Therefore, the present study qualitatively explored the influencing mechanisms of each knitting variable on physical-mechanical properties and pressure behaviors of TCTs. Then constructed the quantitative models to digitalize the knitting variables for determination of yarn-machinery setting design values. The results revealed that the feeding velocity of elastic inlay yarn materials and loop size settings impacted the pressure values owing to the diversities of fabric dimensions and mechanical tensile properties, respectively. Simultaneously, the derivation ratios of proposed circumferential and pressure models evaluated by experimental validated trials were approximately 1.1% and 10.8%, respectively. This study provided the fundamental references for the design, manufacturing, and property controlling of compression textiles to improve the biomedical therapeutic effectiveness for targeted users.
医用治疗压缩纺织品(TCT)已广泛应用于预防和治疗下肢慢性静脉功能不全。为了提高医疗精度和患者依从性,需要提出一种有效且可行的开发策略,以实现 TCT 的形态控制和压力适应性。因此,本研究从定性的角度探讨了每个针织变量对 TCT 的物理力学性能和压力行为的影响机制。然后构建了定量模型,将针织变量数字化,以确定纱线机械设定设计值。结果表明,由于织物尺寸和机械拉伸性能的差异,弹性嵌线材料的送料速度和线圈尺寸设置会影响压力值。同时,通过实验验证试验评估的提出的周向和压力模型的推导比分别约为 1.1%和 10.8%。本研究为压缩纺织品的设计、制造和性能控制提供了基础参考,以提高针对目标用户的治疗效果。