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Light properties improvement of light emitting woven textiles with optical fibres for photodynamic therapy

机译:光纤维发光编织纺织品的光学性能,用于光学纤维进行光动力疗法

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For an efficient and less painful photodynamic therapy (PDT), a light emitting fabric (LEF) was woven from plastic optical fibres (POF) aiming at the treatment of dermatologic diseases such as Actinic Keratosis (AK). The traditional PDT treatments applied with external light sources deliver a non-uniform light distribution on the skin surface due to the anatomical particularity of the human body (head vertex, hand, etc.). Therefore a successful PDT obligates a homogenous and reproducible light delivery. With this purpose, plastic optical fibres (POF) have been woven in textile in order to create macro-bendings and thus emit out the injected light directly to the skin. To improve the light intensity and light emitting homogeneity of the LEF, Doehlert Experimental Design is applied. Fifteen experiments performed to analyze the response surface. Light properties of the prototypes were evaluated. The proposed models fitted well with the experimental data and enabled the optimal set up the warp yarns tensions. This study showed that RSM was a suitable tool to optimize the models of light diffusion properties.
机译:对于有效且较少的疼痛的光动力治疗(PDT),发光织物(LEF)由塑料光纤(POF)编织,旨在治疗皮肤病学疾病,如光碱角化症(AK)。由于人体(头部顶点,手等)的解剖学特殊性,具有外部光源的传统PDT处理在皮肤表面上提供了非均匀的光分布。因此,成功的PDT义务赋予均匀和可重复的光递送。为此目的,塑料光纤(POF)已在纺织中编织,以产生宏观弯曲,从而将注入的光直接从皮肤发出。为了提高莱佛的光强度和发光均匀性,应用道爱尔实验设计。第十五实验进行分析响应面。评估原型的光学性质。所提出的模型与实验数据很好,并使能最佳设置经纱张力。本研究表明,RSM是优化光扩散特性模型的合适工具。

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