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New design of textile light diffusers for photodynamic therapy

机译:用于光动力疗法的纺织品光扩散器的新设计

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A homogeneous and reproducible fluence delivery rate during clinical photodynamic therapy (PDT) plays a determinant role in preventing under- or overtreatment. PDT applied in dermatology has been carried out with a wide variety of light sources delivering a broad range of more or less adapted light doses. Due to the complexities of the human anatomy, these light sources do not in fact deliver a uniform light distribution to the skin. Therefore, the development of flexible light sources would considerably improve the homogeneity of light delivery. The integration of plastic optical fiber (POF) into textile structures could offer an interesting alternative. In this article, a textile light diffuser (TLD) has been developed using POF and Polyester yarns. Predetermined POF macrobending leads to side emission of light when the critical angle is exceeded. Therefore, a specific pattern based on different satin weaves has been developed in order to improve light emission homogeneity and to correct the decrease of side emitted radiation intensity along POF. The prototyped fabrics (approximately 100 cm~2: 5 × 20 cm) were woven using a hand loom, then both ends of the POF were coupled to a laser diode (5 W, 635 nm). The fluence rate (mW/cm~2) and the homogeneity of light delivery by the TLD were evaluated. Temperature evolution, as a function of time, was controlled with an infrared thermographic camera. When using a power source of 5 W, the fluence rate of the TLD was 18 × 2.5 mw/cm~2. Due to the high efficiency of the TLD, the optical losses were very low. The TLD temperature elevation was 0.6 ℃after 10 min of illumination. Our TLD meets the basic requirements for PDT: homogeneous light distribution and flexibility. It also proves that large (500 cm~2) textile light diffusers adapted to skin, but also to peritoneal or pleural cavity, PDTs can be easily produced by textile manufacturing processes.
机译:临床光动力疗法(PDT)期间均一且可重现的注量传输速率在预防治疗不足或过度治疗中起决定性作用。在皮肤病学中使用的PDT已通过提供各种或多或少适应光剂量的各种光源进行。由于人体解剖结构的复杂性,这些光源实际上并未向皮肤传递均匀的光分布。因此,柔性光源的发展将大大改善光传输的均匀性。将塑料光纤(POF)集成到纺织品结构中可以提供有趣的选择。在本文中,使用POF和涤纶纱开发了一种纺织品光扩散器(TLD)。当超过临界角时,预定的POF宏弯曲会导致侧面发光。因此,已经开发了基于不同缎纹编织的特定图案,以改善发光均匀性并校正沿POF的侧向发射辐射强度的降低。使用手织机编织原型织物(大约100 cm〜2:5×20 cm),然后将POF的两端耦合到激光二极管(5 W,635 nm)。评估了通量密度(mW / cm〜2)和TLD的光传输均匀性。用红外热像仪控制温度随时间的变化。当使用5 W电源时,TLD的注量率为18×2.5 mw / cm〜2。由于TLD的高效率,光损耗非常低。光照10分钟后,TLD的温度升高为0.6℃。我们的TLD满足PDT的基本要求:均匀的光分布和灵活性。这也证明,大的(500 cm〜2)纺织品光扩散器既适合皮肤,也适合腹膜或胸膜腔,可通过纺织品制造工艺轻松生产。

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