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Illumination-parameter adjustable and illumination-distribution visible LED helmet for Low-level light therapy on brain injury

机译:照明参数可调和照明分布的可见LED头盔,用于脑部损伤的低水平光疗

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Low-level light therapy (LLLT) has been clinically applied. Recently, more and more cases are reported with positive therapeutic effect by using transcranial light emitting diodes (LEDs) illumination. Here, we developed a LLLT helmet for treating brain injuries based on LED arrays. We designed the LED arrays in circle shape and assembled them in multi-layered 3D printed helmet with water-cooling module. The LED arrays can be adjust to touch the head of subjects. A control circuit was developed to drive and control the illumination of the LLLT helmet. The software portion provides the control of on and off of each LED arrays, the setup of illumination parameters, and 3D distribution of LLLT light dose in human subject according to the illumination setups. This LLLT light dose distribution was computed by a Monte Carlo model for voxelized media and the Visible Chinese Human head dataset and displayed in 3D view at the background of head anatomical structure. The performance of the whole system was fully tested. One stroke patient was recruited in the preliminary LLLT experiment and the following neuropsychological testing showed obvious improvement in memory and executive functioning. This clinical case suggested the potential of this Illumination-parameter adjustable and illumination-distribution visible LED helmet as a reliable, noninvasive, and effective tool in treating brain injuries.
机译:低水平光疗法(LLLT)已在临床上应用。近来,通过使用经颅发光二极管(LED)照明报道了越来越多具有积极治疗效果的病例。在这里,我们开发了一种基于LED阵列的LLLT头盔,用于治疗脑损伤。我们将LED阵列设计为圆形,并将其组装在带有水冷模块的多层3D打印头盔中。可以调节LED阵列以触摸被摄对象的头部。开发了控制电路来驱动和控制LLLT头盔的照明。软件部分提供对每个LED阵列的开和关,照明参数的设置以及根据照明设置在人类对象中LLLT光剂量的3D分布的控制。该LLLT光剂量分布是通过针对体素化介质的Monte Carlo模型和可见中国人的头部数据集计算的,并以3D视图的形式显示在头部解剖结构的背景下。整个系统的性能已经过全面测试。在初步的LLLT实验中招募了一名中风患者,随后的神经心理学测试显示其记忆力和执行功能明显改善。该临床病例表明,这种照明参数可调和照明分布的可见LED头盔有潜力成为治疗脑损伤的可靠,无创且有效的工具。

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