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An optical system via liquid crystal photonic devices for photobiomodulation

机译:通过液晶光子器件进行光生物调制的光学系统

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摘要

Photobiomodulation or low-level light therapy (LLLT) has extensive applications based on light-induced effects in biological systems. Photobiomodulation remains controversial because of a poorly understood biochemical mechanism limited by the well-known biphasic dose response or Arndt-Schulz curve. The Arndt-Schulz curve states that an optimal dose of light is a key factor for realizing a therapeutic effect. In this report, we demonstrate a tunable optical system for photobiomodulation to aid physicians in overcoming the constraints of light due to biphasic dose response. The tunable optical system is based on a white light-emitting diode and four liquid crystal (LC) photonic devices: three LC phase retarders, and one LC lens. The output light of the tunable optical system exhibits electrical tunability for the wavelength, energy density and beam size. The operating principle is introduced, and the experimental results are presented. The proposed concept can be further extended to other electrically tunable photonic devices for different clinical purposes for photobiomodulation.
机译:基于生物系统中光诱导的效应,光生物调节或低水平光疗(LLLT)具有广泛的应用。由于人们对生化机制的了解不多,受众所周知的双相剂量反应或Arndt-Schulz曲线的限制,光生物调节仍存在争议。 Arndt-Schulz曲线指出,最佳剂量的光是实现治疗效果的关键因素。在本报告中,我们演示了用于光生物调节的可调光学系统,以帮助医生克服由于双相剂量反应而产生的光的约束。可调光学系统基于白色发光二极管和四个液晶(LC)光子器件:三个LC相位延迟器和一个LC透镜。可调光学系统的输出光对波长,能量密度和光束大小显示出电气可调性。介绍了工作原理,并给出了实验结果。所提出的概念可以进一步扩展到用于光生物调节的不同临床目的的其他电可调光子设备。

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