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首页> 外文期刊>Spectroscopy >A novel opto-mechanical system constituted by LEDs to employment in photobiostimulation: Clinical application in optical therapy
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A novel opto-mechanical system constituted by LEDs to employment in photobiostimulation: Clinical application in optical therapy

机译:一种由LED构成的新型光机械系统,用于光生物刺激:在光学治疗中的临床应用

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摘要

Optical techniques of photobiostimulation, which use transducer as lasers and LEDs, have been employed in the treatment of several diseases. The laser systems usually irradiate in a reduced area of the target biological tissue, presenting high cost of acquisition. Devices with a LED of "Surface Mount Device" (SMD) type have high angle of light emission, implying in intense decrease of the density of optical potency. Furthermore, the use of this device requires the utilization of a cooling system, which provokes an increase in the cost of this product. In the present work, it is suggested the application of a novel opto-mechanical device constituted by usual LEDs with package dimension of 5 mm of diameter, which presents significant efficient and very low cost. The arrangement of the geometric configuration of these LEDs is elaborated in such way that all units emit photons in a unique section of an specific area. An opto-mechanical system was developed, which includes seven LEDs, being that six of these LEDs are disposed in a specific angle around a unique central LED. It is important to notice that all the opto-mechanical system with seven LEDs emit light in a unique area. Besides, a methodology was employed to allow the verification of the distribution of light intensity upon this respective area. This arrangement allows that this novel device propitiate measurements of the degree of homogeneity of the light intensity in specific areas, which are accessed by the seven light emitting units. The potency employing LEDs in the red (visible) and near infrared regions were also measured, being that the result demonstrated the capability of clinical application in optical therapy of photobiostimulation, which was also used in a pilot test of clinical application.
机译:使用换能器作为激光和LED的光生物刺激的光学技术已用于治疗多种疾病。激光系统通常在目标生物组织的缩小区域中进行照射,因此获取成本很高。带有“表面安装设备”(SMD)类型的LED的设备具有高角度的发光,这意味着光效密度会大大降低。此外,使用该装置需要利用冷却系统,这导致该产品的成本增加。在当前的工作中,建议应用由通常的LED构成的新颖的光机械装置,其具有5mm直径的封装尺寸,这提出了显着的效率和非常低的成本。这些LED的几何结构的排列方式经过精心设计,以使所有单元均在特定区域的唯一区域中发射光子。开发了一种光机械系统,该系统包括七个LED,其中六个LED以特定角度围绕唯一的中央LED放置。重要的是要注意,所有带有七个LED的光机械系统都会在一个独特的区域发光。此外,采用了一种方法来验证该相应区域上的光强度分布。这种布置使得该新颖的装置能够对特定区域中的光强度的均匀性程度进行测量,该区域由七个发光单元访问。还测量了在红色(可见)和近红外区域中使用LED的效能,因为该结果证明了光生物刺激的光疗法在临床中的临床应用能力,这也被用于临床应用的中试。

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