Laboratory of Physiotherapeutic Resources, Postgraduate Program in Rehabilitation and Functional Performance, Department of Health Sciences, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, SP, Brazil.
Department of Health Sciences, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, SP, Brazil.
J Med Syst. 2020 Mar 12;44(4):88. doi: 10.1007/s10916-020-01557-y.
Effectiveness of light-emitting diode (LED) in biological tissue is due to the correct application of physical parameters. However, most studies found do not provide complete information on the physical characteristics of the diodes. It is necessary to carefully evaluate the diode parameters so that the results of research with this feature can be reproduced. The objective of this study was to develop a light-emitting device using LED, with proper measurements for application in clinical research. It was used 267 LEDs, powered with 12-V voltage and fixed on a plate of ethylene-vinyl acetate (25 × 42 cm), equidistant at 1.0 cm. For the calculation of red and infrared irradiation, a spectrometer was used, and the data were processed in routines implemented in the OriginPro 8.5.0 SR1 Software. The irradiance was determined by the integration of the spectral irradiation in the LED emission region. The red LED has a wavelength of 620 ± 10 nm, a power density of 52.86 mW/cm, power of 6.6 mW, and total power of 1.76 W on the device. The infrared LED has a wavelength of 940 ± 10 nm, power density 33.7 mW/cm, power of 6 mW, and total power of 1.6 W on the device. The LED characterization enables the generation and application of energy with greater precision and reproducibility. Besides, it is a light source, a device capable of framing large areas, reducing the time and cost of the application in different clinical conditions related to neuromuscular performance or rehabilitation.
发光二极管(LED)在生物组织中的有效性取决于物理参数的正确应用。然而,大多数研究并未提供有关二极管物理特性的完整信息。有必要仔细评估二极管参数,以便能够再现具有此功能的研究结果。本研究的目的是开发一种使用 LED 的发光装置,该装置具有适当的测量值,可用于临床研究。使用了 267 个 LED,由 12V 电压供电,并固定在乙烯-醋酸乙烯酯(25×42cm)板上,间距为 1.0cm。为了计算红光和红外线的辐射,使用了分光计,并在 OriginPro 8.5.0 SR1 软件中实现的例程中处理数据。辐照度通过在 LED 发射区域的光谱辐照度积分来确定。红色 LED 的波长为 620±10nm,功率密度为 52.86mW/cm,功率为 6.6mW,设备上的总功率为 1.76W。红外 LED 的波长为 940±10nm,功率密度为 33.7mW/cm,功率为 6mW,设备上的总功率为 1.6W。LED 特性分析能够更精确、更可重复地产生和应用能量。此外,它还是一种能够对大面积进行成像的光源,能够减少在与神经肌肉性能或康复相关的不同临床条件下应用的时间和成本。