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A Macro Lens-Based Optical System Design for Phototherapeutic Instrumentation

机译:基于宏观镜头的光学系统设计用于光治疗仪表

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摘要

Light emitting diode (LED) and ultrasound have been powerful treatment stimuli for tumor cell growth due to non-radiation effects. This research is the first preliminary study of tumor cell suppression using a macro-lens-supported 460-nm LED combined with high-frequency ultrasound. The cell density, when exposed to the LED combined with ultrasound, was gradually reduced after 30 min of induction for up to three consecutive days when 48-W DC, 20-cycle, and 50 Vp-p sinusoidal pulses were applied to the LEDs through a designed macro lens and to the ultrasound transducer, respectively. Using a developed macro lens, the non-directional light beam emitted from the LED could be localized to a certain spot, likewise with ultrasound, to avoid additional undesirable thermal effects on the small sized tumor cells. In the experimental results, compared to LED-only induction (14.49 ± 2.73%) and ultrasound-only induction (13.27 ± 2.33%), LED combined with ultrasound induction exhibited the lowest cell density (6.25 ± 1.25%). Therefore, our measurement data demonstrated that a macro-lens-supported 460-nm LED combined with an ultrasound transducer could possibly suppress early stage tumor cells effectively.
机译:由于非辐射效应,发光二极管(LED)和超声波对于肿瘤细胞生长具有强大的治疗刺激。该研究是使用宏观透镜支持的460nm LED结合高频超声波使用宏观透镜支持的460nm抑制的第一次初步研究。当暴露于超声波结合的LED时,在将48-W DC,20周期和50VP-P正弦脉冲施加到LED的情况下,在诱导30分钟后逐渐降低,当诱导到LED时,细胞密度逐渐降低一款设计的宏观镜头分别和超声换能器。使用开发的宏透镜,从LED发射的非定向光束可以定位于特定点,同样具有超声波,以避免对小尺寸肿瘤细胞的额外不希望的热效应。在实验结果中,与仅限LED诱导相比(14.49±2.73%)和仅限超声诱导(13.27±2.33%),LED结合超声诱导表现出最低电池密度(6.25±1.25%)。因此,我们的测量数据表明,与超声换能器结合的宏观镜头支持的460nm LED可以有效地抑制早期肿瘤细胞。

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