首页> 外文期刊>Journal of medical engineering & technology >Confirmation of spectral jitter: a measured shift in the spectral distribution of intense pulsed light systems using a time-resolved spectrometer during exposure and increased fluence.
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Confirmation of spectral jitter: a measured shift in the spectral distribution of intense pulsed light systems using a time-resolved spectrometer during exposure and increased fluence.

机译:光谱抖动的确认:在曝光期间和通量提高期间,使用时间分辨光谱仪对强脉冲光系统光谱分布的测量偏移。

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摘要

High quality intense pulsed light (IPL) systems can offer simple, safe and effective treatments for long-term hair reduction, skin rejuvenation and removal of benign vascular and pigmented lesions. Considerable differences in clinical efficacy and adverse effects have been recorded amongst different IPL systems despite comparable display settings. This study examines the variation in pulse structures exhibited by several popular professional IPL systems that can cause a spectral change within the broadband output depending on the pulse structure chosen by the system designers. A fast spectrometer was used to capture IPL spectral outputs. A spectral distribution shift that occurs both within a pulse and between pulses is clearly demonstrated and is more prominent with uncontrolled free discharge systems than with square pulsed technology, which provides a constant spectral distribution throughout the pulse duration.
机译:高质量的强脉冲光(IPL)系统可以提供简单,安全和有效的治疗方法,以长期减少头发,使皮肤恢复年轻状态,并清除良性血管和色素沉着的病变。尽管显示设置相当,但在不同的IPL系统之间仍记录了临床疗效和不良反应的显着差异。这项研究研究了几种流行的专业IPL系统所表现出的脉冲结构变化,这些变化会导致宽带输出内的频谱变化,具体取决于系统设计师选择的脉冲结构。快速光谱仪用于捕获IPL光谱输出。清楚地证明了在脉冲内和脉冲之间都发生的光谱分布偏移,与不受控制的自由放电系统相比,与方波脉冲技术相比更为突出,后者在整个脉冲持续时间内提供恒定的光谱分布。

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