Measurement of Blue-Light and Near-UV Hazard from High-Peak-Power Surgical Pulsed LEDs and Lasers

Authors

  • Chen Li Shanghai Institute of Quality Inspection and Technical Research Co., Ltd, China Author
  • Hua Ni Shanghai Institute of Quality Inspection and Technical Research Co., Ltd, China Author
  • Zhangfeng Ruan Shanghai Institute of Quality Inspection and Technical Research Co., Ltd, China Author
  • Wei Chen Shanghai Institute of Quality Inspection and Technical Research Co., Ltd, China Author
  • Jianing Zhu Shanghai Institute of Quality Inspection and Technical Research Co., Ltd, China Author
  • Lei Jin Shanghai Institute of Quality Inspection and Technical Research Co., Ltd, China Author
  • Guhua Lin Shanghai Institute of Quality Inspection and Technical Research Co., Ltd, China Author

DOI:

https://doi.org/10.52152/M4982T

Keywords:

Blue-light hazard, pulsed LED, surgical laser, photobiological safety, IEC 62471, retinal photochemical damage, spectral measurement

Abstract

High-peak-power pulsed LEDs and surgical lasers are increasingly used for illumination, fluorescence guidance, and minimally invasive procedures. Their short, intense pulses may elevate the risk of blue-light and near-UV photochemical damage to ocular tissues. This work establishes a measurement system capable of capturing the temporal and spectral characteristics of rapid pulses, enabling accurate calculation of cumulative hazard over typical surgical use periods. Experimental results on representative devices show that pulse structure significantly affects photobiological risk estimates. The study highlights the need for refined exposure assessment methods tailored to pulsed surgical light sources.

Published

2026-03-30

Issue

Section

Articles