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微波诱导人工白内障后皮秒激光脉冲导致的晶状体碎片。

Lens Fragmentation with Picosecond Laser Pulses After Artificial Cataract Induction with Microwaves.

机构信息

Faculty of applied mathematics, physics and humanities, Nuremberg Institute of Technology, Nuremberg, Germany.

Paracelsus Medical University, Nuremberg, Germany.

出版信息

Photobiomodul Photomed Laser Surg. 2024 Aug;42(8):534-540. doi: 10.1089/photob.2024.0062. Epub 2024 Aug 16.

Abstract

In this work we demonstrate the first laboratory study results of lens fragmentation with low-energy picosecond ultrashort laser pulses after artificial induction of cataract with microwave radiation on an ex vivo animal model. This method will be evaluated with regard to the further development of lens fragmentation with novel ultrashort picosecond laser systems instead of ultrasonic phacoemulsification or the significantly more complex femtosecond laser fragmentation. As samples we used postmortem porcine eyes. The lenses were dissected and then irradiated in a microwave oven for artificial cataract induction. Subsequent computer-driven lens fragmentation was performed with a 12 ps, 1064 nm pulsed laser source with 100 µJ pulse energy, and 10 kHz pulse repetition rate. Both the artificial cataract induction and the lens fragmentation were demonstrated. When inducing cataract, different degrees/stages of opaqueness and hardness could be achieved with different irradiation times and methods. The fragmentation with 12 ps pulses led to good results with regard to ablation depth and rate, especially for the softer lenses. As could be shown, low-energy picosecond ultrashort laser pulses are feasible for cataractous lens fragmentation on an ex vivo animal model with artificial cataract induction. Thus, this technique may influence future cataract surgeries by possibly being an alternative or extension to state-of-the-art methods. This will be evaluated with further tests and studies.

摘要

在这项工作中,我们展示了微波辐射诱导白内障后,使用低能量皮秒超短激光脉冲对离体动物模型进行晶状体粉碎的首次实验室研究结果。 该方法将根据新型超短皮秒激光系统对晶状体粉碎的进一步发展进行评估,以替代超声乳化或更复杂的飞秒激光粉碎。 我们使用了死后的猪眼作为样本。 将晶状体解剖后,在微波炉中进行辐射以人工诱导白内障。 随后,使用 12 ps、1064 nm 脉冲激光源和 100 µJ 脉冲能量、10 kHz 脉冲重复率进行计算机驱动的晶状体粉碎。 我们演示了白内障的人工诱导和晶状体粉碎。 在诱导白内障时,不同的辐射时间和方法可以达到不同程度/阶段的混浊和硬度。 12 ps 脉冲的粉碎导致了良好的消融深度和速率,特别是对于较软的晶状体。 结果表明,低能量皮秒超短激光脉冲可用于离体动物模型的白内障晶状体粉碎,具有人工白内障诱导。 因此,该技术可能会通过成为现有方法的替代或扩展来影响未来的白内障手术。 这将通过进一步的测试和研究进行评估。

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