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Optical coherence tomography controlled femtosecond laser microsurgery system

机译:光学相干断层扫描控制飞秒激光显微手术系统

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摘要

Due to nonlinear interaction with optical transparent samples the femtosecond technology is a very useful tool for high precision micro surgery on biological tissues. At the same time femtosecond lasers are ideal light sources for imaging methods such as optical coherence tomography (OCT) due to the broad spectrum of the laser, which is necessary for creating ultra short pulses. Using OCT structures within biological tissues can be imaged non invasive with a resolution within the low μm-range. The combined use of an ultra short pulse laser for cutting of biological tissues as well as imaging via OCT is a very interesting tool. It opens up a wide range of new surgery techniques and improves many existing methods due to high precision and high flexibility of the cutting process. Therefore we combined a femtosecond cutting system and a fourier domain OCT. In a first attempt the OCT is driven with an SLD and is used alternately to the cutting system. The OCT is integrated into the optical path which enables in situ imaging of the surgery area.
机译:由于与光学透明样品的非线性相互作用,飞秒技术是对生物组织进行高精度显微手术的非常有用的工具。同时,飞秒激光是成像方法(如光学相干断层扫描(OCT))的理想光源,这是因为激光的光谱范围广,这对于产生超短脉冲是必不可少的。使用生物组织内的OCT结构可以以低μm范围内的分辨率进行非侵入式成像。超短脉冲激光用于生物组织切割以及通过OCT成像的组合使用是非常有趣的工具。由于切割过程的高精度和高灵活性,它开辟了广泛的新手术技术并改进了许多现有方法。因此,我们结合了飞秒切割系统和傅立叶域OCT。第一次尝试时,OCT由SLD驱动,并与切割系统交替使用。 OCT被集成到光路中,从而可以对手术区域进行原位成像。

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