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Lowering Threshold Energy for Femtosecond Laser Pulse Photodisruption through Turbid Media using Adaptive Optics

机译:使用自适应光学器件降低通过混浊介质的飞秒激光脉冲光破坏的阈值能量

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Focussed femtosecond laser pulses are applied in ophthalmic tissues to create an optical breakdown and therefore a tissue dissection through photodisruption. The threshold irradiance for the optical breakdown depends on the photon density in the focal volume which can be influenced by the pulse energy, the size of the irradiated area (focus), and the irradiation time. For an application in the posterior eye segment the aberrations of the anterior eye elements cause a distortion of the wavefront and therefore an increased focal volume which reduces the photon density and thus raises the required energy for surpassing the threshold irradiance. The influence of adaptive optics on lowering the pulse energy required for photodisruption by refining a distorted focus was investigated. A reduction of the threshold energy can be shown when using adaptive optics. The spatial confinement with adaptive optics furthermore raises the irradiance at constant pulse energy. The lowered threshold energy allows for tissue dissection with reduced peripheral damage. This offers the possibility for moving femtosecond laser surgery from corneal or lental applications in the anterior eye to vitreal or retinal applications in the posterior eye.
机译:将聚焦的飞秒激光脉冲施加到眼科组织中,以产生光学击穿,并因此通过光致破裂进行组织解剖。用于光学击穿的阈值辐照度取决于焦点体积中的光子密度,该密度可能受到脉冲能量,辐照区域(焦点)的大小和辐照时间的影响。对于在后眼段中的应用,前眼元件的像差会引起波前的畸变,因此会增加焦点体积,从而减小光子密度,从而提高了超过阈值辐照度所需的能量。研究了自适应光学器件对通过精化畸变焦点来降低光解所需的脉冲能量的影响。使用自适应光学器件时,可以显示阈值能量的降低。自适应光学器件的空间限制进一步提高了恒定脉冲能量下的辐照度。降低的阈值能量可减少周围损伤而进行组织解剖。这提供了将飞秒激光手术从前眼的角膜或晶状体应用转移到后眼的玻璃体或视网膜应用的可能性。

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