首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Penetration and Precision of Subsurface Photodisruption in Porcine Skin Tissue With Infrared Femtosecond Laser Pulses
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Penetration and Precision of Subsurface Photodisruption in Porcine Skin Tissue With Infrared Femtosecond Laser Pulses

机译:飞秒激光脉冲在猪皮肤组织中进行次表面光破坏的穿透率和精度

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The surgical precision of photodisruption with ultrafast optical pulses depends on the accurate delivery of optical energy to sites of interest. As light penetration is limited in turbid tissues, localization and precision of subsurface breakdown highly depend on the interacting effects of increased power requirements and external focusing conditions. Infrared femtosecond breakdown extent in excised porcine skin tissue was investigated using a high-frequency ultrasonic technique which sensitively detected laser-induced bubbles. Using a focused laser source, optical parameters including laser fluence and focusing numerical aperture (NA) were controlled. Decreasing NA improved penetration, while increasing NA improved precision. At lower NA, penetrations of up to 1 mm could be achieved with a single laser excitation at the cost of an expanded breakdown region which reduced precision. Even at higher NA, however, maximum penetration reduced to 400 $mu$m and precision was still limited with extended breakdown regions for focusing depths greater than 100 $mu$m. Glycerol was used as an index matching material, which helped reduce scattering and improved penetration by 150 to 400 $mu$m for all NAs. Nonetheless, multiple breakdown sites and the corresponding reduction in precision were observed even with glycerol treatment.
机译:用超快光脉冲进行光破坏的手术精度取决于将光能准确传递到目标部位。由于光在混浊组织中的渗透受到限制,因此地下击穿的定位和精度在很大程度上取决于功率需求增加和外部聚焦条件的相互作用。使用高频超声波技术研究了切除的猪皮肤组织中的红外飞秒击穿程度,该技术可以灵敏地检测到激光诱导的气泡。使用聚焦激光源,可控制包括激光能量密度和聚焦数值孔径(NA)在内的光学参数。降低NA可以提高渗透率,而增加NA可以提高精度。在较低的NA下,一次激光激发可以达到1 mm的穿透力,但代价是扩大了击穿区域,降低了精度。但是,即使在较高的NA下,最大穿透深度也降低到400μm,并且由于聚焦深度大于100μm的扩展击穿区域,精度仍然受到限制。甘油被用作折射率匹配材料,它有助于减少散射,并使所有NA的渗透率提高150至400μm。然而,即使使用甘油处理,也观察到多个击穿部位和相应的精度降低。

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