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首页> 外文期刊>Journal of refractive surgery >Effects of variation in depth and side cut angulations in LASIK and thin-flap LASIK using a femtosecond laser: A biomechanical study
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Effects of variation in depth and side cut angulations in LASIK and thin-flap LASIK using a femtosecond laser: A biomechanical study

机译:飞秒激光对LASIK和薄瓣LASIK的深度和​​侧切角变化的影响:生物力学研究

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PURPOSE: To study the corneal biomechanical effects of varying LASIK flap depth and side cut angulations and evaluate the relative contribution of the lamellar and side cuts using a femtosecond laser and radial shearing speckle pattern interferometry (RSSPI). METHODS: Forty-two organ-cultured human corneas were divided into a control group and three investigative groups, each undergoing different incision types at both 90- and 160-μm depth using a femtosecond laser. In the first group, typical LASIK flaps were created; in the second group, only the bed was cut (delamination); and in the third group, side cuts alone were affected. Corneal strain was measured using RSSPI before and after treatment following an increase in hydrostatic pressure from 15.0 to 15.5 mmHg and again after 1 week of incubation in culture medium. RESULTS: The flap group demonstrated a weakening of strength related to the depth of cut, with strain increasing by 9% and 32% at 90 and 160 μm, respectively. Similar changes, 9% and 33%, were observed following execution of side cuts to the same depths. By contrast, strain increase following delamination showed no relationship with depth, increasing by 5% in both instances. When the side cut angle was made more acute, strain decreased with a 2% strain increase being measured after a 90-μm, 150° side cut was created. No significant changes occurred during the period of organ culture. CONCLUSIONS: Vertical side cuts through corneal lamellae rather than horizontal delamination incisions contribute to the loss of structural integrity during LASIK flap creation. Angulating side cuts such that the stromal diameter of the flap exceeds its epithelial diameter can decrease this effect.
机译:目的:研究飞秒激光和径向剪切散斑干涉法(RSSPI)对不同LASIK瓣深度和侧切角的角膜生物力学影响,并评估层状和侧切的相对贡献。方法:将42只器官培养的人角膜分为对照组和3个研究组,每组使用飞秒激光在90和160μm深度分别进行不同的切口类型。在第一组中,创建了典型的LASIK皮瓣。在第二组中,只有床被切割(分层);在第三组中,仅侧切受到影响。在水压从15.0mmHg增加到15.5mmHg之后,在培养基中孵育1周后,在处理之前和之后使用RSSPI测量角膜应变。结果:皮瓣组显示出与切深有关的强度减弱,在90和160μm处应变分别增加了9%和32%。在进行相同深度的切边后,观察到类似的变化(9%和33%)。相比之下,分层后的应变增加与深度没有关系,在两种情况下均增加5%。当使侧面切割角度更锐利时,在创建90μm,150°侧面切割后,应变降低了,而应变增加了2%。在器官培养期间无明显变化。结论:角膜薄片的垂直侧切而不是水平分层切口会导致LASIK皮瓣形成过程中结构完整性的丧失。成角度的侧切口使得瓣的内径超过其上皮直径可以降低这种效果。

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