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Wound Healing After Keratorefractive Surgery: Review of Biological and Optical Considerations

机译:眼屈曲手术后的伤口愈合:生物学和光学考虑因素的回顾。

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摘要

The introduction of the excimer laser for keratorefractive surgery in the 1990s permanently reshaped the treatment landscape for correcting refractive errors, such as myopia, hyperopia, and astigmatism. Until that point, these treatments had relied on less predictable techniques, such as radial keratotomy and automated lamellar keratectomy. In recent years, other new technologies, along with increased understanding of the basic science of refractive errors, higher-order aberrations, biomechanics, and the biology of corneal wound healing, have allowed for a reduction in the surgical complications of keratorefractive surgery. Novel technologies, such as eye tracking, anterior segment imaging, the femtosecond laser, and asphericity-optimized and wavefront-guided custom laser in situ keratomileusis, have assisted refractive surgeons in achieving greater predictability of their laser vision correction procedures. Understanding the cascade of events involved in the corneal wound healing process and examination of how corneal wound healing influences corneal biomechanics and optics are crucial to improve the efficacy and safety of laser vision correction.
机译:1990年代,用于屈光性屈光手术的准分子激光的引入永久性地改变了治疗领域,以矫正屈光不正,例如近视,远视和散光。在此之前,这些治疗依靠的是难以预测的技术,例如放射状角膜切开术和自动层状角膜切开术。近年来,其他新技术以及对屈光不正,高阶像差,生物力学和角膜伤口愈合生物学等基础科学知识的加深了解,使得减少了角膜屈光手术的手术并发症。诸如眼动追踪,前节段成像,飞秒激光,非球面度优化和波前引导的定制激光原位角膜磨镶术等新技术已帮助屈光外科医师实现了其激光视力矫正程序的更大可预测性。了解参与角膜伤口愈合过程的一系列事件以及检查角膜伤口愈合如何影响角膜生物力学和光学器件,对于提高激光视力矫正的功效和安全性至关重要。

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