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Corneal Biomechanical Assessment with Ultra-High-Speed Scheimpflug Imaging During Non-Contact Tonometry: A Prospective Review

机译:角膜生物力学评估在非联系纯度期间超高速Scheimpflug成像:预期审查

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摘要

In recent years, increasing interest has arisen in the application of data from corneal biomechanics in many areas of ophthalmology, particularly to assist in the detection of early corneal ectasia or ectasia susceptibility, to predict corneal response to surgical or therapeutic interventions and in glaucoma management. Technology has evolved and, recently, the Scheimpflug principle was associated with a non-contact air-puff tonometer, allowing a thorough analysis of corneal biomechanics and a biomechanically corrected intraocular pressure assessment, opening up new perspectives both in ophthalmology and in other medical areas. Data from corneal biomechanics assessment are being integrated in artificial intelligence models in order to increase its value in clinical practice.
机译:近年来,在眼科的许多领域的角膜生物力学中,越来越多的利益,特别是为了有助于检测早期的角膜外肌或异常敏感性,以预测对外科或治疗干预和青光眼管理的角膜应答。技术已经发展而来,最近,Scheimpflug原理与非接触式空气 - 浮肿的原理有关,允许对角膜生物力学和生物力学校正的眼内压力评估进行彻底分析,在眼科和其他医疗领域开放新的视角。来自角膜生物力学评估的数据正在整合人工智能模型中,以提高其在临床实践中的价值。

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