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Efficacy of Morpho-Geometrical Analysis of the Corneal Surfaces in Keratoconus Disease According to Moderate Visual Limitation

机译:根据温和的视觉限制,角膜疾病中角膜表面的疗效

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The cornea is a complex hemispheric structure, made of collagen fibres that provide it a homogenous and stable geometry. During keratoconus disease, a loss of tenacity takes place in the collagen fibres that form the corneal structure, producing an alteration of its geometry, this is, a change of its curvature, and therefore, a loss of visual quality of patients. The geometric characterization of the hemispheric structure by means of biometric parameters is a very solid technique of diagnosis, based in a virtual 3D model, which has already been validated for several degrees of severity of keratoconus pathology. In this prospective comparative study, 93 corneas (50 healthy subjects and 43 patients with keratoconus with moderate visual limitation) were geometrically modelled. The results obtained in this work suggest that the best predictive biometric parameters are anterior corneal surface area and posterior apex deviation, and that the strongest correlation is produced between sagittal plane apex area in minimum thickness point and sagittal plane apex area. The studied biometric parameters have shown significant differences between groups. Therefore, the analysis of the biometric parameters that register the geometric decompensation that locally appear in a corneal region, as a response to the asymmetry produced during the development of keratoconus disease with a moderate visual impairment, is a new approach that may lead to a better understanding of the disease with this degree of optical limitation.
机译:角膜是一种复杂的半球结构,由胶原纤维制成,提供均匀且稳定的几何形状。在角蛋白疾病期间,在形成角膜结构的胶原纤维中发生韧性的损失,产生其几何形状的改变,这是其曲率的变化,因此,患者的视觉质量丧失。通过生物识别参数的半球结构的几何表征是基于虚拟3D模型的基于虚拟3D模型的非常坚固的诊断技术,这已经被验证了KeratoConus病理的几种严重程度。在这项前瞻性比较研究中,93名玉米羚(50名健康受试者和43名KeratoConus患者,具有中度视觉限制)是几何模拟的。在本作工作中获得的结果表明,最佳的预测生物识别参数是前角膜表面积和后端顶点偏差,并且在最小厚度点和矢状平面顶点区域的矢状平面顶点区域之间产生最强的相关性。研究的生物识别参数显示了组之间的显着差异。因此,对局部出现在角膜区域中局部出现的几何失代偿的生物识别参数的分析,作为对具有中等视力障碍的角蛋白疾病发展过程中产生的不对称性的反应,是一种新的方法,可能导致更好用这种光学限制了解疾病。

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