Suppr超能文献

两种新型硬度参数的介绍以及使用动态Scheimpflug分析仪对吹气诱导生物力学变形参数的解读

Introduction of Two Novel Stiffness Parameters and Interpretation of Air Puff-Induced Biomechanical Deformation Parameters With a Dynamic Scheimpflug Analyzer.

作者信息

Roberts Cynthia J, Mahmoud Ashraf M, Bons Jeffrey P, Hossain Arif, Elsheikh Ahmed, Vinciguerra Riccardo, Vinciguerra Paolo, Ambrósio Renato

出版信息

J Refract Surg. 2017 Apr 1;33(4):266-273. doi: 10.3928/1081597X-20161221-03.

Abstract

PURPOSE

To investigate two new stiffness parameters and their relationships with the dynamic corneal response (DCR) parameters and compare normal and keratoconic eyes.

METHODS

Stiffness parameters are defined as Resultant Pressure at inward applanation (A1) divided by corneal displacement. Stiffness parameter A1 uses displacement between the undeformed cornea and A1 and stiffness parameter highest concavity (HC) uses displacement from A1 to maximum deflection during HC. The spatial and temporal profiles of the Corvis ST (Oculus Optikgeräte, Wetzlar, Germany) air puff were characterized using hot wire anemometry. An adjusted air pressure impinging on the cornea at A1 (adjAP1) and an algorithm to biomechanically correct intraocular pressure based on finite element modelling (bIOP) were used for Resultant Pressure calculation (adjAP1 - bIOP). Linear regression analyses between DCR parameters and stiffness parameters were performed on a retrospective dataset of 180 keratoconic eyes and 482 normal eyes. DCR parameters from a subset of 158 eyes of 158 patients in each group were matched for bIOP and compared using t tests. A P value of less than .05 was considered statistically significant.

RESULTS

All DCR parameters evaluated showed significant differences between normal and keratoconic eyes, except peak distance. Keratoconic eyes had lower stiffness parameter values, thinner pachymetry, shorter applanation lengths, greater absolute values of applanation velocities, earlier A1 times and later second applanation times, greater HC deformation amplitudes and HC deflection amplitudes, and lower HC radius of concave curvature (greater concave curvature). Most DCR parameters showed a significant relationship with both stiffness parameters in both groups.

CONCLUSIONS

Keratoconic eyes demonstrated less resistance to deformation than normal eyes with similar IOP. The stiffness parameters may be useful in future biomechanical studies as potential biomarkers. [J Refract Surg. 2017;33(4):266-273.].

摘要

目的

研究两个新的刚度参数及其与动态角膜反应(DCR)参数的关系,并比较正常眼和圆锥角膜眼。

方法

刚度参数定义为向内压平(A1)时的合成压力除以角膜位移。刚度参数A1使用未变形角膜与A1之间的位移,刚度参数最高凹陷度(HC)使用从A1到HC期间最大偏转的位移。使用热线风速仪对Corvis ST(德国韦茨拉尔的Oculus Optikgeräte公司)气团的空间和时间轮廓进行表征。在计算合成压力(调整后的A1处的气压[adjAP1]减去基于有限元建模的生物力学眼压校正值[bIOP])时,使用了作用于角膜A1处的调整后的气压(adjAP1)和一种基于有限元建模的生物力学眼压校正算法(bIOP)。对180只圆锥角膜眼和482只正常眼的回顾性数据集进行DCR参数与刚度参数之间的线性回归分析。对每组中158例患者的158只眼中的一个子集的DCR参数进行bIOP匹配,并使用t检验进行比较。P值小于0.05被认为具有统计学意义。

结果

除峰值距离外,所有评估的DCR参数在正常眼和圆锥角膜眼之间均显示出显著差异。圆锥角膜眼的刚度参数值较低、角膜厚度较薄、压平长度较短、压平速度绝对值较大、A1时间较早且第二次压平时间较晚、HC变形幅度和HC偏转幅度较大,以及HC凹曲率半径较小(凹曲率较大)。在两组中,大多数DCR参数与两个刚度参数均显示出显著关系。

结论

在眼压相似的情况下,圆锥角膜眼比正常眼表现出更小的抗变形能力。刚度参数作为潜在的生物标志物,可能在未来的生物力学研究中有用。[《屈光手术杂志》。2017;33(4):266 - 273。]

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验