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Evaluation of the relationship of corneal biomechanical metrics with physical intraocular pressure and central corneal thickness in ex vivo rabbit eye globes

机译:评价离体兔眼球体中角膜生物力学指标与物理眼内压和角膜中央厚度的关系

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The relationship of corneal biomechanical metrics provided by the Ocular Response Analyzer (ORA) and Corvis ST (CVS) with physical intraocular pressure (IOPp) and central corneal thickness (CCT) was evaluated. Thirty fresh enucleated eyes of 30 rabbits were used in ex vivo whole globe inflation experiments. IOPp was measured with a pressure transducer and increased from 7.5 to 37.5 mmHg in steps of 7.5 mmHg while biomechanical data was acquired using the ORA and CVS. At least 3 examinations were performed at each pressure level, where CCT and twelve biomechanical metrics were recorded and analyzed as a function of IOPp. The biomechanical metrics included corneal hysteresis (CH) and corneal resistance factor (CRF), obtained by the ORA. They also included the applanation times (A1T, A2T), lengths (A1L, A2L) and velocities (A1V, A2V), in addition to the highest concavity time (HCT), peak distance (PD), radius (HR) and deformation amplitude (DA), obtained by the CVS. The variation of CCT and the twelve biomechanical metrics for the 30 rabbit eyes tested across the 5 pressure stages considered (inter-pressure differences) were statistically significant (P = 0.00). IOPp was highly to moderately correlated with most biomechanical metrics, especially CRF, A1T, A1V, A2V, PD and DA, while the relationships with CH, A2T, A1L and HCT were poor. IOP has important influences on most corneal biomechanical metrics provided by CVS and ORA. Two biomechanical metrics AlV and HR were influenced by CCT after correcting for the effect of IOP in most pressure stages, while the correlation with others were weak. Comparisons of research groups based on ORA and CVS with different IOPs and CO's may lead to possible misinterpretations if both or one of which are not considered in the analysis. (C) 2015 Elsevier Ltd. All rights reserved.
机译:评估了由眼反应分析仪(ORA)和Corvis ST(CVS)提供的角膜生物力学指标与物理眼压(IOPp)和中央角膜厚度(CCT)的关系。将30只兔子的30只去核的新鲜眼用于离体全球充气实验。 IOPp用压力传感器测量,并以7.5 mmHg的步长从7.5 mmHg增加到37.5 mmHg,同时使用ORA和CVS获取生物力学数据。在每个压力水平上至少进行了3次检查,记录了CCT和12种生物力学指标,并根据IOPp进行了分析。生物力学指标包括通过ORA获得的角膜滞后(CH)和角膜抵抗因子(CRF)。它们还包括压平时间(A1T,A2T),长度(A1L,A2L)和速度(A1V,A2V),以及最大的凹陷时间(HCT),峰距(PD),半径(HR)和变形幅度(DA),由CVS获得。在5个压力阶段(压力间差异)测试的30只兔眼的CCT和十二种生物力学指标的变化具有统计学意义(P = 0.00)。 IOPp与大多数生物力学指标,尤其是CRF,A1T,A1V,A2V,PD和DA高度相关或中等相关,而与CH,A2T,A1L和HCT的关系较差。 IOP对CVS和ORA提供的大多数角膜生物力学指标具有重要影响。在校正大多数压力阶段IOP的影响后,CCT影响了两个生物力学指标AlV和HR,而与其他因素的相关性较弱。如果在分析中不考虑两者或其中之一,则将基于ORA和CVS的研究小组与不同IOP和CO进行比较可能会导致误解。 (C)2015 Elsevier Ltd.保留所有权利。

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