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首页> 外文期刊>Investigative ophthalmology & visual science >Correlation between biomechanical responses of posterior sclera and IOP elevations during micro intraocular volume change
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Correlation between biomechanical responses of posterior sclera and IOP elevations during micro intraocular volume change

机译:眼内微体积变化期间后巩膜生物力学反应与眼压升高之间的相关性

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Purpose. This study tested the hypothesis that intraocular pressure (IOP) elevations, induced by controlled increase of intraocular volume, are correlated with the biomechanical responses of the posterior sclera. Methods. Porcine globes were tested within 48 hours postmortem. The first group of globes (n = 11) was infused with 15 μL of phosphate-buffered saline at three different rates to investigate rate-dependent IOP elevations. The second group (n = 16) was first infused at the fast rate and then underwent inflation tests to investigate the relationship between IOP elevations (ΔIOP) and scleral strains. The strains in the superotemporal region of the posterior sclera were measured by ultrasound speckle tracking. Linear regression was used to examine the association between ΔIOP due to micro-volumetric infusion and the scleral strains at a specific inflation pressure. Results. The average ΔIOP was 14.9 ± 4.3 mm Hg for the infusion of 15 μL in 1 second. The ΔIOP was greater for the faster infusion rates but highly correlated across different rates (P 0.001). A significant negative association was found between the ΔIOP and the tangential strains in both the circumferential (R2 = 0.54, P = 0.003) and meridian (R2 = 0.53, P = 0.002) directions in the posterior sclera. Conclusions. This study showed a substantial increase in IOP, with a large intersubject variance during micro-volumetric change. A stiffer response of the sclera was associated with larger IOP spikes, providing experimental evidence linking corneoscleral biomechanics to IOP fluctuation. In vivo measurement of corneoscleral biomechanics may help better predict the dynamic profile of IOP.
机译:目的。这项研究检验了以下假设:由受控的眼内容积增加引起的眼内压(IOP)升高与后巩膜的生物力学反应相关。方法。死后48小时内对猪眼进行了测试。第一组球体(n = 11)以三种不同的速率注入15μL磷酸盐缓冲盐水,以研究速率依赖性IOP升高。第二组(n = 16)首先以快速注入,然后进行充气试验以研究IOP升高(ΔIOP)与巩膜应变之间的关系。通过超声斑点追踪测量后巩膜上颞部区域的应变。线性回归用于检查微体积输注引起的ΔIOP与特定充气压力下的巩膜应变之间的关系。结果。在1秒内输注15μL,平均ΔIOP为14.9±4.3 mm Hg。对于更快的输注速度,ΔIOP较大,但在不同的输注速度之间具有高度相关性(P <0.001)。在后巩膜的圆周方向(R2 = 0.54,P = 0.003)和子午线(R2 = 0.53,P = 0.002)方向上的ΔIOP和切向应变之间发现显着的负关联。结论。这项研究显示,在微体积变化期间,眼内压显着增加,受试者间差异很大。巩膜较硬的反应与较大的眼压峰值有关,提供了将角巩膜生物力学与眼压波动联系起来的实验证据。体内测量角膜巩膜生物力学可能有助于更好地预测IOP的动态情况。

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