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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Measurement of Ocular Compliance Using iPerfusion
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Measurement of Ocular Compliance Using iPerfusion

机译:使用iPerfusion测量眼部顺应性

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The pressure-volume relationship of the eye is determined by the biomechanical properties of the corneoscleral shell and is classically characterized by Friedenwald’s coefficient of ocular rigidity or, alternatively, by the ocular compliance (OC), defined as dV/dP. OC is important in any situation where the volume (V) or pressure (P) of the eye is perturbed, as occurs during several physiological and pathological processes. However, accurately measuring OC is challenging, particularly in rodents. We measured OC in 24 untreated enucleated eyes from 12 C57BL/6 mice using the iPerfusion system to apply controlled pressure steps, whilst measuring the time-varying flow rate into the eye. Pressure and flow data were analysed by a “Discrete Volume” (integrating the flow trace) and “Step Response” method (fitting an analytical solution to the pressure trace). OC evaluated at 13 mmHg was similar between the two methods (41 [37, 46] versus 42 [37, 48] nl/mmHg; mean [95% CI]), although the Step Response Method yielded tighter confidence bounds. OC was tightly correlated between contralateral eyes (R2=0.75, p=0.0003). Following treatment with the cross-linking agent genipin, OC decreased by 40 [33, 47]% (p=0.0001; N=6). This method to measure OC provides a powerful tool to assess corneoscleral biomechanics in mice and other species.
机译:眼睛的压力-体积关系由角膜巩膜壳的生物力学特性决定,并且通常由弗里登瓦尔德的眼球刚度系数或眼球顺应性(OC)定义为dV / dP来表征。 OC在眼睛的体积(V)或压力(P)受到干扰的任何情况下都是很重要的,就像在几种生理和病理过程中发生的那样。但是,准确测量OC具有挑战性,尤其是在啮齿动物中。我们使用iPerfusion系统对12只C57BL / 6小鼠的24只未摘除假眼的OC进行了测量,使用iPerfusion系统施加了受控的压力步长,同时测量了随时间流向眼睛的流速。压力和流量数据通过“离散量”(集成流量轨迹)和“阶跃响应”方法(将分析溶液拟合到压力轨迹)进行分析。两种方法之间在13 mmHg下评估的OC相似(41 [37,46]与42 [37,48] nl / mmHg;平均值[95%CI]),尽管“阶跃响应方法”产生了更严格的置信范围。 OC与对侧眼睛之间紧密相关(R2 = 0.75,p = 0.0003)。用交联剂Genipin处理后,OC降低了40 [33,47]%(p = 0.0001; N = 6)。这种测量OC的方法为评估小鼠和其他物种的角膜巩膜生物力学提供了强大的工具。

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