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首页> 外文期刊>Investigative ophthalmology & visual science >An applanation resonator sensor for measuring intraocular pressure using combined continuous force and area measurement.
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An applanation resonator sensor for measuring intraocular pressure using combined continuous force and area measurement.

机译:扁平谐振器传感器,用于结合连续力和面积测量来测量眼压。

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PURPOSE. For diagnostic purposes and for follow-up after treatment, it is important to have simple and reliable methods for measuring intraocular pressure (IOP). The purpose of this study was to develop a new applanation method for IOP measurement that uses combined continuous force and area measurement and to develop and evaluate an applanation resonator sensor (ARS) tonometer based on that method. METHODS. The tonometer was developed and evaluated in an in vitro porcine eye model, in which enucleated eyes were pressurized with a saline column. A model assuming that the applanation principle is valid over a certain interval of contact area was proposed. Continuous contact area was measured with a resonator sensor device, and contact force was measured with a force transducer, both mounted together in one probe. Reference IOP was measured in the vitreous chamber (IOP(VC)) with a standard fluid pressure transducer. RESULTS. An optimization algorithm determined the applanation interval that was optimal for calculating IOP(ARS). The corresponding time interval was 30 +/- 3 to 77 +/- 4 ms (mean +/- SD, n = 418) after initial contact. The proposed model showed a degree of explanation of R(2 [supi]) = 0.991 (n = 410, six eyes), corresponding to a correlation of r = 0.995 (n = 410) between IOP(ARS) and IOP(VC). The within-eyes precision (i.e., 95% confidence interval for the residuals between IOP(ARS) and IOP(VC)) was +/- 1.8 mm Hg (n = 410, six eyes). CONCLUSIONS. In this study, the ARS method for measuring IOP was evaluated in an in vitro porcine eye model and showed high precision. The ARS method is, to the authors' knowledge, the first to combine simultaneous, continuous sampling of both parameters included in the applanation principle: force and area. Consequently, there is a potential for reducing errors in clinical IOP tonometry.
机译:目的。为了诊断目的和治疗后的随访,重要的是要有一种简单可靠的方法来测量眼内压(IOP)。这项研究的目的是开发一种新的用于IOP测量的压平方法,该方法使用连续力和面积的组合测量,并基于该方法开发和评估压平谐振器传感器(ARS)眼压计。方法。在体外猪眼模型中开发并评估了眼压计,在该模型中,用盐水柱对去核眼进行了加压。提出了一种假设压平原理在一定的接触面积间隔内有效的模型。用谐振器传感器装置测量连续接触面积,并用力传感器测量接触力,两者都安装在一个探头中。使用标准液压传感器在玻璃体腔(IOP(VC))中测量参考IOP。结果。优化算法确定了压平间隔,该压平间隔最适合计算IOP(ARS)。初始接触后相应的时间间隔为30 +/- 3至77 +/- 4毫秒(平均+/- SD,n = 418)。所提出的模型显示出对ROP(ARS)与IOP(VC)的相关度r(0.99)(n = 410,六只眼睛)的解释度R(2π)= 0.991(n = 410,六只眼睛)。 。眼内精确度(即,IOP(ARS)和IOP(VC)之间的残差的95%置信区间)为+/- 1.8 mm Hg(n = 410,六只眼睛)。结论。在这项研究中,在体外猪眼模型中评估了用于测量眼压的ARS方法,并显示了很高的精度。据作者所知,ARS方法是第一种结合同时,连续采样的方法,该方法包含在压平原理中的两个参数:力和面积。因此,有可能减少临床眼压测量中的误差。

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