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TRANS-SCLERAL TONOMETRY: MECHANICAL PALPATION OF THE EYE

机译:经巩膜断层照相术:眼的机械触诊

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The development of new tonometers requires laboratory tests on enucleated eyes where the intraocular pressure (IOP) is usually controlled by the use of a fluid column (manometry). This article describes a novel eye pressure regulation system for IOP tests along with a new concept of mechanical palpation tonome-try. Manometry is commonly regarded as an invasive technique that can measure precisely the pressure inside the eye. It is a common laboratory technique for evaluating changes in IOP overtime, and for providing reference pressure by which all other tonometers can be evaluated. In general, the system consists of a fluid column (1 % saline solution) connected via PVC tubing to a three way valve. The valve is able to connect the column branch to a syringe with a 21G needle inserted into the vitreous humor and to a pressure transducer. The syringe needle is inserted in the eye through the side, with the tip located approximately in the middle of the vitreous chamber [1]. However, this method is prone to errors due to the gelatinous and highly fibrous nature of the vitreous matter that could easily clog the syringe needle and prevent the accurate pressure control and measurement. To resolve this difficulty, we report an alternative control of the IOP through the anterior chamber of the eye. In addition to the clogging, severed blood vessels in enucleated eyes result in large rate of leakage of intraocular fluid. With these modifications in place, it was demonstrated that the pressure sensing is fast and accurate, allowing investigation of mechanical trans-scleral palpation and the development of a new concept of mechanical palpation tonometry device. The device is based on multiple probes for measuring contact forces. Experimental data from the performance of the device are presented.
机译:新的眼压计的发展需要在无核眼上进行实验室测试,其中通常通过使用液柱(测压法)来控制眼内压(IOP)。本文介绍了一种用于IOP测试的新型眼压调节系统,以及机械触诊眼压测试的新概念。测压通常被认为是一种可以精确测量眼内压力的侵入性技术。这是一种常见的实验室技术,用于评估IOP随时间的变化,并提供可以评估所有其他眼压计的参考压力。通常,系统由通过PVC管连接到三通阀的液柱(1%盐溶液)组成。该阀能够将色谱柱分支连接到带有插入玻璃体液中的21G针头的注射器和压力传感器。注射器针头通过侧面插入眼睛,其尖端大约位于玻璃体腔的中间[1]。然而,由于玻璃质的凝胶状和高度纤维化的性质,该方法容易出错,这很容易堵塞注射器针头并妨碍精确的压力控制和测量。为了解决这个困难,我们报告了通过眼前房对IOP的另一种控制方式。除堵塞外,摘除眼睛的血管破裂还会导致眼内液大量漏出。进行了这些修改后,证明了压力感测是快速且准确的,从而允许对机械性跨巩膜触诊进行研究,并开发了机械触觉眼压计设备的新概念。该设备基于用于测量接触力的多个探针。给出了设备性能的实验数据。

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