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A new device to noninvasively estimate the intraocular pressure produced during ocular compression

机译:一种新的无创估计眼压过程中产生的眼内压的装置

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Purpose: To describe a noninvasive instrument that estimates intraocular pressure during episodes of external globe compression and to demonstrate the accuracy and reliability of this device by comparing it to the intraocular pressures simultaneously and manometrically measured in cannulated eyes. Methods: A thin fluid-filled bladder was constructed from flexible and inelastic plastic sheeting and was connected to a pressure transducer with high pressure tubing. The output of the pressure transducer was sent to an amplifier and recorded. This device was validated by measuring induced pressure in the fluid-filled bladder while digital pressure was applied to one surface, and the other surface was placed directly against a human cadaver eye or in vivo pig eye. The human cadaver and in vivo pig eyes were each cannulated to provide a manometric intraocular pressure control. Results: The measurements obtained with the newly described device were within ~5% of simultaneously measured manometric intraocular pressures in both a human cadaver and in vivo pig eye model for a pressure range of ~15–100 mmHg. Conclusion: This novel noninvasive device is useful for estimating the intraocular pressure transients induced during any form of external globe compression; this is a clinical setting where no other devices can be used to estimate intraocular pressure.
机译:目的:描述一种非侵入性仪器,该仪器可在外部球囊压迫发作期间估算眼内压,并通过将其与空心眼中同时进行眼压测量和眼压比较来证明该设备的准确性和可靠性。方法:用柔软的非弹性塑料布制成一个充满液体的薄囊,并通过高压管将其连接到压力传感器上。压力传感器的输出被发送到放大器并进行记录。通过在将数字压力施加到一个表面并将另一表面直接抵靠人尸体眼睛或体内猪眼的同时测量充满液体的膀胱中的感应压力来验证该设备的有效性。将人尸体和体内猪眼分别插管以提供测压眼内压控制。结果:在人尸体和体内猪眼模型中,压力范围为〜15–100 mmHg时,使用新描述的设备获得的测量值均在同时测量的眼压内眼压的5%左右。结论:这种新型的非侵入性装置可用于估计在任何形式的外部球囊压迫过程中引起的眼内压瞬变。这是一种临床环境,其中没有其他设备可用于估计眼内压。

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