School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, USA.
IEEE Trans Biomed Eng. 2013 Jan;60(1):250-6. doi: 10.1109/TBME.2012.2205248. Epub 2012 Jun 19.
This paper presents a minimally invasive implantable pressure sensing transponder for continuous wireless monitoring of intraocular pressure (IOP). The transponder is designed to make the implantation surgery simple while still measuring the true IOP through direct hydraulic contact with the intraocular space. Furthermore, when IOP monitoring is complete, the design allows physicians to easily retrieve the transponder. The device consists of three main components: 1) a hypodermic needle (30 gauge) that penetrates the sclera through pars plana and establishes direct access to the vitreous space of the eye; 2) a micromachined capacitive pressure sensor connected to the needle back-end; and 3) a flexible polyimide coil connected to the capacitor forming a parallel LC circuit whose resonant frequency is a function of IOP. Most parts of the sensor sit externally on the sclera and only the needle penetrates inside the vitreous space. In vitro tests show a sensitivity of 15 kHz/mmHg with approximately 1-mmHg resolution. One month in vivo implants in rabbits confirm biocompatibility and functionality of the device.
本文提出了一种微创植入式压力感应传感器,用于连续无线监测眼内压(IOP)。该传感器的设计旨在使植入手术简单,同时通过与眼内空间的直接液压接触来测量真实的 IOP。此外,当眼压监测完成后,设计允许医生轻松地取出传感器。该装置由三个主要部分组成:1)穿透巩膜并直接进入眼球玻璃体的 30 号皮下注射针;2)连接到针后端的微机电容式压力传感器;3)连接到电容器的柔性聚酰亚胺线圈形成并联 LC 电路,其谐振频率是 IOP 的函数。传感器的大部分部件位于巩膜外部,只有针穿透玻璃体内部。体外测试显示,灵敏度为 15 kHz/mmHg,分辨率约为 1 mmHg。在兔子体内植入一个月后,证实了该设备的生物相容性和功能。