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In situ acoustomagnetic interrogation of a glaucoma valve with integrated wireless microactuator

机译:集成无线微执行器的青光眼原位声磁询问

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This paper describes the design, fabrication and in situ evaluation of a system developed for interrogation of an actuator-integrated glaucoma valve. An implanted glaucoma valve facilitates drainage of aqueous humor from the eye to help lower intraocular pressure in patients with glaucoma. Here, a customized magnetoelastic actuator is integrated on the valve to limit the fibrosis and encapsulation of the valve that can otherwise lead to implant failure. The system described here excites the actuator magnetically and verifies the actuation by sensing the acoustic signals generated by the vibrating actuator. This work focuses on increasing the wireless range, reducing signal feedthrough, and establishing the clinical utility of the system. In vitro experiments performed with the system demonstrate a signal-to-noise ratio of ≈140. In situ experiments, performed with the actuator-integrated valves implanted in porcine eyes, achieve a signal to noise ratio of 3-6. These are the first recorded acoustic signatures through tissue from a magnetoelastic device in an implanted environment.
机译:本文介绍了为询问执行器集成型青光眼瓣膜而开发的系统的设计,制造和现场评估。植入的青光眼瓣膜有助于从眼中排出房水,从而有助于降低青光眼患者的眼内压。在此,将定制的磁弹性致动器集成在瓣膜上,以限制瓣膜的纤维化和包囊,否则会导致植入失败。此处描述的系统通过磁性方式激励执行器,并通过感测由振动执行器产生的声信号来验证执行器。这项工作的重点是扩大无线范围,减少信号馈通并建立系统的临床效用。用该系统进行的体外实验表明信噪比约为140。用植入猪眼中的执行器集成阀进行的原位实验实现了3-6的信噪比。这些是在植入环境中通过磁弹性装置通过组织的第一个记录的声学特征。

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