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Implantable Wireless Telemetry Boards for In Vivo Transocular Transmission

机译:植入式无线遥测板,用于体内经眼传输

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摘要

We report live animal studies that verify and quantify successful transocular transmission of data from a miniature low-power implant. To minimize damage, implantation within layers of the eye requires an ultrasmall device on a scale of just a few millimeters on each side and less than 500 $muhbox{m}$ in thickness. A high-frequency transmitter integrated circuit (IC) was designed, fabricated, and bonded onto a board containing an antenna, matching network components, and interconnects. The transmitter must achieve sufficient efficiency to draw minimal power from the limited onboard storage array while outputting a sufficiently large signal to overcome tissue-induced attenuation. Two different versions of the system were developed, one using a low-temperature co-fired ceramic material for the substrate and the other using silicon. Animal studies performed using live rabbits followed by empirical measurements verified the feasibility of a wireless telemetry scheme for a low-power miniature ocular implant.
机译:我们报告了活体动物研究,这些研究验证并量化了微型低功率植入物成功透眼的数据传输。为了使损害最小化,将其植入眼睛的各层需要一个超小型装置,其每侧的尺寸仅为几毫米,厚度小于500微米。设计,制造了高频发射器集成电路(IC),并将其结合到包含天线,匹配网络组件和互连的板上。发射器必须达到足够的效率,以从有限的机载存储阵列中获取最小的功率,同时输出足够大的信号以克服组织引起的衰减。开发了两种不同版本的系统,一种使用低温共烧陶瓷材料作为基材,另一种使用硅。使用活兔进行的动物研究,然后进行经验测量,证明了无线遥测方案可用于低功率微型眼科植入物的可行性。

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