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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >An Innovative Wireless Endoscopic Capsule With Spherical Shape
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An Innovative Wireless Endoscopic Capsule With Spherical Shape

机译:创新的球形球形无线内窥镜胶囊

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This paper aims to contribute to the advancement of the Wireless Capsule Endoscopy (WCE) field for ColoRectal Cancer (CRC) screening, by developing all electronic circuits to build an innovative wireless endoscopic capsule with a spherical shape, conceived to reduce the friction during its locomotion and thus improving patient’s acceptability. The proposed capsule embeds an image sensor with optics and Light Emitting Diodes (LEDs), a control unit with a telemetry module, an actuation system, a battery with a smart recharging circuit able to recharge in 20 minutes, a smart power-on circuit and a localization module. Everything is devised to fit in a small spherical shape with a diameter of 26 mm and a weight of 12.70 g. The authors present a description of the sub-modules involved in the capsule development, together with the firmware and hardware integration. In order to reduce the bandwidth for matching the specifications of the target commercial telemetry, the firmware interfacing of a custom encoder was performed, which is able to compress the incoming images with a negligible loss of information and occupying a number of Look Up-Tables (LUTs) less than 1780. As a preliminary work, a versatile Field Programmable Gate Arrays (FPGA) based demo-board system has been developed in order to test and optimize the functionalities and the performance of the single sub-modules and wireless vision chain system. This work allows to demonstrate the feasibility of a complex biomedical system, with severe constraints by highlighting the necessity to enhance the frame rate in the future.
机译:本文旨在通过开发所有电子电路来构建具有球形形状的创新无线内窥镜胶囊,以期减少其运动过程中的摩擦力,从而为结肠直肠癌(CRC)筛查的无线胶囊内窥镜(WCE)领域的发展做出贡献。从而提高患者的接受度。拟议的胶囊嵌入了一个带有光学元件和发光二极管(LED)的图像传感器,一个带有遥测模块的控制单元,一个致动系统,一个具有能够在20分钟内充电的智能充电电路的电池,一个智能上电电路以及本地化模块。一切设计成直径为26毫米,重量为12.70克的小球形。作者介绍了与胶囊开发有关的子模块,以及固件和硬件集成。为了减少带宽以匹配目标商业遥测的规格,执行了定制编码器的固件接口,该编码器能够压缩传入的图像,而信息损失可忽略不计,并且占用大量的查找表( LUTs小于1780。作为一项初步工作,已经开发了基于通用现场可编程门阵列(FPGA)的演示板系统,以测试和优化单个子模块和无线视觉链系统的功能和性能。 。这项工作通过强调未来提高帧速率的必要性,从而证明了复杂生物医学系统的可行性,并具有严格的限制。

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