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首页> 外文期刊>IEEE Transactions on Magnetics >A Novel Inversion Technique for Imaging Thrombus Volume in Microchannels Fusing Optical and Impedance Data
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A Novel Inversion Technique for Imaging Thrombus Volume in Microchannels Fusing Optical and Impedance Data

机译:融合光学和阻抗数据的微通道血栓体积成像的新型反演技术

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The aim of this paper is to present a novel inversion technique to measure the volume of thrombus induced under blood flow conditions in a lab-on-a-chip device. The device is composed by a microscope slide where gold electrodes are sputtered and by a polydimethylsiloxane microchannel placed on the top of the slide. A thrombogenic substance is placed on the slide in such a way that hemostasis is induced when whole blood flows in the microchannel. The novel idea behind the inversion technique is to fuse optical and electrical impedance data to obtain a quasi-real-time reconstruction of thrombus volume. This is not possible with present state-of-the-art optical imaging based on confocal microscopy, which provides the thrombus volume estimation only at the end of the thrombus formation.
机译:本文的目的是提出一种新颖的反演技术,以测量芯片实验室设备中血液流动条件下诱发的血栓量。该装置由一个显微镜载玻片和一个放置在载玻片顶部的聚二甲基硅氧烷微通道组成,在显微镜载玻片上溅射了金电极。将血栓形成物质置于载玻片上,以便当全血在微通道中流动时引起止血。反演技术背后的新颖思想是融合光学和电阻抗数据,以获得血栓体积的准实时重建。对于当前基于共聚焦显微镜的最新光学成像而言,这是不可能的,该技术仅在血栓形成结束时提供血栓体积估计。

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