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首页> 外文期刊>Analytical and Bioanalytical Chemistry >Data processing for image-based chemical sensors: unsupervised region of interest selection and background noise compensation
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Data processing for image-based chemical sensors: unsupervised region of interest selection and background noise compensation

机译:基于图像的化学传感器的数据处理:无监督的关注区域选择和背景噪声补偿

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摘要

Natural olfaction suggests that numerous replicas of small sensors can achieve large sensitivity. This concept of sensor redundancy can be exploited by use of optical chemical sensors whose use of image sensors enables the simultaneous measurement of several spatially distributed indicators. Digital image sensors split the framed scene into hundreds of thousands of pixels each corresponding to a portion of the sensing layer. The signal from each pixel can be regarded as an independent sensor, which leads to a highly redundant sensor array. Such redundancy can eventually be exploited to increase the signal-to-noise ratio. In this paper we report an algorithm for reduction of the noise of pixel signals. For this purpose, the algorithm processes the output of groups of pixels whose signals share the same time behavior, as is the case for signals related to the same indicator. To define these groups of pixels, unsupervised clustering, based on classification of the indicator colors, is proposed here. This approach to signal processing is tested in experiments on the chemical sensitivity of replicas of eight indicators spotted on to a plastic substrate. Results show that the groups of pixels can be defined independently of the geometrical arrangement of the sensing spots, and substantial improvement of the signal-to-noise ratio is obtained, enabling the detection of volatile compounds at any location on the distributed sensing layer.
机译:自然嗅觉表明,小型传感器的大量复制品可以实现较大的灵敏度。传感器冗余的概念可以通过使用光学化学传感器加以利用,其图像传感器的使用可以同时测量几个空间分布的指示器。数字图像传感器将成帧的场景分为成千上万个像素,每个像素对应于传感层的一部分。来自每个像素的信号可视为一个独立的传感器,这导致了高度冗余的传感器阵列。最终可以利用这种冗余来增加信噪比。在本文中,我们报告了一种用于减少像素信号噪声的算法。为此,该算法处理其信号共享相同时间行为的像素组的输出,就像与同一指示符相关的信号一样。为了定义这些像素组,在此提出了基于指示器颜色分类的无监督聚类。这种信号处理方法已在实验中测试了点在塑料基材上的八个指示剂的复制品的化学敏感性。结果表明,可以独立于感测点的几何排列来定义像素组,并且可以显着改善信噪比,从而可以在分布式感测层上的任何位置检测挥发性化合物。

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