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Information visualization techniques for sensing and biosensing

机译:用于传感和生物传感的信息可视化技术

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The development of new methods and concepts to visualize massive amounts of data holds the promise to revolutionize the way scientific results are analyzed, especially when tasks such as classification and clustering are involved, as in the case of sensing and biosensing. In this paper we employ a suite of software tools, referred to as PEx-Sensors, through which projection techniques are used to analyze electrical impedance spectroscopy data in electronic tongues and related sensors. The possibility of treating high dimension datasets with PEx-Sensors is advantageous because the whole impedance vs. frequency curves obtained with various sensing units and for a variety of samples can be analyzed at once. It will be shown that non-linear projection techniques such as Sammon's Mapping or IDMAP provide higher distinction ability than linear methods for sensor arrays containing units capable of molecular recognition, apparently because these techniques are able to capture the cooperative response owing to specific interactions between the sensing unit material and the analyte. In addition to allowing for a higher sensitivity and selectivity, the use of PEx-Sensors permits the identification of the major contributors for the distinguishing ability of sensing units and of the optimized frequency range. The latter will be illustrated with sensing units made with layer-by-layer (LbL) films to detect phytic acid, whose capacitance data were visualized with Parallel Coordinates. Significantly, the implementation of PEx-Sensors was conceived so as to handle any type of sensor based on any type of principle of detection, representing therefore a generic platform for treating large amounts of data for sensors and biosensors.
机译:可视化海量数据的新方法和概念的发展有望彻底改变分析科学结果的方式,尤其是在涉及分类和聚类等任务时,例如在传感和生物传感的情况下。在本文中,我们采用了一套称为PEx传感器的软件工具,通过该工具,投影技术可用于分析电子舌和相关传感器中的电阻抗光谱数据。用PEx传感器处理高维数据集的可能性是有利的,因为可以立即分析使用各种传感单元和各种样本获得的整个阻抗与频率曲线。将会显示,非线性投影技术(例如Sammon's Mapping或IDMAP)比线性方法对包含能够进行分子识别的单元的传感器阵列提供了更高的区分能力,这显然是由于这些技术能够捕获协同反应,这是由于这些技术之间存在特定的相互作用。传感单元材料和分析物。除了允许更高的灵敏度和选择性之外,使用PEx传感器还可以识别出主要的因素,以区分传感单元和优化的频率范围。后者将通过用层(LbL)膜制成的检测植酸的检测单元进行说明,该植酸的电容数据可通过平行坐标显示。重要的是,设计了PEx-Sensors的实现,以便根据任何类型的检测原理来处理任何类型的传感器,因此代表了一种用于处理传感器和生物传感器的大量数据的通用平台。

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