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Single board computing system for automated colorimetric analysis on low-cost analytical devices

机译:用于低成本分析设备的自动比色分析单板计算系统

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Colorimetric detection, while a user-friendly and easily implemented method of analysis on low-cost analytical devices, often suffers from subjectivity by the device user. We describe the development of a single board computing system to automatically analyze colorimetric samples. Single board computing systems, such as Raspberry Pi, offer significant computing power in a small, inexpensive package. By programming an attached camera to obtain images every minute, we demonstrated that Michaelis-Menten enzyme kinetic constants can be calculated directly from paper and transparency devices based on the change in color intensity over time in seconds instead of hours using an integrated image analysis program. In this system, a 3D-printed box was designed and optimized with an independent lighting system that holds the paper-based devices and the Raspberry Pi board and camera. The box omits environmental and ambient light for consistent lighting and holds the camera at a constant focal length. While early versions of the image analysis program used single pixels, the final program uses a flood fill algorithm for colorimetric analysis so the system is not restricted by device shape and can discriminate discoloration due to lighting, making it adaptable to other colorimetric device applications. As a proof-of-principle, we compared enzyme kinetics between Whatman chromatography paper and transparency-based devices and found that changing the platform did not compromise the apparent V-max and K-M calculated by the program.
机译:比色度检测,而在低成本分析设备上的用户友好且容易实现的分析方法,通常遭受设备用户的主观性。我们描述了单板计算系统的开发,以自动分析比色样本。单板计算系统(如Raspberry PI),在小型廉价的包装中提供了显着的计算能力。通过编程附加的相机以每分钟获得图像,我们证明了Michaelis-Menten酶动力学常数可以直接根据纸张和透明度器件基于在几秒钟而不是使用集成图像分析程序的时间而不是小时的时间来计算。在该系统中,设计了一个3D印刷盒,并用独立的照明系统设计和优化,该系统将基于纸张的设备和覆盆子PI板和相机。该盒子省略了环境和环境光,以实现一致的照明,并将相机保持在恒定的焦距。虽然早期版本的图像分析程序使用了单像素,但最终程序使用洪水填充算法进行比色分析,因此系统不受器件形状的限制,并且可以通过照明来区分变色,使其适用于其他比色器件应用。作为原则上的证据,我们比较了Whatman色谱纸和基于透明度的设备之间的酶动力学,发现改变平台没有损害由程序计算的表观V-MAX和K-M。

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