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A 3D printed device for quantitative enzymatic detection using cell phones

机译:使用手机进行定量酶检测的3D打印设备

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摘要

A disposable device for quantitative enzymatic detection capable of coupling illumination and image readouts from cell phones is demonstrated. The device integrates a calibration range for glutamate detection, utilizes the phone screen as a light source, and provides the necessary actuation for autonomous operation. Custom made optics required to couple to the cell phone camera is accomplished using affordable stereolithography (SLA) 3D printers. The described method does not involve polishing, requires only two steps from design to implementation, and can be locally applied to 3D printed lab-on-a-chip (LOC) prototypes, using the same materials. Optical finishing and dimensional variability within 2% were achieved, supporting entirely arbitrary geometries for elements larger than 400 mm in radius. Representative fabrication times and costs were 20 min and $0.50 USD per prototype.
机译:展示了一种用于定量酶检测的一次性设备,该设备能够将照明与手机的图像读取耦合起来。该设备集成了用于谷氨酸检测的校准范围,利用电话屏幕作为光源,并为自主操作提供了必要的启动方式。使用负担得起的立体光刻(SLA)3D打印机可以实现与手机相机耦合所需的定制光学器件。所描述的方法不涉及抛光,从设计到实现仅需两个步骤,并且可以使用相同的材​​料局部应用于3D打印的芯片实验室(LOC)原型。实现了2%以内的光学精加工和尺寸可变性,为半径大于400毫米的元件完全支持任意几何形状。代表性的制造时间和成本为20分钟,每个原型为0.50美元。

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