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Ultrasensitive portable optoelectronic system dedicated to detection of bioluminescence

机译:专用于生物发光检测的超灵敏便携式光电系统

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This work aims to show that we can design a portable luminometer field capable of accurately detecting the femtomole of adenosine triphosphate (ATP) by using bioluminescence and optoelectronic noise measurement in order to reduce noise levels. We present our results with a demonstrator on the ATP detection which is an indicator of the presence of living cells in a medium and therefore a possible microbiological contamination. Experiments are made using a luminometer whose the sensor is an optoelectronic device which may be a photodiode or a photomultiplier. Multiplication noise and Noise Equivalent Power (NEP) are evaluated in order to compare the prototype luminometer performances with those of laboratory equipment used to evaluate the detectable minimum optical power of our portable prototype luminometers. All data allow to evaluate Equivalent Noise Input Photon used in the evaluation of the optical power detected due to the luminescence and estimate ATP concentration lower than the femtomole.
机译:这项工作旨在表明,我们可以设计一个便携式发光计领域,该领域能够通过使用生物发光和光电噪声测量来准确检测三磷酸腺苷(ATP)的fe孔,从而降低噪声水平。我们用ATP检测器展示我们的结果,该检测器指示了培养基中活细胞的存在,因此可能存在微生物污染。使用光度计进行实验,该光度计的传感器是光电器件,可以是光电二极管或光电倍增管。为了将原型照度计的性能与用于评估便携式原型照度计的可检测最小光功率的实验室设备的性能进行比较,需要评估倍增噪声和噪声等效功率(NEP)。所有数据都可以评估在评估由于发光而检测到的光功率时使用的等效噪声输入光子,并估计低于飞甲酚的ATP浓度。

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