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Miniaturized electrochemical graphite based sensor for the analysis of colchicine, along with its detailed construction was described.
In this paper, we propose a design of a photonic crystal ring resonator based sensor for the detection of temperature change at micron level.
During the course of our studies, Imamura et al. [27] published a FRET based sensor for the visualization of ATP levels inside single living cells, which is also based on CFP and YFP but contains the epsilon subunit of the bacterial F o)F(1 -ATP synthase as ATP sensing domain.
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This is compared to a photo-interrupter based sensor for which the SNR is about 8000 with a displacement range of larger than 100 μm.
The application of the Cu foam based sensor for monitoring glucose in practical samples is also successfully demonstrated.
In this context, we proposed for the first time, gold nanopaticles (AuNPs) based sensor for in vitro assessment of DDIs.
In addition, the cation exchange nanocomposite based sensor for detection of formaldehyde vapors was fabricated at room temperature.
The development of a whole-cell based sensor for arsenite detection coupling biological engineering and electrochemical techniques is presented.
A wider linear range (0.03 12.8 mM), higher sensitivity (19.5 μA/mM) and better stability were achieved on the Cu2O rGOpa based sensor than Cu2O based sensor for accurate detection of H2O2.
The development of a tin oxide nanoparticle based sensor for detecting carbon monoxide at low temperature, 60 °C is presented.
We demonstrate a Tamm-plasmon-polariton (TPP) based sensor for accurate determination of temperature.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com