The aim of the project is to be able to record the condition of the skin of neurodermatitis patients under different conditions and stress states. For this purpose, a prototype was manufactured in which a microsensor for determining the ambient humidity, a controller with Bluetooth for data transmission, and a lithium battery for power supply were integrated.
According to the drinking water regulation, drinking water systems must be tested for harmful contamination at specified intervals. To meet the legal requirements and save costs and time, a portable analysis method is to be developed. For this purpose, a concept study was conducted. It describes a portable measuring device for the quantitative detection of legionella using real-time PCR. The study includes the construction elements and conditions that are necessary for the collection, processing, and evaluation of the sample. It was found that commercially available PCR systems do not meet the size requirements and can only be represented by an in-house development. In addition, a microfluidic system must be developed that is designed for one-time use and low production cost.
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