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A Method for Systematic Electrochemical and Electrophysiological Evaluation of Neural Recording Electrodes
Published on: March 3, 2014
Application of a potentiometric sensor array as a technique in sensory analysis.
1Department of Food Quality Control and Nutrition, Faculty of Food Technology and Biotechnology, University of Zagreb, Pierottijeva 6, 10000 Zagreb, Croatia.
An electronic tongue effectively monitored probiotic fermented milk quality during storage, classifying flavors and predicting sensory results. This sensor array offers a reliable method for assessing fermented milk characteristics.
Area of Science:
- Food Science and Technology
- Analytical Chemistry
- Sensory Science
Background:
- Probiotic fermented milk quality is crucial for consumer acceptance.
- Objective monitoring of sensory attributes during storage is challenging.
- Electronic tongues offer a potential solution for rapid quality assessment.
Purpose of the Study:
- To apply a potentiometric sensor array (electronic tongue) for monitoring probiotic fermented milk.
- To classify probiotic fermented milk by flavor and predict human sensory panel results.
- To assess the electronic tongue's ability to track changes during storage.
Main Methods:
- Utilized a seven-sensor potentiometric electronic tongue with an Ag/AgCl reference electrode.
- Monitored plain, strawberry, apple-pear, and forest-fruit probiotic fermented milk over 20 days at two temperatures.
- Employed pattern recognition techniques: Principal Component Analysis (PCA), Artificial Neural Networks (ANN), and Partial Least Square regression (PLS).
Main Results:
- Achieved high classification accuracy: 97% for plain and 87% for apple-pear flavored milk.
- Demonstrated strong correlation between the electronic tongue and human sensory panel, especially for forest-fruit flavor (ANN: 0.998, PLS: 0.992).
- Successfully monitored changes in fermented milk during storage and predicted sensory attributes.
Conclusions:
- The potentiometric electronic tongue is a viable tool for monitoring probiotic fermented milk quality during storage.
- It can accurately classify flavors and predict sensory characteristics, correlating well with consumer perception.
- This technology provides an objective method to assess the quality and sensory attributes of fermented dairy products.
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