Al-Hooti Haitham S, Al-Bulushi Ismail M, Al-Attabi Zahir H, Rahman Mohammad S, Al-Subhi Lyutha K, Al-Habsi Nasser A
Department of Health Inspection, Muscat Municipality in Bosher, Muscat Municipality, P.O. Box 609, Seeb 111, Oman.
Department of Food Science and Nutrition, College of Agricultural and Marine Sciences, Sultan Qaboos University, P.O. Box 34, Al-Khod 123, Oman.
Foods. 2024 Jan 29;13(3):428. doi: 10.3390/foods13030428.
The assessment of microbial spoilage in fresh fish is a major concern for the fish industry. This study aimed to evaluate the efficiency and reliability of an electronic nose (E-nose) to detect microbial spoilage of fresh sardines () by comparing its measurements with Total Bacterial Count (TBC), Hydrogen Sulfide (HS) producing bacterial count and Trimethylamine Oxide (TMAO) reducing bacterial count after variable storage conditions. The samples were stored at 0 °C (0, 2, 4, 6, and 8 days) and 25 °C (0, 3, 6, and 9 h), while day 0 was used as a control. The E-nose measurements were analyzed by Principal Component Analysis (PCA), Linear Discriminant Analysis (LDA) and Artificial Neural Network (ANN). Microbial counts increased significantly and simultaneously with the changes in E-nose measurements during storage. The LDA and ANN showed a good classification of E-nose data for different storage times at two storage temperatures (0 °C and 25 °C) compared to PCA. It is expected as PCA is based on linear relationships between the factors, while ANN is based on non-linear relationships. Correlation coefficients between E-nose and TBC, TMAO-reducing bacterial and HS-producing bacterial counts at 0 °C were 0.919, 0.960 and 0.915, respectively, whereas at 25 °C, the correlation coefficients were 0.859, 0.945 and 0.849, respectively. These positive correlations qualify the E-nose as an efficient and reliable device for detecting microbial spoilage of fish during storage.
对新鲜鱼类微生物腐败的评估是渔业的一个主要关注点。本研究旨在通过将电子鼻(E-nose)的测量结果与在不同储存条件下的总细菌数(TBC)、产硫化氢(HS)细菌数和还原三甲胺氧化物(TMAO)细菌数进行比较,评估其检测新鲜沙丁鱼微生物腐败的效率和可靠性。样品分别在0°C(0、2、4、6和8天)和25°C(0、3、6和9小时)下储存,第0天用作对照。通过主成分分析(PCA)、线性判别分析(LDA)和人工神经网络(ANN)对电子鼻测量结果进行分析。在储存过程中,微生物数量随着电子鼻测量结果的变化而显著且同时增加。与PCA相比,LDA和ANN对两种储存温度(0°C和25°C)下不同储存时间的电子鼻数据显示出良好的分类效果。这是预期的,因为PCA基于因素之间 的线性关系,而ANN基于非线性关系。在0°C时,电子鼻与TBC、还原TMAO细菌和产HS细菌数之间的相关系数分别为0.919、0.960和0.915,而在25°C时,相关系数分别为0.859、0.945和0.849。这些正相关表明电子鼻是一种在储存期间检测鱼类微生物腐败的高效且可靠的设备。