Müller-Maatsch Judith, van Ruth Saskia M
Wageningen Food Safety Research, Wageningen University and Research, P.O. Box 230, 6700 EV Wageningen, The Netherlands.
Food Quality and Design, Wageningen University and Research, P.O. Box 17, 6700 AA Wageningen, The Netherlands.
Foods. 2021 Nov 23;10(12):2901. doi: 10.3390/foods10122901.
This review summarises miniaturised technologies, commercially available devices, and device applications for food authentication or measurement of features that could potentially be used for authentication. We first focus on the handheld technologies and their generic characteristics: (1) technology types available, (2) their design and mode of operation, and (3) data handling and output systems. Subsequently, applications are reviewed according to commodity type for products of animal and plant origin. The 150 applications of commercial, handheld devices involve a large variety of technologies, such as various types of spectroscopy, imaging, and sensor arrays. The majority of applications, ~60%, aim at food products of plant origin. The technologies are not specifically aimed at certain commodities or product features, and no single technology can be applied for authentication of all commodities. Nevertheless, many useful applications have been developed for many food commodities. However, the use of these applications in practice is still in its infancy. This is largely because for each single application, new spectral databases need to be built and maintained. Therefore, apart from developing applications, a focus on sharing and re-use of data and calibration transfers is pivotal to remove this bottleneck and to increase the implementation of these technologies in practice.
本综述总结了用于食品认证或测量可能用于认证的特征的小型化技术、商用设备及设备应用。我们首先关注手持技术及其一般特性:(1)可用的技术类型,(2)其设计和操作模式,以及(3)数据处理和输出系统。随后,根据动植物源产品的商品类型对应用进行了综述。商用手持设备的150种应用涉及多种技术,如各种类型的光谱学、成像和传感器阵列。大多数应用(约60%)针对植物源食品。这些技术并非专门针对某些商品或产品特征,没有单一技术可用于所有商品的认证。然而,已经为许多食品开发了许多有用的应用。然而,这些应用在实际中的使用仍处于起步阶段。这主要是因为对于每个单一应用,都需要建立和维护新的光谱数据库。因此,除了开发应用外,关注数据的共享和再利用以及校准转移对于消除这一瓶颈并增加这些技术在实际中的应用至关重要。