Liu Yang, Li DongMing, Qian Ji, Di Bao, Zhang Gang, Ren ZhenHui
College of Mechanical and Electrical Engineering, Hebei Agricultural University, Baoding, 071001, People's Republic of China.
Department of Computer Application Engineering, Hebei Software Institute, Baoding, 071000, China.
Plant Methods. 2021 Nov 13;17(1):118. doi: 10.1186/s13007-021-00817-3.
Nondestructive testing of plant roots is a hot topic in recent years. The traditional measurement process is time-consuming and laborious, and it is impossible to analyze the state of plant roots without destroying the sample. Recent studies have shown that as an excellent nondestructive measurement method, although electrical impedance spectroscopy (EIS) has made great achievements in many botanical research fields such as plant morphology and stress resistance, there are still limitations. This review summarizes the application of EIS in plant root measurement. The experiment scheme, instrument and electrode, excitation frequency range, root electrical characteristics, equivalent circuit, and combination of EIS and artificial intelligence (AI) are discussed. Furthermore, the review suggests that future research should focus on miniaturization of measurement equipment, standardization of planting environment and intelligentization of root diagnosis, so as to better apply EIS technology to in situ root nondestructive measurement.
植物根系的无损检测是近年来的一个热门话题。传统的测量过程既耗时又费力,而且在不破坏样本的情况下无法分析植物根系的状态。最近的研究表明,作为一种出色的无损测量方法,尽管电阻抗谱(EIS)在植物形态学和抗逆性等许多植物学研究领域取得了巨大成就,但仍存在局限性。本综述总结了EIS在植物根系测量中的应用。讨论了实验方案、仪器与电极、激励频率范围、根系电特性、等效电路以及EIS与人工智能(AI)的结合。此外,该综述建议未来的研究应集中在测量设备的小型化、种植环境的标准化和根系诊断的智能化上,以便更好地将EIS技术应用于原位根系无损测量。