ITAP, Univ Montpellier, INRAE, Institut Agro, 34000 Montpellier, France.
Innolea, 6 Chemin des Panedautes, 31700 Mondonville, France.
Sensors (Basel). 2020 Aug 18;20(16):4652. doi: 10.3390/s20164652.
New instruments to characterize vegetation must meet cost constraints while providing accurate information. In this paper, we study the potential of a laser speckle system as a low-cost solution for non-destructive phenotyping. The objective is to assess an original approach combining laser speckle with chemometrics to describe scattering and absorption properties of sunflower leaves, related to their chemical composition or internal structure. A laser diode system at two wavelengths 660 nm and 785 nm combined with polarization has been set up to differentiate four sunflower genotypes. REP-ASCA was used as a method to analyze parameters extracted from speckle patterns by reducing sources of measurement error. First findings have shown that measurement errors are mostly due to unwilling residual specular reflections. Moreover, results outlined that the genotype significantly impacts measurements. The variables involved in genotype dissociation are mainly related to scattering properties within the leaf. Moreover, an example of genotype classification using REP-ASCA outcomes is given and classify genotypes with an average error of about 20%. These encouraging results indicate that a laser speckle system is a promising tool to compare sunflower genotypes. Furthermore, an autonomous low-cost sensor based on this approach could be used directly in the field.
新型植被特征描述仪器必须在满足成本限制的同时提供准确信息。本文研究了激光散斑系统作为一种无损表型分析的低成本解决方案的潜力。目的是评估一种结合激光散斑与化学计量学的新方法,以描述向日葵叶片的散射和吸收特性,这些特性与叶片的化学成分或内部结构有关。我们建立了一个由两个波长 660nm 和 785nm 的激光二极管系统结合偏振光组成的系统,以区分四个向日葵基因型。使用重复分析结构成分法(REP-ASCA)作为一种分析方法,通过减少测量误差的来源,对从散斑模式中提取的参数进行分析。初步研究结果表明,测量误差主要是由于不愿意残留镜面反射造成的。此外,结果表明基因型对测量有显著影响。区分基因型的变量主要与叶片内的散射特性有关。此外,还给出了一个使用 REP-ASCA 结果进行基因型分类的示例,平均误差约为 20%。这些令人鼓舞的结果表明,激光散斑系统是一种很有前途的比较向日葵基因型的工具。此外,基于这种方法的自主式低成本传感器可以直接在田间使用。