A portable fluorescence spectroscopy imaging system for automated root phenotyping in soil cores in the field
Author:
Publisher
Oxford University Press (OUP)
Subject
Plant Science,Physiology
Reference42 articles.
1. Development of a laser-induced fluorescence imaging system for root activity and rhizosphere visualisation
2. Relations between root length densities and root intersections with horizontal and vertical planes using root growth modelling in 3-dimensions
3. An assessment of the core-break method for estimating rooting density of different crops in the field
4. Flavonoids: New Roles for Old Molecules
5. Coble P Lead J Baker A Reynolds D Spencer RGM . 2014. Aquatic organic matter fluorescence . Cambridge: Cambridge University Press.
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