ugh Advanced Production Technology Development Program, funded by Ministry of Agriculture, Food and Rural Affairs (MAFRA) (No. 314031-3). Additionally, this study was also supported by the BK21 Plus project funded by the Ministry of Education, Korea (21A20131600011). Supplementary Materials The following are available online at http://www.mdpi.com/1424-8220/17/12/2887/s1 . Table S1, The average weight gain observed and the averaged embryo thickness values for each group, along with its standard deviation value and the maximum and minimum values of seeds in each group that was observed during the entire monitoring process. Click here for additional data file. Author Contributions The experime
Open resource ↗lines:63-81Unverified paper record
In Vivo Non-Destructive Monitoring of Capsicum Annuum Seed Growth with Diverse NaCl Concentrations Using Optical Detection Technique.
Sensors (Basel, Switzerland) · 12 Dec 2017 · 10.3390/s17122887
Abstract
We demonstrate that optical coherence tomography (OCT) is a plausible optical tool for in vivo detection of plant seeds and its morphological changes during growth. To investigate the direct impact of salt stress on seed germination, the experiment was conducted using Capsicum annuum seeds that were treated with different molar concentrations of NaCl. To determine the optimal concentration for the seed growth, the seeds were monitored for nine consecutive days. In vivo two-dimensional OCT images of the treated seeds were obtained and compared with the images of seeds that were grown using sterile distilled water. The obtained results confirm the feasibility of using OCT for the proposed application. Normalized depth profile analysis was utilized to support the conclusions.
Plant phenotyping relevance
OCTを用いた種子の形態変化の非破壊・生体内モニタリング手法を開発・実証しており、植物表現型の取得方法が中心である。
abstractWe demonstrate that optical coherence tomography (OCT) is a plausible optical tool for in vivo detection of plant seeds and its morphological changes during growth.
abstractIn vivo two-dimensional OCT images of the treated seeds were obtained and compared with the images of seeds that were grown using sterile distilled water.
abstractThe obtained results confirm the feasibility of using OCT for the proposed application.
Code and data availability
The paper's supplementary material (Table S1) contains the paper-specific phenotyping measurements: seed weight and embryo thickness statistics for all NaCl-treated and control seed groups across the 9-day monitoring period, publicly available at the MDPI supplementary URL. No analysis code or image datasets are stated
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