18 April 2017 Application of wearable optical coherence tomography (OCT) and loop-mediated isothermal amplification (LAMP) techniques for in situ real-time field inspection of apple Marssonina blotch disease
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Proceedings Volume 10251, Biomedical Imaging and Sensing Conference; 102511H (2017) https://doi.org/10.1117/12.2269664
Event: SPIE Technologies and Applications of Structured Light, 2017, Yokohama, Japan
Abstract
Here we describe the possible application of optical coherence tomography (OCT) to inspect Marssonina coronaria infected apple blotch disease of in situ apple leaves. To fulfill the in situ field inspection requirement, we developed a compact wearable OCT system. For the confirmation of OCT results, simultaneous experiment was performed in realtime using loop-mediated isothermal amplification (LAMP), which is frequently used in agriculture. LAMP method was developed as an alternative approach for the inspection of disease. We performed field inspection for 30 consecutive days, and all the acquired results from both OCT and lamp were compared to confirm the correlation. A clear identification between healthy specimens, apparently healthy but infected specimens, and infected specimens could be obtained through the real-time OCT images, and the correlation between OCT and lamp results was confirmed through the obtained realtime lamp results. Based on this feasibility study, we conclude that the combination of both these diagnosing modalities can be effective for various novel agricultural discoveries.
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Ruchire Eranga Wijesinghe, Ruchire Eranga Wijesinghe, Seung-Yeol Lee, Seung-Yeol Lee, Naresh Kumar Ravichandran, Naresh Kumar Ravichandran, Muhammad Faizan Shirazi, Muhammad Faizan Shirazi, Sangyeop Han, Sangyeop Han, Hyosang Jeong, Hyosang Jeong, Pilun Kim, Pilun Kim, Hee-Young Jung, Hee-Young Jung, Mansik Jeon, Mansik Jeon, Jeehyun Kim, Jeehyun Kim, } "Application of wearable optical coherence tomography (OCT) and loop-mediated isothermal amplification (LAMP) techniques for in situ real-time field inspection of apple Marssonina blotch disease", Proc. SPIE 10251, Biomedical Imaging and Sensing Conference, 102511H (18 April 2017); doi: 10.1117/12.2269664; https://doi.org/10.1117/12.2269664
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