Non-Invasive Morphological Characterization of Rice Leaf Bulliform and Aerenchyma Cellular Regions Using Low Coherence Interferometry

Non-invasive investigation of rice leaf specimens to characterize the morphological formation and particular structural information that is beneficial for agricultural perspective was demonstrated using a low coherence interferometric method called swept source optical coherence tomography (SS-OCT)....

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Published inApplied sciences Vol. 9; no. 10; p. 2104
Main Authors Kim, Hyeree, Du, XiaoXuan, Kim, Sungwook, Kim, Pilun, Wijesinghe, Ruchire Eranga, Yun, Byoung-Ju, Kim, Kyung-Min, Jeon, Mansik, Kim, Jeehyun
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Abstract Non-invasive investigation of rice leaf specimens to characterize the morphological formation and particular structural information that is beneficial for agricultural perspective was demonstrated using a low coherence interferometric method called swept source optical coherence tomography (SS-OCT). The acquired results non-invasively revealed morphological properties of rice leaf, such as bulliform cells; aerenchyma, parenchyma, and collenchyma layer; and vascular bundle. Beside aforementioned morphologic characteristics, several leaf characteristics associated with cytological mechanisms of leaf rolling (leaf inclination) were examined for the pre-identification of inevitable necrosis and atrophy of leaf tissues by evaluating acute angle information, such as angular characteristics of the external bi-directional angles between the lower epidermis layer and lower mid-vein, and internal angle of lower mid-vein. To further assist the pre-identification, acquired cross-sections were employed to enumerate the small veins of each leaf specimen. Since mutants enlarge leaf angles due to increased cell division in the adaxial epidermis, healthy and abnormal leaf specimens were morphologically and quantitatively compared. Therefore, the results of the method can be used in agriculture, and SS-OCT shows potential as a rigorous investigation method for selecting mutant infected rice leaf specimens rapidly and non-destructively compared to destructive and time consuming gold-standard methods with a lack of precision.
AbstractList Non-invasive investigation of rice leaf specimens to characterize the morphological formation and particular structural information that is beneficial for agricultural perspective was demonstrated using a low coherence interferometric method called swept source optical coherence tomography (SS-OCT). The acquired results non-invasively revealed morphological properties of rice leaf, such as bulliform cells; aerenchyma, parenchyma, and collenchyma layer; and vascular bundle. Beside aforementioned morphologic characteristics, several leaf characteristics associated with cytological mechanisms of leaf rolling (leaf inclination) were examined for the pre-identification of inevitable necrosis and atrophy of leaf tissues by evaluating acute angle information, such as angular characteristics of the external bi-directional angles between the lower epidermis layer and lower mid-vein, and internal angle of lower mid-vein. To further assist the pre-identification, acquired cross-sections were employed to enumerate the small veins of each leaf specimen. Since mutants enlarge leaf angles due to increased cell division in the adaxial epidermis, healthy and abnormal leaf specimens were morphologically and quantitatively compared. Therefore, the results of the method can be used in agriculture, and SS-OCT shows potential as a rigorous investigation method for selecting mutant infected rice leaf specimens rapidly and non-destructively compared to destructive and time consuming gold-standard methods with a lack of precision.
Introduction Rice is a highly productive crop per unit area and one of the major agricultural products in the world, which has a potential impact on the world economy [1,2]. Since rice is widely produced in many countries, descriptive understanding of the cellular regions, such as bulliform cells, aerenchyma cells, mid-vein and collenchyma cells are essential for increased yields. [...]the analysis is limited to surface, while inadequate spatial resolution and lack of cross-sectional information hinder the extensive applicability in agriculture. [...]the aforementioned lack of resolution to identify microstructures and infected regions, high cost, and long acquisition time encouraged the researchers to seek a high-resolution, non-destructive, and real-time rapid inspection technique as an optimized solution. Optical coherence tomography (OCT) is a purely non-destructive biomedical imaging technique capable of generating real-time high-resolution tomographic and volumetric images. [...]OCT has been fundamentally applied in ophthalmology [27,28], dentistry [29,30], otolaryngology [31] and industrial defect examinations [32,33]. [...]each pair of OCT signal and clock signal were examined by the nearest neighbor check algorithm for crossing points, which can be performed according to methods reported in [45,46].
Author Kim, Hyeree
Kim, Sungwook
Kim, Pilun
Kim, Kyung-Min
Yun, Byoung-Ju
Jeon, Mansik
Du, XiaoXuan
Wijesinghe, Ruchire Eranga
Kim, Jeehyun
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Snippet Non-invasive investigation of rice leaf specimens to characterize the morphological formation and particular structural information that is beneficial for...
Introduction Rice is a highly productive crop per unit area and one of the major agricultural products in the world, which has a potential impact on the world...
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StartPage 2104
SubjectTerms Aerenchyma cellular region
Agricultural products
Agriculture
biological tomographic imaging
Bulliform cellular region
Datasets
Dentistry
Deoxyribonucleic acid
DNA
Global economy
High resolution
Impact analysis
Inspection
Interferometry
Low coherence interferometry
Medical imaging
morphological
Morphology
Mutation
NMR
Nondestructive testing
Nuclear magnetic resonance
Ophthalmology
Optical Coherence Tomography
Otolaryngology
Plant diseases
Real time
Rice
rice leaf
Spatial resolution
swept source optical coherence tomography (SS-OCT)
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Title Non-Invasive Morphological Characterization of Rice Leaf Bulliform and Aerenchyma Cellular Regions Using Low Coherence Interferometry
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