Unverified paper record
Measuring the compressive modulus of elasticity of pith-filled plant stems.
Plant methods · 9 Nov 2017 · 10.1186/s13007-017-0250-y
Abstract
Background The compressional modulus of elasticity is an important mechanical property for understanding stalk lodging, but this property is rarely available for thin-walled plant stems such as maize and sorghum because excised tissue samples from these plants are highly susceptible to buckling. The purpose of this study was to develop a testing protocol that provides accurate and reliable measurements of the compressive modulus of elasticity of the rind of pith-filled plant stems. The general approach was to relying upon standard methods and practices as much as possible, while developing new techniques as necessary. Results Two methods were developed for measuring the compressional modulus of elasticity of pith-filled node-node specimens. Both methods had an average repeatability of ± 4%. The use of natural plant morphology and architecture was used to avoid buckling failure. Both methods relied up on spherical compression platens to accommodate inaccuracies in sample preparation. The effect of sample position within the test fixture was quantified to ensure that sample placement did not introduce systematic errors. Conclusions Reliable measurements of the compressive modulus of elasticity of pith-filled plant stems can be performed using the testing protocols presented in this study. Recommendations for future studies were also provided.
Plant phenotyping relevance
植物茎の圧縮弾性率という機械的形質を測定する試験プロトコルを開発・検証しており、表現型取得法が研究の中心である。
abstractThe purpose of this study was to develop a testing protocol that provides accurate and reliable measurements of the compressive modulus of elasticity of the rind of pith-filled plant stems.
abstractTwo methods were developed for measuring the compressional modulus of elasticity of pith-filled node-node specimens.
abstractBoth methods had an average repeatability of ± 4%.
Code and data availability
The paper reports maize stalk compression testing and CT-based morphology extraction, but provides no public dataset, image, or code deposit. The only availability statement directs readers to contact the corresponding author.
No evidence-backed public reproduction asset is currently recorded.
This is an automatically classified, unverified record. Curator approval is required before any resource enters the Catalog.