Unverified paper record
ExoHeat: A continuous heating solution for bi-directional sap flow in small-diameter plant organs demonstrated in tomato peduncles
Computers and Electronics in Agriculture. · 1 Mar 2026
Abstract
Accurate sap flow measurements in small-diameter plant organs are essential for understanding water transport and source-sink dynamics, yet existing methods are limited by their temporal resolution, reduced sensitivity to low or reverse flow, and incompatibility with small organ dimensions. In this study, the ExoHeat sensor, a continuous-heating solution was developed for bidirectional sap flow measurements in small-diameter plant organs. Its performance was validated on tomato truss peduncles (Solanum lycopersicum L.). Zero-flow corrections accounting for ambient temperature and peduncle diameter ensured robust baseline adjustment, while gravimetric calibrations revealed a strong linear relationship between the sensor-measured temperature difference and sap flow rate up to 2 g h⁻¹, corresponding to a sap flux density of 5.8 10⁻³ cm³ cm⁻² s⁻¹. Whole-plant validation further demonstrated close agreement between ExoHeat-derived sap flow and gravimetric transpiration data. Anatomical imaging showed an asymmetrical distribution of xylem vessels in the tomato truss peduncle, underscoring the importance of correct sensor orientation. High-resolution measurements on ripening trusses successfully captured dynamic bidirectional flow patterns. The ExoHeat sensor thus provides a novel, high-temporal-resolution tool for accurate monitoring of sap flow in small-diameter organs, with promising applications in plant physiology, irrigation optimisation and stress detection.
Plant phenotyping relevance
小径植物器官の双方向樹液流を測定するセンサーを開発し、重力法による校正・検証を行った、植物生理状態の取得手法が中心の研究。
abstractIn this study, the ExoHeat sensor, a continuous-heating solution was developed for bidirectional sap flow measurements in small-diameter plant organs.
abstractIts performance was validated on tomato truss peduncles (Solanum lycopersicum L.).
abstractWhole-plant validation further demonstrated close agreement between ExoHeat-derived sap flow and gravimetric transpiration data.
Code and data availability
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