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Real-time and non-invasive monitoring of plant signaling by means of optical coherence tomography

Frontiers in Plant Science · 21 Nov 2025 · 10.3389/fpls.2025.1702810

Abstract

This work demonstrates the use of optical coherence tomography (OCT) for studying a plant’s long-range signaling in real time, in vivo , and non-invasively. This feat is achieved using OCT as a novel technique to visualize minute cellular displacements and deformations within the plant’s leaves. The use of bespoke registration algorithms enables tracking displacements with a precision greater than 0.1 μm. This measurement precision is one order of magnitude better than the typical ~1-μm optical resolution of OCT images. In the present work, OCT is used to analyze the time evolution of deformations incurred by wounding. The use of OCT enabled to 1) visualize, in real time, the propagation and evolution of the morphological changes associated with slow wave potentials (onset, peak, and recovery); 2) compute propagation speeds (~0.07 cm s −1 ); and 3) distinguish the type of deformation incurred (transient bending of the leaf due to changes in turgor cell pressure). This proof-of-concept study thus exemplifies the potential of OCT as a convenient and complementary tool to study the plant’s response mechanisms in vivo and in real time.

Plant phenotyping relevance

OCT画像と登録アルゴリズムを用いて葉内の微小変位・形態変形を非侵襲的に取得・定量する手法が研究の中心であり、植物表現型の測定法として明確に該当する。

abstractThis work demonstrates the use of optical coherence tomography (OCT) for studying a plant’s long-range signaling in real time, in vivo , and non-invasively.
abstractThe use of bespoke registration algorithms enables tracking displacements with a precision greater than 0.1 μm.
abstractvisualize, in real time, the propagation and evolution of the morphological changes associated with slow wave potentials

Code and data availability

The paper's raw OCT B-scan data and bespoke MATLAB registration/analysis code are paper-specific phenotyping assets, but no public repository or URL is provided; the data availability statement only promises availability upon request.

No evidence-backed public reproduction asset is currently recorded.

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