Department of General Psychology University of Padova Padova Italy
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摘要
Abstract Understanding plant behaviour requires the integration of multiple phenotypic and physiological signals measured over time under controlled conditions. However, different plant signals are typically studied using separate experimental setups, limiting temporal alignment and integrative analyses. We present Mind(the)Plant, a modular experimental facility designed for the synchronized, long‐term acquisition of multimodal plant data, including three‐dimensional shoot kinematics, above‐ and below‐ground volatile organic compounds (VOCs) and root imaging. Its modular architecture is designed to accommodate additional acquisition modules, such as electrophysiological signalling, as future extensions. The platform integrates a controlled growth environment with stereovision imaging, high‐resolution time‐of‐flight mass spectrometry and custom rhizocameras. These components are connected through a unified network infrastructure that ensures synchronized acquisition and centralized data handling. We validate the performance of each acquisition module through multi‐week recordings, demonstrating high‐temporal stability, reliable stereovision synchronization, effective isolation of VOCs signals and robust operation of below‐ground imaging. We further illustrate the analytical potential of the platform using a one‐day continuous multimodal acquisition combining shoot kinematics, above‐ground VOC emissions, rhizocameras observations and environmental data. Mind(the)Plant provides a novel methodological framework for studying plant behaviour, signalling and phenotypic plasticity in ecological and evolutionary research. By enabling coordinated measurements of multiple plant response modalities, the platform supports investigations of dynamic plant‐environment and plant–plant interactions from a behavioural perspective.