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April 18, 2026Sensors0 citationsOpen Access

Remote Sensing Applications in Medicinal Plant Monitoring and Quality Assessment: A Review

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ZWZiying WangJJJinping JiGCGuanqiao Chen

Key Points

  • The aim is to review remote sensing applications for monitoring and assessing the quality of medicinal plants in traditional Chinese medicine.
  • Systematic literature review from 2005 to 2025
  • Analysis of remote sensing platforms and sensors
  • Evaluation of data analytical methods used in quality assessment
  • Comparative analysis of applications in resource investigation and monitoring
  • Remote sensing achieved accuracy levels of 80% to 100% in quality evaluation
  • Integration of satellite, UAV, and ground-based methods improved distribution mapping and stress monitoring
  • Multi-omics integration and artificial intelligence are evolving trends in medicinal plant monitoring

Abstract

As a core resource of traditional Chinese medicine (TCM), medicinal plants are conventionally monitored and assessed using high-cost, low-efficiency methods. Remote sensing offers an efficient technical alternative for large-scale and dynamic evaluation. This study systematically reviewed the literature from 2005 to 2025, summarized remote sensing platforms, sensors, and data analytical methods, and specifically analyzed their applications in medicinal plant resource investigation, planting monitoring, stress monitoring, and TCM quality assessment. These studies mainly focus on resource surveys and quality analysis, targeting root and rhizome herbs. Integrated satellite-, UAV-, and ground-based remote sensing enables distribution mapping, growth retrieval, stress monitoring, and non-destructive quality evaluation in medicinal plants, achieving overall accuracies ranging from 80% to 100%. Currently, remote sensing applications in medicinal plants are evolving toward space–air–ground integration, multi-source data fusion, artificial intelligence empowerment, and multi-omics integration. However, they are constrained by complex wild habitats, difficulties in monitoring root herbs, spectral confusion, and limited model generalization. Future efforts should focus on establishing an integrated monitoring network, developing full-chain quality inversion models for geo-authentic herbs, building climate-adaptive cultivation systems, creating early pest–disease warning technologies, and deepening the integration of remote sensing and multi-omics to support the sustainable utilization and high-quality development of medicinal plant resources.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69e3203440886becb653f553https://doi.org/10.3390/s26082465
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