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May 28, 2026Agriculture0 citationsOpen Access

Detection of Wheat Scab Spores Using Terahertz Metamaterial Sensor

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YWYue WangTCTianhua ChenMTMohamed Farag Taha

Key Points

  • Develop a rapid and sensitive method to detect wheat scab spores using terahertz metamaterials.
  • Developed a terahertz metamaterial perfect absorber with dual-U-shaped resonators.
  • Measured absorption rates at 0.53 THz and 2.30 THz with sensitivity analysis.
  • Conducted gradient concentration measurements for Fusarium graminearum conidia.
  • Achieved absorption rates of 99.2% at 0.53 THz and 99.5% at 2.30 THz.
  • Demonstrated refractive index sensitivity of 110 GHz/RIU at low frequencies, 440 GHz/RIU at high frequencies.
  • Achieved a detection limit of 10 spores/μL with a range of 0–1000 spores/μL.

Abstract

To achieve label-free, highly sensitive, and rapid quantitative detection of spores of wheat scab pathogens, this study developed a flexible terahertz metamaterial perfect absorber based on a composite unit consisting of dual-U-shaped resonators and a central metal rod. The results showed that the metamaterial exhibited near-perfect absorption at two frequencies, 0.53 THz and 2.30 THz, with absorption rates of 99.2% and 99.5%, respectively. A sharp phase shift occurred at the resonance points, enabling significant amplification of weak sensing signals. The refractive index sensitivity was 110 GHz/RIU at low frequencies and 440 GHz/RIU at high frequencies, indicating superior sensing performance in high-frequency modes. Gradient concentration measurements of Fusarium graminearum conidia revealed a good linear relationship between spore concentration and resonance frequency shift (R2 = 0.996). The detection limit was 10 spores/μL, with a detection range covering 0–1000 spores/μL. This approach meets the needs for early detection of trace amounts of pathogens and quantitative analysis throughout the disease cycle. As this technique requires no labeling, is non-invasive, and operates rapidly, it provides an efficient new method for real-time monitoring and intelligent control of wheat scab in fields. It also holds great potential for applying terahertz metamaterials in agricultural biosafety applications.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6a17db6f3fad632b0f9d83dahttps://doi.org/10.3390/agriculture16111166
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