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戒指型生醫渦流感測器用於連續血壓量測
Ring-type Biomedical Eddy Current Sensor for Continuous Blood Pressure Monitoring

S.-H. Ni, Y.-L. Sung, D.-Y. Hsu, C.-Y. Huang, D.-N. Lai, T.-W. Wang*, “Ring-type Biomedical Eddy Current Sensor for Continuous Blood Pressure Monitoring,” IEEE Transactions on Instrumentation and Measurement, vol. 73, pp. 1-14, 2024.

血管狀態量測裝置 (發明專利,證書號 : I838112,申請日:2023/02/03)

Abstract—Continuous cuffless blood pressure (BP) sensors are evolving for long-term cardiovascular monitoring, especially in diagnostic and prognostic stages. The existing techniques rely on photoplethysmography (PPG) and bio-impedance that have limitations, such as sensitivity to skin tone and high skin-electrode contact impedance that would degrade physiological signals measurement. To this end, this study presents a novel wearable coil-based ring-type sensor utilizing the novel biomedical eddy current technique for continuous BP measurement. The LC-based ring sensor generates the AC magnetic fields along with the finger in parallel with the digital arteries, detecting the resonant frequency variations in response to real-time vessel pulsations. The proposed ring-type sensor is characterized by its compact form with a diameter of 2.42 cm and supporting wireless data transmission. To optimize personalized sensing, the various resonant frequencies on vessel pulse measurements were investigated by human trials. The novel ring sensor is employed for the estimation of BP, demonstrating high Pearson’s correlations (systolic BP (SBP): 0.88, diastolic BP (DBP): 0.80) and low mean absolute error (MAE) within 10 subjects (SBP: 3.64 ± 2.71 mmHg, DBP: 3.20 ± 2.66 mmHg), revealing the significant potential use of biomedical eddy current-based ring sensor for continuous, accurate, and comprehensive cardiovascular monitoring.

 

Index Terms—Biomedical eddy current sensor, continuous blood pressure measurement, electromagnetic induction, resonant circuit, wearable sensor.

摘要: 一種血管狀態量測裝置包含訊號收發器以及控制模組。訊號收發器具有隧道式結構以供待測部位設置。訊號收發器至少朝隧道式結構輸出第一電磁訊號至待測部位以使待測部位產生渦電流,並接收對應渦電流所產生的第二電磁訊號。控制模組耦接訊號收發器,控制模組包括訊號產生單元以及處理單元。訊號產生單元用以生成交流訊號並提供至訊號收發器以生成第一電磁訊號。處理單元根據第一電磁訊號及第二電磁訊號計算特徵訊號。其中特徵訊號對應於待測部位處的至少一血管的至少一狀態。

2024.11.21_倪世樺同學榮獲「2024 IIIC國際創新發明競賽-Gold Medal Award」




生醫電子實驗室
NTHU Bioelectronics Lab

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