Opto-Electronic Engineering, Volume. 52, Issue 4, 250022(2025)
Analysis method of fiber grating neck pulse monitoring device
[2] Xue S K, Xu Z H, Wang Y X et al. Simultaneous multi-person vital signs monitoring using multiple-input multiple-output FMCW millimeter wave radar[J]. AEU-Int J Electron Commun, 188, 155578(2025).
[3] Gharamohammadi A, Bagheri M O, Abu-Sardanah S et al. Smart furniture using radar technology for cardiac health monitoring[J]. Sci Rep, 15, 1392(2025).
[4] Seifizarei S, Elnaggar I, Anzanpour A et al. Continuous radar-based heart rate monitoring using autocorrelation-based algorithm in intensive care unit[J]. IEEE J Biomed Health Inf, 1-9(2025).
[5] Wang X, Li J J, Meng K Y et al. Differential-deformation structured pressure sensor for stable measurement of superficial temporal artery pulse[J]. Nano Energy, 135, 110678(2025).
[6] Zhou J, Qu M J, Liu W T et al. Continuous monitoring of blood pressure by measuring local pulse wave velocity using wearable micromachined ultrasonic probes[J]. IEEE Trans Biomed Eng, 1-10(2025).
[7] Jia H L, Gao Y Y, Zhou J K et al. A deep learning-assisted skin-integrated pulse sensing system for reliable pulse monitoring and cardiac function assessment[J]. Nano Energy, 127, 109796(2024).
[8] Khan A, Rashid M, Grabher G et al. Autonomous triboelectric smart textile sensor for vital sign monitoring[J]. ACS Appl Mater Interfaces, 16, 31807-31816(2024).
[9] Yao J J, Qu C M, Chen Z H et al. High-sensitive wearable capacitive pressure sensor with hemispherical porous electrode[J]. ACS Appl Electron Mater, 6, 2649-2658(2024).
[10] Shi C Y, Tang Z X, Zhang H et al. Development of an FBG-based wearable sensor for simultaneous respiration and heartbeat measurement[J]. IEEE Trans Instrum Meas, 72, 4000409(2023).
[12] Leal-Junior A, Avellar L, Blanc W et al. Opto-electronic smart home: heterogeneous optical sensors approaches and artificial intelligence for novel paradigms in remote monitoring[J]. IEEE Internet Things J, 11, 9587-9598(2024).
[13] Guo Y, Tong X X, Shen Y X et al. Wearable optical fiber beat frequency digital sensing system for real-time non-invasive multiple human physiological parameters monitoring[J]. J Lightwave Technol, 41, 2911-2920(2023).
[14] Shi C Y, Zhang H, Ni X L et al. An FBG-based sensor with both wearable and handheld forms for carotid arterial pulse waveform measurement[J]. IEEE Trans Instrum Meas, 72, 7506610(2023).
[17] Chen Y, Yao Z M, Liu H L et al. Pulse wave denoising based on improved complementary ensemble empirical mode decomposition[J]. Acta Optica Sin, 44, 0707001(2024).
[18] Li Z Y, Tang X Z, Zhao T et al. Highly sensitive skin-like wearable optical sensor for human physiological signals monitoring[J]. Opt Fiber Technol, 82, 103652(2024).
[19] Kuang R F, Wang Z, Ma L et al. Smart photonic wristband for pulse wave monitoring[J]. Opto-Electron Sci, 3, 240009(2024).
[20] Xie T T, Chen H, Xu Z W et al. High precision strain sensing system based on optoelectronic oscillator for human pulse monitoring[J]. IEEE Sensors J, 25, 6355-6362(2025).
[21] Li Y J, Wang B, Liu S R et al. Fiber Bragg grating pulse and systolic blood pressure measurement system based on Mach–Zehnder interferometer[J]. Sensors, 24, 6222(2024).
[22] Jha R, Mishra P, Kumar S. Advancements in optical fiber-based wearable sensors for smart health monitoring[J]. Biosens Bioelectron, 254, 116232(2024).
[23] Guo J H, Zhang J Y, Dong L P et al. Parallel waveguide fiber Bragg gratings–used for detecting human respiratory rate, trunk status, and pulse[J]. Opt Laser Technol, 181, 111960(2025).
[24] Li Q, Lu Y C, Shao J et al. Research on temperature sensitivity of FBG sensor based on EpoCore adhesive coated[J]. Opto-Electron Eng, 51, 240228(2024).
[27] Lin J H, Chen H, Ling Q et al. Respiratory rate monitoring based on all-fiber strain-induced humidity sensor[J]. Opt Laser Technol, 181, 111840(2025).
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Xiyan Yan, Yan Feng, Hua Zhang. Analysis method of fiber grating neck pulse monitoring device[J]. Opto-Electronic Engineering, 2025, 52(4): 250022
Category: Article
Received: Feb. 3, 2025
Accepted: Mar. 4, 2025
Published Online: Jun. 11, 2025
The Author Email: Yan Feng (冯艳)