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Real-Time Electrical Bioimpedance Characterization of Neointimal Tissue for Stent Applications.

, , , , , and . Sensors, 17 (8): 1737 (2017)

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Practical solutions for the application of the oscillation-based-test in analog integrated circuits., , , , and . ISCAS (1), page 589-592. IEEE, (2002)Data-Analytics Modeling of Electrical Impedance Measurements for Cell Culture Monitoring., , , , , and . Sensors, 19 (21): 4639 (2019)Real-Time Electrical Bioimpedance Characterization of Neointimal Tissue for Stent Applications., , , , , and . Sensors, 17 (8): 1737 (2017)Monitoring Muscle Stem Cell Cultures with Impedance Spectroscopy., , , , , , , , and . BIODEVICES, page 96-99. SciTePress, (2018)A CMOS Tracking System Approach for Cell Motility Assays., , , , , and . BIODEVICES, page 229-236. SciTePress, (2017)A Plethysmography Capacitive Sensor for Real-Time Monitoring of Volume Changes in Acute Heart Failure., , , , , and . IEEE Trans. Instrum. Meas., (2021)Sine-Wave Signal Characterization Using Square-Wave and SigmaDelta-Modulation: Application to Mixed-Signal BIST., , , , , , and . J. Electron. Test., 21 (3): 221-232 (2005)Remote Cell Growth Sensing Using Self-Sustained Bio-Oscillations., , , , , , , and . Sensors, 18 (8): 2550 (2018)Practical Solutions for the Application of the Oscillation-Based-Test: Start-Up and On-Chip Evaluation., , , , and . VTS, page 433-438. IEEE Computer Society, (2002)Low-cost on-chip measurements for Oscillation-Based-Test in Analog Integrated Circuits., , , , and . LATW, page 89-93. IEEE, (2002)