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Fatemeh Marefat
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2020 – today
- 2022
- [j5]Soheil Zabihi, Elahe Rahimian, Fatemeh Marefat, Amir Asif, Pedram Mohseni, Arash Mohammadi:
BP-Net: Cuff-less and non-invasive blood pressure estimation via a generic deep convolutional architecture. Biomed. Signal Process. Control. 78: 103850 (2022) - [c12]Weinan Wang, Fatemeh Marefat, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
The Effects of Filtering PPG Signal on Pulse Arrival Time-Systolic Blood Pressure Correlation. EMBC 2022: 674-677 - 2021
- [i1]Soheil Zabihi, Elahe Rahimian, Fatemeh Marefat, Amir Asif, Pedram Mohseni, Arash Mohammadi:
BP-Net: Cuff-less, Calibration-free, and Non-invasive Blood Pressure Estimation via a Generic Deep Convolutional Architecture. CoRR abs/2112.15271 (2021) - 2020
- [j4]Reza Erfani, Fatemeh Marefat, Sudip Nag, Pedram Mohseni:
A 1-10-MHz Frequency-Aware CMOS Active Rectifier With Dual-Loop Adaptive Delay Compensation and >230-mW Output Power for Capacitively Powered Biomedical Implants. IEEE J. Solid State Circuits 55(3): 756-766 (2020) - [j3]Fatemeh Marefat, Reza Erfani, Kevin L. Kilgore, Pedram Mohseni:
A 280 μW, 108 dB DR PPG-Readout IC With Reconfigurable, 2nd-Order, Incremental ΔΣM Front-End for Direct Light-to-Digital Conversion. IEEE Trans. Biomed. Circuits Syst. 14(6): 1183-1194 (2020) - [j2]Reza Erfani, Fatemeh Marefat, Pedram Mohseni:
A Dual-Output Single-Stage Regulating Rectifier With PWM and Dual-Mode PFM Control for Wireless Powering of Biomedical Implants. IEEE Trans. Biomed. Circuits Syst. 14(6): 1195-1206 (2020) - [c11]Weinan Wang, Li Zhu, Fatemeh Marefat, Pedram Mohseni, Kevin L. Kilgore, Laleh Najafizadeh:
Photoplethysmography-Based Blood Pressure Estimation Using Deep Learning. ACSSC 2020: 945-949 - [c10]Fatemeh Marefat, Reza Erfani, Kevin L. Kilgore, Pedram Mohseni:
26.7 A 280µW 108dB DR Readout IC with Wireless Capacitive Powering Using a Dual-Output Regulating Rectifier for Implantable PPG Recording. ISSCC 2020: 412-414
2010 – 2019
- 2019
- [c9]Reza Erfani, Fatemeh Marefat, Pedram Mohseni:
A 1-10MHz Frequency-Aware CMOS Active Rectifier with Dual-Loop Adaptive Delay Compensation and >230 mW Output Power for Capacitively Powered Biomedical Implants. CICC 2019: 1-4 - 2018
- [j1]Reza Erfani, Fatemeh Marefat, Amir M. Sodagar, Pedram Mohseni:
Modeling and Experimental Validation of a Capacitive Link for Wireless Power Transfer to Biomedical Implants. IEEE Trans. Circuits Syst. II Express Briefs 65-II(7): 923-927 (2018) - [c8]Reza Erfani, Fatemeh Marefat, Pedram Mohseni:
Biosafety Considerations of a Capacitive Link for Wireless Power Transfer to Biomedical Implants. BioCAS 2018: 1-4 - [c7]Hossein Zamani, Fatemeh Marefat, Pedram Mohseni:
Block-Sparse Compressive Sensing for High-Fidelity Recording of Photoplethysmogram. BioCAS 2018: 1-4 - [c6]Golnar Kalantar, Sourav Kumar Mukhopadhyay, Fatemeh Marefat, Pedram Mohseni, Arash Mohammadi:
WAKE-BPAT: Wavelet-Based Adaptive Kalman Filtering for Blood Pressure Estimation Via Fusion of Pulse Arrival Times. ICASSP 2018: 945-949 - 2017
- [c5]Reza Erfani, Fatemeh Marefat, Amir M. Sodagar, Pedram Mohseni:
Transcutaneous capacitive wireless power transfer (C-WPT) for biomedical implants. ISCAS 2017: 1-4 - 2016
- [c4]Fatemeh Marefat, Reza Erfani, Kevin L. Kilgore, Pedram Mohseni:
Minimally invasive muscle-based recording of photoplethysmogram toward chronic implantation. BioCAS 2016: 388-391 - [c3]Reza Erfani, Fatemeh Marefat, Mehdi Ehsanian:
Highly phase-linear self-biased CMOS IR-UWB LNA with Sub-ps group-delay variations. ICM 2016: 153-156 - [c2]Reza Erfani, Fatemeh Marefat, Soumyajit Mandal, Pedram Mohseni:
A 1.3mA biphasic current stimulator IC with active charge balancing for nerve interfacing applications. ISCAS 2016: 1090-1093 - 2014
- [c1]Reza Erfani, Fatemeh Marefat, Mehdi Ehsanian:
Self-biased resistive-feedback current-reused CMOS UWB LNA with 1.7dB nf for IR-UWB applications. ICM 2014: 132-135
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