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Documents dont l'auteur est "Eskandari, Razieh"

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Nombre de documents: 6

C

Chen, J., Wu, H., Eskandari, R., Liu, X., Lin, S., Hou, Q., Tian, F., Zou, W., Yang, J., & Sawan, M. (avril 2024). A Neuron-Inspired 0.0032mm2−1.38μW/Ch Wireless Implantable Neural Interface with Direct Multiplexing Front-End and Event-Driven Spike Detection and Transmission [Communication écrite]. IEEE Custom Integrated Circuits Conference (CICC 2024), Denver, CO, USA. Lien externe

E

Eskandari, R., Katebi, M., Wu, H., Tan, Z., Mao, Y., Faezipour, M., Abdollah Mirbozorgi, S., & Sawan, M. (mai 2025). Implantable Closed-loop Neuromodulation Platform Dedicated to Diabetes Diagnosis and Treatment [Communication écrite]. IEEE International Symposium on Circuits and Systems (ISCAS 2025), London, United Kingdom. Lien externe

Eskandari, R., Nawito, M., Katebi, M., Kraushaar, U., Richter, H., Anders, J., Burghartz, J. N., Abdollah Mirbozorgi, S., & Sawan, M. (2025). Towards Closed-Loop Neuromodulation for Type 2 Diabetes with ex vivo Validation of Beta-Cell Activity and FOPP Detection. IEEE Transactions on Biomedical Circuits and Systems, PP, 1-13. Lien externe

Eskandari, R., & Sawan, M. (2025). 78.8 pJ/b, 100 Mb/s Noncoherent IR-UWB Receiver for Multichannel Neurorecording Implants. IEEE Transactions on Biomedical Circuits and Systems, 19(3), 1-12. Lien externe

H

Hayati, H., Aarani, S. G., Karimi, M., Eskandari, R., Sawan, M., Gagnon-Turcotte, G., & Gosselin, B. (2025). A 400-Mbps 1.05 pJ/bit IR-UWB Transmitter for High-Density Neural Recording Systems. IEEE Transactions on Circuits & Systems II Express Briefs, 1-1. Lien externe

Z

Zou, W., Eskandari, R., Liu, X., Chen, J., Ye, Y., Wu, H., Yang, J., & Sawan, M. (octobre 2024). A 34 μW and 3.4 pJ/b IR-UWB Transmitter Featuring Spectrum Tunability for Brain-Machine Interfaces [Communication écrite]. IEEE Biomedical Circuits and Systems Conference (BioCAS 2024), Xi"an, China. Lien externe

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