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Md Hasanuzzaman
Md Hasanuzzaman
Polytechnique Montreal, University de Montreal
Подтвержден адрес электронной почты в домене polymtl.ca
Название
Процитировано
Процитировано
Год
Spatial carrier position modulation based multichannel capacitive link for bioelectronic implants
A Hassan, C Sawma, M Hasanuzzaman, B Gosselin, M Sawan
2015 IEEE Biomedical Circuits and Systems Conference (BioCAS), 1-4, 2015
152015
Capacitive-data links, energy-efficient and high-voltage compliant visual intracortical microstimulation system
M Hasanuzzaman, G Simard, NI Krouchev, R Raut, M Sawan
2013 IEEE International Symposium on Circuits and Systems (ISCAS), 646-649, 2013
132013
Toward an energy-efficient high-voltage compliant visual intracortical multichannel stimulator
M Hasanuzzaman, BG Motlagh, F Mounaim, A Hassan, R Raut, M Sawan
IEEE Transactions on Very Large Scale Integration (VLSI) Systems 26 (5), 878-891, 2018
122018
Design and implementation of a low-power 1V, 77.26 µW 6-bit SAR ADC in Cadence 90nm CMOS process for biomedical application
S Banik, MMH Rasel, T Mahmud, M Hasanuzzaman
2020 IEEE region 10 symposium (TENSYMP), 839-842, 2020
92020
Direct growth of carbon nanotubes on new high-density 3D pyramid-shaped microelectrode arrays for brain-machine interfaces
B Ghane Motlagh, M Choueib, A Hajhosseini Mesgar, M Hasanuzzaman, ...
Micromachines 7 (9), 163, 2016
92016
Energy-efficient high-voltage compliant implantable brain-machine interfaces
M Hasanuzzaman, R Raut, M Sawan
2013 Ieee Biomedical Circuits and Systems Conference (Biocas), 81-84, 2013
82013
Toward optimal electrical stimulation waveform efficiency: From excitability models to electrode impedance
NI Krouchev, M Hassanuzaman, B Ghane-Motlagh, A Vinet, R Raut, ...
IFESS Conference, 2012
72012
High‐voltage compliant microelectrode array drivers for intracortical microstimulation
M Hasanuzzaman, R Raut, M Sawan
International Journal of Circuit Theory and Applications 44 (3), 660-682, 2016
62016
Blind separation of convolved sources using the information maximization approach
M Hasanuzzaman, K Khrosani
Proceedings. 2005 IEEE International Joint Conference on Neural Networks …, 2005
62005
A high-performance low-power two-stage OPAMP realized in 90nm CMOS process for biomedical application
S Banik, T Mahmud, MMH Rasel, M Hasanuzzaman
2020 IEEE Region 10 Symposium (TENSYMP), 827-830, 2020
32020
A high-impedance microelectrode driver dedicated for visual intracortical microstimulation
M Hasanuzzaman, R Raut, M Sawan
2012 IEEE 55th International Midwest Symposium on Circuits and Systems …, 2012
32012
Successive-divider-line ADC dedicated to low-power medical devices
R Chebli, M Hasanuzzaman, A Haidar, M Sawan
Microelectronics Journal 43 (10), 670-679, 2012
12012
Design of a Bi-Directional Wireless Data Transceiver for Implantable Biomedical Device
MRH Khondaker, MN Reza, S An-Nababi, M Piyas, M Hasanuzzaman
2021 Emerging Technology in Computing, Communication and Electronics (ETCCE …, 2021
2021
A wireless, high-voltage compliant, and energy-efficient visual intracortical microstimulator
M Hasanuzzaman
Ecole Polytechnique, Montreal (Canada), 2016
2016
Energy-efficient high-voltage compliant microstimulator and recording interface for implantable brain-machine interface
M Hasanuzzaman, R Raut, M Sawan
Institute of Electrical and Electronics Engineers, 2013
2013
An energy-efficient and multiple-waveform stimuli generator for visual cortex micostimulation
M Hasanuzzaman, M Sawan, R Raut
10th International Vienna Workshop on FES and 15th IFESS Annual Conference …, 2010
2010
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