33.5 Closed-Loop 100-Channel Highly-Scalable Retinal Implant with 1.02\(μ\)W Analog ED-Based Adaptive-Threshold Spike Detection and Poisson-Coded Temporally Distributed Optogenetic Stimulation. Yousefi, T., Zoidl, G., & Kassiri, H. In IEEE International Solid-State Circuits Conference, ISSCC 2024, San Francisco, CA, USA, February 18-22, 2024, pages 550–552, 2024. IEEE.
Paper doi bibtex @inproceedings{DBLP:conf/isscc/YousefiZK24,
author = {Tayebeh Yousefi and
Georg Zoidl and
Hossein Kassiri},
title = {33.5 Closed-Loop 100-Channel Highly-Scalable Retinal Implant with
1.02{\(\mu\)}W Analog ED-Based Adaptive-Threshold Spike Detection
and Poisson-Coded Temporally Distributed Optogenetic Stimulation},
booktitle = {{IEEE} International Solid-State Circuits Conference, {ISSCC} 2024,
San Francisco, CA, USA, February 18-22, 2024},
pages = {550--552},
publisher = {{IEEE}},
year = {2024},
url = {https://doi.org/10.1109/ISSCC49657.2024.10454460},
doi = {10.1109/ISSCC49657.2024.10454460},
timestamp = {Tue, 19 Mar 2024 09:04:31 +0100},
biburl = {https://dblp.org/rec/conf/isscc/YousefiZK24.bib},
bibsource = {dblp computer science bibliography, https://dblp.org}
}
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