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Time Multiplexed Active Neural Probe with 1356 Parallel Recording Sites

We present a high electrode density and high channel count CMOS (complementary metal-oxide-semiconductor) active neural probe containing 1344 neuron sized recording pixels (20 µm × 20 µm) and 12 reference pixels (20 µm × 80 µm), densely packed on a 50 µm thick, 100 µm wide, and 8 mm long shank. The...

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Autores principales: Raducanu, Bogdan C., Yazicioglu, Refet F., Lopez, Carolina M., Ballini, Marco, Putzeys, Jan, Wang, Shiwei, Andrei, Alexandru, Rochus, Veronique, Welkenhuysen, Marleen, van Helleputte, Nick, Musa, Silke, Puers, Robert, Kloosterman, Fabian, Van Hoof, Chris, Fiáth, Richárd, Ulbert, István, Mitra, Srinjoy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5677417/
https://www.ncbi.nlm.nih.gov/pubmed/29048396
http://dx.doi.org/10.3390/s17102388
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author Raducanu, Bogdan C.
Yazicioglu, Refet F.
Lopez, Carolina M.
Ballini, Marco
Putzeys, Jan
Wang, Shiwei
Andrei, Alexandru
Rochus, Veronique
Welkenhuysen, Marleen
van Helleputte, Nick
Musa, Silke
Puers, Robert
Kloosterman, Fabian
Van Hoof, Chris
Fiáth, Richárd
Ulbert, István
Mitra, Srinjoy
author_facet Raducanu, Bogdan C.
Yazicioglu, Refet F.
Lopez, Carolina M.
Ballini, Marco
Putzeys, Jan
Wang, Shiwei
Andrei, Alexandru
Rochus, Veronique
Welkenhuysen, Marleen
van Helleputte, Nick
Musa, Silke
Puers, Robert
Kloosterman, Fabian
Van Hoof, Chris
Fiáth, Richárd
Ulbert, István
Mitra, Srinjoy
author_sort Raducanu, Bogdan C.
collection PubMed
description We present a high electrode density and high channel count CMOS (complementary metal-oxide-semiconductor) active neural probe containing 1344 neuron sized recording pixels (20 µm × 20 µm) and 12 reference pixels (20 µm × 80 µm), densely packed on a 50 µm thick, 100 µm wide, and 8 mm long shank. The active electrodes or pixels consist of dedicated in-situ circuits for signal source amplification, which are directly located under each electrode. The probe supports the simultaneous recording of all 1356 electrodes with sufficient signal to noise ratio for typical neuroscience applications. For enhanced performance, further noise reduction can be achieved while using half of the electrodes (678). Both of these numbers considerably surpass the state-of-the art active neural probes in both electrode count and number of recording channels. The measured input referred noise in the action potential band is 12.4 µVrms, while using 678 electrodes, with just 3 µW power dissipation per pixel and 45 µW per read-out channel (including data transmission).
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spelling pubmed-56774172017-11-17 Time Multiplexed Active Neural Probe with 1356 Parallel Recording Sites Raducanu, Bogdan C. Yazicioglu, Refet F. Lopez, Carolina M. Ballini, Marco Putzeys, Jan Wang, Shiwei Andrei, Alexandru Rochus, Veronique Welkenhuysen, Marleen van Helleputte, Nick Musa, Silke Puers, Robert Kloosterman, Fabian Van Hoof, Chris Fiáth, Richárd Ulbert, István Mitra, Srinjoy Sensors (Basel) Article We present a high electrode density and high channel count CMOS (complementary metal-oxide-semiconductor) active neural probe containing 1344 neuron sized recording pixels (20 µm × 20 µm) and 12 reference pixels (20 µm × 80 µm), densely packed on a 50 µm thick, 100 µm wide, and 8 mm long shank. The active electrodes or pixels consist of dedicated in-situ circuits for signal source amplification, which are directly located under each electrode. The probe supports the simultaneous recording of all 1356 electrodes with sufficient signal to noise ratio for typical neuroscience applications. For enhanced performance, further noise reduction can be achieved while using half of the electrodes (678). Both of these numbers considerably surpass the state-of-the art active neural probes in both electrode count and number of recording channels. The measured input referred noise in the action potential band is 12.4 µVrms, while using 678 electrodes, with just 3 µW power dissipation per pixel and 45 µW per read-out channel (including data transmission). MDPI 2017-10-19 /pmc/articles/PMC5677417/ /pubmed/29048396 http://dx.doi.org/10.3390/s17102388 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Raducanu, Bogdan C.
Yazicioglu, Refet F.
Lopez, Carolina M.
Ballini, Marco
Putzeys, Jan
Wang, Shiwei
Andrei, Alexandru
Rochus, Veronique
Welkenhuysen, Marleen
van Helleputte, Nick
Musa, Silke
Puers, Robert
Kloosterman, Fabian
Van Hoof, Chris
Fiáth, Richárd
Ulbert, István
Mitra, Srinjoy
Time Multiplexed Active Neural Probe with 1356 Parallel Recording Sites
title Time Multiplexed Active Neural Probe with 1356 Parallel Recording Sites
title_full Time Multiplexed Active Neural Probe with 1356 Parallel Recording Sites
title_fullStr Time Multiplexed Active Neural Probe with 1356 Parallel Recording Sites
title_full_unstemmed Time Multiplexed Active Neural Probe with 1356 Parallel Recording Sites
title_short Time Multiplexed Active Neural Probe with 1356 Parallel Recording Sites
title_sort time multiplexed active neural probe with 1356 parallel recording sites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5677417/
https://www.ncbi.nlm.nih.gov/pubmed/29048396
http://dx.doi.org/10.3390/s17102388
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