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High speed digital interfacing for a neural data acquisition system - Enabling of live display functionality for a neural recording system
Citation Link: https://doi.org/10.15480/882.1344
Publikationstyp
Journal Article
Date Issued
2016-10
Sprache
English
TORE-DOI
Volume
2
Issue
1
Start Page
87
End Page
90
Citation
Current Directions in Biomedical Engineering. Band 2, Heft 1, Seiten 87–90
Publisher DOI
Scopus ID
Publisher
De Gruyter
Diseases like schizophrenia and genetic epilepsy are supposed to be caused by disorders in the early development of the brain. For the further investigation of these relationships a custom designed application specific integrated circuit (ASIC) was developed that is optimized for the recording from neonatal mice [Bahr A, Abu-Saleh L, Schroeder D, Krautschneider W. 16 Channel Neural Recording Integrated Circuit with SPI Interface and Error Correction Coding. Proc. 9th BIOSTEC 2016. Biodevices: Rome, Italy, 2016; 1: 263; Bahr A, Abu-Saleh L, Schroeder D, Krautschneider W. Development of a neural recording mixed signal integrated circuit for biomedical signal acquisition. Biomed Eng Biomed Tech Abstracts 2015; 60(S1): 298–299; Bahr A, Abu-Saleh L, Schroeder D, Krautschneider WH. 16 Channel Neural Recording Mixed Signal ASIC. CDNLive EMEA 2015 Conference Proceedings, 2015.]. To enable the live display of the neural signals a multichannel neural data acquisition system with live display functionality is presented. It implements a high
speed data transmission from the ASIC to a computer with a live display functionality. The system has been successfully implemented and was used in a neural recording of a
head-fixed mouse.
speed data transmission from the ASIC to a computer with a live display functionality. The system has been successfully implemented and was used in a neural recording of a
head-fixed mouse.
Subjects
high speed digital interfacing
live display of neural data
neural data acquisition system
neural recording system
DDC Class
004: Informatik
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