DocumentCode :
857612
Title :
A Real-Time Multi-Channel Monitoring System for Stem Cell Culture Process
Author :
Xicai Yue ; Drakakis, E.M. ; Lim, M. ; Radomska, A. ; Hua Ye ; Mantalaris, A. ; Panoskaltsis, N. ; Cass, A.
Author_Institution :
Dept. of Bioeng., Imperial Coll. London, London
Volume :
2
Issue :
2
fYear :
2008
fDate :
6/1/2008 12:00:00 AM
Firstpage :
66
Lastpage :
77
Abstract :
A novel, up to 128 channels, multi-parametric physiological measurement system suitable for monitoring hematopoietic stem cell culture processes and cell cultures in general is presented in this paper. The system aims to measure in real-time the most important physical and chemical culture parameters of hematopoietic stem cells, including physicochemical parameters, nutrients, and metabolites, in a long-term culture process. The overarching scope of this research effort is to control and optimize the whole bioprocess by means of the acquisition of real-time quantitative physiological information from the culture. The system is designed in a modular manner. Each hardware module can operate as an independent gain programmable, level shift adjustable, 16 channel data acquisition system specific to a sensor type. Up to eight such data acquisition modules can be combined and connected to the host PC to realize the whole system hardware. The control of data acquisition and the subsequent management of data is performed by the system´s software which is coded in LabVIEW. Preliminary experimental results presented here show that the system not only has the ability to interface to various types of sensors allowing the monitoring of different types of culture parameters. Moreover, it can capture dynamic variations of culture parameters by means of real-time multi-channel measurements thus providing additional information on both temporal and spatial profiles of these parameters within a bioreactor. The system is by no means constrained in the hematopoietic stem cell culture field only. It is suitable for cell growth monitoring applications in general.
Keywords :
biochemistry; bioreactors; blood; cellular biophysics; data acquisition; medical computing; real-time systems; tissue engineering; virtual instrumentation; 16 channel data acquisition system; LabVIEW; bioreactor; cell growth monitoring applications; data acquisition control; data acquisition modules; hardware module; hematopoietic stem cell culture process monitoring; independent gain programmable system; long-term culture process; metabolites; multiparametric physiological measurement system; nutrients; physicochemical parameters; real-time multichannel monitoring system; real-time quantitative physiological information; Biomedical monitoring; Biosensors; Chemical processes; Control systems; Data acquisition; Hardware; Real time systems; Sensor systems; Stem cells; System software; Bioprocess; cell culture; data acquisition; physiochemical monitoring; stem cell;
fLanguage :
English
Journal_Title :
Biomedical Circuits and Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1932-4545
Type :
jour
DOI :
10.1109/TBCAS.2008.925639
Filename :
4623173
Link To Document :
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