DocumentCode :
2591898
Title :
8×16 channel physiological monitoring platform of stem cell culture systems
Author :
Yue, Xicai ; Drakakis, Emmanuel M. ; Toumazou, Christofer ; Ye, Hua ; Mantalaris, Athanasios ; Radomska, Anna ; Cass, Tony
Author_Institution :
Dept. of Bioeng., Imperial Coll., London
fYear :
2006
fDate :
Nov. 29 2006-Dec. 1 2006
Firstpage :
106
Lastpage :
109
Abstract :
An up to 128 channel PC-based physiological measurement platform for stem cell cultures is presented in this paper. The platform is designed to measure the most important stem cell culture parameters namely pH, temperature and glucose in real-time. The aim is to optimize the whole bioprocess by means of the acquisition of real-time, on-line, in-situ quantitative physiology information from the culture. The hardware system of the physiological measurement platform is designed in a modular manner. Each is designed as an independent 16 channel data acquisition system specific to a sensor type. Up to eight data acquisition modules are connected together and then connected to the host PC to form the 8times16 channel physiological measurement platform. The host PC is mainly used for data acquisition process control. With the virtual instrumentation application software programmed in LabVIEW, the user-friendly interface of physiological measurement platform is easy to use in facilitating the acquisition, display and management different types of physiological data. The platform is generic by design and can be interfaced with a variety of potentiometric and amperometric sensors. This operational attributes renders the platform suitable for any cell culture application where quality control is needed through the quantitative monitoring of the bioprocess and its subsequent informed assessment and interpretation. Furthermore, the modular structure facilitates the introduction of new sensor to the platform.
Keywords :
amperometric sensors; biochemistry; biomedical measurement; biosensors; cellular biophysics; data acquisition; medical computing; pH measurement; temperature measurement; tissue engineering; user interfaces; virtual instrumentation; 128 channel PC-based physiological measurement platform; 16 channel data acquisition system; LabVIEW software program; amperometric sensors; bioprocess optimisation; cell culture application; data acquisition process control; glucose; hardware module; hardware system; in-situ quantitative physiology information; pH; physiological data management; potentiometric sensors; quality control; quantitative monitoring; real-time acquisition; stem cell culture parameters measurement; temperature; user-friendly interface; virtual instrumentation application; Biomedical monitoring; Biosensors; Data acquisition; Hardware; Physiology; Process control; Sensor systems; Stem cells; Sugar; Temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Circuits and Systems Conference, 2006. BioCAS 2006. IEEE
Conference_Location :
London
Print_ISBN :
978-1-4244-0436-0
Electronic_ISBN :
978-1-4244-0437-7
Type :
conf
DOI :
10.1109/BIOCAS.2006.4600319
Filename :
4600319
Link To Document :
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