Details
Originalsprache | Englisch |
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Titel des Sammelwerks | Advances in Fluorescence Sensing Technology II |
Seiten | 558-567 |
Seitenumfang | 10 |
Publikationsstatus | Veröffentlicht - 8 Mai 1995 |
Veranstaltung | PHOTONICS WEST '95 - San Jose, CA, USA / Vereinigte Staaten Dauer: 1 Feb. 1995 → … |
Publikationsreihe
Name | Proceedings of SPIE - The International Society for Optical Engineering |
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Band | 2388 |
ISSN (Print) | 0277-786X |
Abstract
The development of pH-based fiber optic biosensors and their uses in clinical and biotechnological applications are described. Based on a pH-sensitive optode, different biosensors for urea, penicillin, glucose and creatinine were developed. A multichannel modular fluorimeter was used to measure signals from up to three optodes simultaneously. The pH value and the buffer capacity are critical factors for biosensors based on pH probes and influence the biosensor signal. A flow injection analysis (FIA) system is used to eliminate the latter influences. With this integrated system, samples can be analyzed sequentially by the injection of a defined volume of each sample into a continuously flowing buffer stream that transports the samples to the sensors. The complex signal is transformed and analyzed by a computer system. Characteristic features of the FIA peak give information about the buffer capacity in the solution. With the help of intelligent computing (neural networks) it is possible to recognize these features and relate them to the respective buffer capacity to obtain more accurate values. Various applications of these biosensors are discussed. The pH optode is also used to monitor enzymatic reactions in non aqueous solvents. In this case the production of acetic acid can be detected on line.
ASJC Scopus Sachgebiete
- Werkstoffwissenschaften (insg.)
- Elektronische, optische und magnetische Materialien
- Physik und Astronomie (insg.)
- Physik der kondensierten Materie
- Informatik (insg.)
- Angewandte Informatik
- Mathematik (insg.)
- Angewandte Mathematik
- Ingenieurwesen (insg.)
- Elektrotechnik und Elektronik
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Advances in Fluorescence Sensing Technology II. 1995. S. 558-567 (Proceedings of SPIE - The International Society for Optical Engineering; Band 2388).
Publikation: Beitrag in Buch/Bericht/Sammelwerk/Konferenzband › Aufsatz in Konferenzband › Forschung › Peer-Review
}
TY - GEN
T1 - pH-based fiber optic biosensors for use in clinical and biotechnological applications
AU - Mueller, Cord
AU - Hitzmann, Bernd
AU - Schubert, Florian
AU - Scheper, Thomas
PY - 1995/5/8
Y1 - 1995/5/8
N2 - The development of pH-based fiber optic biosensors and their uses in clinical and biotechnological applications are described. Based on a pH-sensitive optode, different biosensors for urea, penicillin, glucose and creatinine were developed. A multichannel modular fluorimeter was used to measure signals from up to three optodes simultaneously. The pH value and the buffer capacity are critical factors for biosensors based on pH probes and influence the biosensor signal. A flow injection analysis (FIA) system is used to eliminate the latter influences. With this integrated system, samples can be analyzed sequentially by the injection of a defined volume of each sample into a continuously flowing buffer stream that transports the samples to the sensors. The complex signal is transformed and analyzed by a computer system. Characteristic features of the FIA peak give information about the buffer capacity in the solution. With the help of intelligent computing (neural networks) it is possible to recognize these features and relate them to the respective buffer capacity to obtain more accurate values. Various applications of these biosensors are discussed. The pH optode is also used to monitor enzymatic reactions in non aqueous solvents. In this case the production of acetic acid can be detected on line.
AB - The development of pH-based fiber optic biosensors and their uses in clinical and biotechnological applications are described. Based on a pH-sensitive optode, different biosensors for urea, penicillin, glucose and creatinine were developed. A multichannel modular fluorimeter was used to measure signals from up to three optodes simultaneously. The pH value and the buffer capacity are critical factors for biosensors based on pH probes and influence the biosensor signal. A flow injection analysis (FIA) system is used to eliminate the latter influences. With this integrated system, samples can be analyzed sequentially by the injection of a defined volume of each sample into a continuously flowing buffer stream that transports the samples to the sensors. The complex signal is transformed and analyzed by a computer system. Characteristic features of the FIA peak give information about the buffer capacity in the solution. With the help of intelligent computing (neural networks) it is possible to recognize these features and relate them to the respective buffer capacity to obtain more accurate values. Various applications of these biosensors are discussed. The pH optode is also used to monitor enzymatic reactions in non aqueous solvents. In this case the production of acetic acid can be detected on line.
UR - http://www.scopus.com/inward/record.url?scp=0029226766&partnerID=8YFLogxK
U2 - 10.1117/12.208517
DO - 10.1117/12.208517
M3 - Conference contribution
AN - SCOPUS:0029226766
SN - 0819417351
T3 - Proceedings of SPIE - The International Society for Optical Engineering
SP - 558
EP - 567
BT - Advances in Fluorescence Sensing Technology II
T2 - Advances in Fluorescence Sensing Technology II
Y2 - 1 February 1995
ER -