Compact CO2 gas analyzer with favourable signal-to-noise ratio and resolution using special fluorescence sensors (optodes) illuminated by blue LED's.
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Biomedical subjects
Publications and source records attributed to N Opitz.
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To measure pO2 in gases or fluids and pH in solutions the fluorescence indicators pyrene butyric acid and beta-methylumbelliferone, respectively, were nanoencapsulated to obtain nano-probes for measurement in physiological structures of nano-range. For pH the fluorescence changes of beta-methylumbelliferone were monitored, for pO2 the fluoresence quenching of pyrene butyric acid by oxygen were registered. Drawing log (S1/S2) versus pH, one obtains a straight line between the pH from 6 to 8. A linear increase in pO2 between 0 and 400 torr yields a linear increase in the reciprocal fluorescence signal.
To measure pO2 or pCO2 in gases or fluids the fluorescence indicators pyrene butyric acid or beta-methylumbelliferon were used, which were separated from a measuring medium by a gas-permeable membrane. For pCO2 the pH changes in NaHCO3 solution were monitored by methylumbelliferon. Changes in its fluorescence signal, S, were measured at lambda (emmission) = 445 nm. Excitation was brought about by light of wavelength lambda1 = 318 nm (fluorescence signal S1), and lambda2 - 357 nm fluorescence signal S2). Drawing lg(S2/S1) against lg(pCO2-1), one obtains a straight line between a pCO2 of 10 and 70 Torr. The response time is about 3 to 4s (90%). For pO2, pyrene butyric acid is used (lambda(excitation) = 342 nm; lambda(emission) =395 nm). A linear increase in pO2 between 0 and 300 Torr yields a linear increase in the reciprocal fluorescence signal. The response time is about 3 s (90%).