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Difference between revisions of "MiPNet19.18D O2k-Series G and DatLab 6: Calibration"

From Bioblast
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{{Publication
{{Publication
|title=Gnaiger E. Oxygen and pX Calibration DatLab4.3. Mitochondr. Physiol. Network 12.08.
|title=Gnaiger E. Oxygen and pX Calibration DatLab 4.3. Mitochondr Physiol Network 12.08.
|info=[http://www.oroboros.at/index.php?id=o2k-o2calibration  MiPNet12.08]
|info=[http://www.oroboros.at/index.php?o2k-o2calibration  MiPNet12.08]
|authors=Gnaiger E
|authors=Gnaiger E
|year=*
|year=*
|journal=Mitochondr. Physiol. Network
|journal=Mitochondr Physiol Network
|abstract=Accurate calibration of the oxygen sensor depends on (1)
|abstract=[[Accuracy|Accurate]] calibration of the oxygen sensor depends on (1)
calibration solutions prepared at known oxygen partial pressures, as
calibration solutions prepared at known oxygen partial pressures, as
achieved in the Oxygraph-2k (O2k) at defined temperature, continuously
achieved in the [[Oxygraph-2k]] (O2k) at defined temperature, continuously
recorded total gas pressure (barometric pressure), and thermodynamic
recorded total gas pressure (barometric pressure), and thermodynamic
equilibrium between the gas and aqueous phase; (2) high stability of the
equilibrium between the gas and aqueous phase; (2) high stability of the
signal of the polarographic oxygen sensor (POS), tested for sufficiently
signal of the [[polarographic oxygen sensor]] (POS), tested for sufficiently
long periods of time; (3) linearity of signal output with oxygen pressure,
long periods of time; (3) linearity of signal output with oxygen pressure,
achieved with the POS in the range between oxygen saturation and zero
achieved with the POS in the range between oxygen saturation and zero
oxygen pressure; and (4) application of accurate oxygen solubilities for
oxygen pressure; and (4) application of accurate [[oxygen solubility]] for
aqueous solutions for the conversion of partial oxygen pressure into
aqueous solutions for the conversion of partial [[oxygen pressure]] into
oxygen concentration [[MiPNet06.03]]. The standard oxygen calibration
[[oxygen concentration]] ([[MiPNet06.03]]). The standard oxygen calibration
procedure is described for O2k high-resolution respirometry with the
procedure is described for O2k high-resolution respirometry with the
automatic calibration routine of DatLab 4.
automatic calibration routine of DatLab 4.
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==Info==
==Info==


MiPNet08.07, MiPNet09.08 and MiPNet02.01 (DatLab 2) is integrated into MiPNet12.08.
MiPNet08.07, MiPNet09.08 and MiPNet02.01 (DatLab 2) are integrated into MiPNet12.08.

Revision as of 02:21, 4 December 2011

Publications in the MiPMap
Gnaiger E. Oxygen and pX Calibration DatLab 4.3. Mitochondr Physiol Network 12.08.

» MiPNet12.08

Gnaiger E (

) Mitochondr Physiol Network

Abstract: Accurate calibration of the oxygen sensor depends on (1) calibration solutions prepared at known oxygen partial pressures, as achieved in the Oxygraph-2k (O2k) at defined temperature, continuously recorded total gas pressure (barometric pressure), and thermodynamic equilibrium between the gas and aqueous phase; (2) high stability of the signal of the polarographic oxygen sensor (POS), tested for sufficiently long periods of time; (3) linearity of signal output with oxygen pressure, achieved with the POS in the range between oxygen saturation and zero oxygen pressure; and (4) application of accurate oxygen solubility for aqueous solutions for the conversion of partial oxygen pressure into oxygen concentration (MiPNet06.03). The standard oxygen calibration procedure is described for O2k high-resolution respirometry with the automatic calibration routine of DatLab 4. Keywords: HRR-DatLab

O2k-Network Lab: AT_Innsbruck_OROBOROS


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HRR: Oxygraph-2k, O2k-Manual, MiPNet-Publication"MiPNet-Publication" is not in the list (Oxygraph-2k, TIP2k, O2k-Fluorometer, pH, NO, TPP, Ca, O2k-Spectrophotometer, O2k-Manual, O2k-Protocol, ...) of allowed values for the "Instrument and method" property. 


Info

MiPNet08.07, MiPNet09.08 and MiPNet02.01 (DatLab 2) are integrated into MiPNet12.08.