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Improving measurement stability and reproducibility of potentiometric sensors for polyions such as heparin.

机译:提高了诸如肝素之类的聚离子电位计传感器的测量稳定性和可重复性。

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摘要

The growing importance of polymer membrane-based potentiometric polyion sensors in biomedical research and clinical measurements has brought up the question of how accurate and reproducible these sensors are. Indeed, recent research has revealed that these sensors behave quite differently than classical ion-selective electrodes. This paper explores ways to improve measurement reproducibility and long term potential stability by considering the unique pseudo steady-state response mechanism of the polyion sensors developed so far. Heparin may be stripped out of the phase boundary membrane surface with a high sample NaCl concentration and this characteristic is used to modify the calibration procedure in order to avoid memory effects. It is also attempted to reduce long term potential drifts by continuously stripping heparin out of the membrane at the membrane-inner filling solution side.
机译:基于聚合物膜的电位聚离子传感器在生物医学研究和临床测量中的重要性日益提高,提出了这些传感器的精确性和可重复性的问题。实际上,最近的研究表明,这些传感器的行为与传统的离子选择电极完全不同。本文考虑了迄今为止开发的聚离子传感器独特的伪稳态响应机制,探索了提高测量重现性和长期电势稳定性的方法。可以用高浓度的NaCl样品将肝素从相界膜表面上剥离出来,并使用此特性来修改校准程序以避免记忆效应。还试图通过在膜内部填充溶液侧从膜中连续剥离肝素来减少长期的电位漂移。

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