首页> 外文期刊>Advances in Experimental Medicine and Biology >Brain tissue and sagittal sinus pO2 measurements using the lifetimes of oxygen-quenched luminescence of a ruthenium compound.
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Brain tissue and sagittal sinus pO2 measurements using the lifetimes of oxygen-quenched luminescence of a ruthenium compound.

机译:使用钌化合物的氧猝灭发光寿命来测量大脑组织和矢状窦pO2。

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The study was done to assess the performance of a system that measures the partial pressures of oxygen (pO2) from the lifetimes of oxygen-quenched luminescence of ruthenium compounds immobilized at the tip of fiber-optic optodes (Oxylite system). The system was used to measure the pO2 in brain tissue (thalamus and hypothalamus) and in the sagittal sinus of isoflurane-anesthetized rats at different FiO2's. The pO2 recorded in the hypothalamus (HPtO2) was consistently higher than the pO2 in the thalamus (TPtO2) at all FiO2. HPtO2 was closely related to PvO2 during normoxia but not during hypoxia. The equilibrium time of Oxylite system was found to be rapid compared to in vivo tissue response to changes in FiO2.
机译:进行该研究以评估一种系统的性能,该系统从固定在光纤光电二极管尖端的钌化合物的氧猝灭发光的寿命中测量氧分压(pO2)(Oxylite系统)。该系统用于测量异氟烷麻醉的大鼠在不同FiO2下的脑组织(丘脑和下丘脑)和矢状窦中的pO2。在所有FiO2下丘脑中记录的pO2(HPtO2)始终高于丘脑中的pO2(TPtO2)。在常氧状态下,HPtO2与PvO2密切相关,而在低氧状态下则不相关。与体内组织对FiO2变化的反应相比,Oxylite系统的平衡时间被发现是快速的。

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