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首页> 外文期刊>Sleep & breathing =: Schlaf & Atmung >Development of a novel chronic intermittent hypoxia chamber.
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Development of a novel chronic intermittent hypoxia chamber.

机译:开发一种新型的慢性间歇性缺氧室。

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To develop a novel chronic intermittent hypoxia chamber for rat models.The intermittent hypoxia chamber included two animal cabins (28 × 20 × 15 cm) and a hypoxia chamber (80 × 80 × 60 cm) between them, as well as the actuating device. Pure nitrogen was fed into the hypoxia chamber continuously in order to keep the low O(2) concentration. Each animal cabin could move in and out of the hypoxia chamber with precise timing function. As a result, the animal cabins could be covered by the hypoxia chamber and got the same low O(2) concentration as in the hypoxia chamber and normal O(2) concentration as out of the hypoxia chamber. Twelve healthy, male Sprague-Dawley rats (200~250 g) were selected to test the effect of the intermittent hypoxia chamber. The O(2) concentration in the hypoxia chamber was 10 ± 0.5%, and the cycle time of intermittent hypoxia was 180 s (the hypoxia and normoxic time was 90 s, respectively). The hypoxia chamber ran 8 h per day. The arterial blood gas analysis (ABSA) of rats was conducted when the animal cabin was located inside and outside the hypoxia chamber.The chronic intermittent hypoxia chamber ran safely and reliably. The ABSA showed that the lowest PaO(2) was 35.75 ± 4.02 mmHg and the lowest SaO(2) was 68.62 ± 8.36% when the animal cabin was covered by the hypoxia chamber.The chronic intermittent hypoxia chamber designed by us was suitable to establish a chronic intermittent hypoxia model for rats.
机译:为大鼠模型开发一种新型的慢性间歇性缺氧室。间歇性缺氧室包括两个动物隔间(28×20×15 cm)和一个缺氧室(80×80×60 cm)以及致动装置。为了保持低O(2)浓度,将纯氮气连续注入缺氧室。每个动物舱室都可以精确的定时功能进出缺氧室。结果,动物舱室可以被低氧舱所覆盖,并获得与低氧舱相同的低O(2)浓度,以及与低氧舱外相同的正常O(2)浓度。选择十二只健康的雄性Sprague-Dawley大鼠(200〜250 g)来测试间歇性缺氧室的效果。缺氧室中的O(2)浓度为10±0.5%,间歇性缺氧的循环时间为180 s(缺氧时间和正常氧时间分别为90 s)。缺氧室每天运行8小时。当动物舱位于低氧舱室内外时,进行大鼠动脉血气分析(ABSA),慢性间歇性低氧舱安全可靠地运行。 ABSA显示,当动物舱被低氧舱室覆盖时,最低PaO(2)为35.75±4.02 mmHg,最低SaO(2)为68.62±8.36%。我们设计的慢性间歇性低氧舱室适合建立一种大鼠的慢性间歇性缺氧模型。

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