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Ventilation distribution on different body positions measured by electrical impedance tomography

机译:通过电阻断层扫描测量的不同体位的通风分布

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Objective: It has been confirmed that gravitation influences ventilation distribution. The aim of the study was to validate the ability of electrical impedance tomography (EIT) in detecting ventilation inhomogeneity caused by gravitation. Methods: Ten healthy volunteers were included for this prospective study. They were asked to breathe spontaneously in four different body positions, namely supine, prone, left lateral and right lateral positions. Functional EIT images were calculated and divided into four quadrants. Results: No significant difference of air distribution was found between gravity-dependent lung regions and nondependent lung regions in both supine and prone position, while significant difference was found in both lateral positions (left lateral, left and right lung respectively: 57.6±7.2%, 42.4±7.2%, p<0.01; right lateral, left and right lung respectively:, 35.3±6.7%, 64.7±6.7%, p<0.01). Conclusion: The results indicate that the influence of gravitation on ventilation distribution depends on body positions and EIT is able to detect the ventilation inhomogeneity.
机译:目的:已经证实,引力影响通风分布。该研究的目的是验证电阻抗断层摄影(EIT)检测引力引起的通风不均匀性的能力。方法:将十个健康的志愿者纳入这项前瞻性研究。他们被要求在四个不同的身体位置自发地呼吸,即仰卧,容易发生的左侧和右侧位置。计算功能EIT图像并分为四个象限。结果:在重力依赖性肺区内和俯卧位肺区内的无依赖性肺区之间没有显着差异,而横向位置(分别左侧,左侧和右肺分别存在显着差异:57.6±7.2% ,42.4±7.2%,P <0.01;右侧,左侧和右肺分别:35.3±6.7%,64.7±6.7%,P <0.01)。结论:结果表明,引力对通气分布的影响取决于身体位置,EIT能够检测通风不均匀性。

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