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High-Resolution Measurements of Middle Ear Gas Volume Changes in the Rabbit Enables Estimation of its Mucosal CO2 Conductance

机译:兔中耳气体体积变化的高分辨率测量可估算其粘膜二氧化碳电导率

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摘要

Transmucosal CO2 exchange in the middle ear (ME) of the New Zealand White rabbit (Oryctolagus cuniculus) was studied using an accurate novel detecting and recording system for measuring gas volume changes at constant pressure, based on a principle that was previously used by Kania et al. (Acta Otolaryngol 124:408–410, 2004). After the ME cavity was washed with ambient air, the initial diffusion rate of CO2 () from the blood perfusing the ME mucosa was calculated from gas volume change measurements. In nine cases, the calculated after normalization due to shifts in baseline was 314 ± 112 μL·h−1 (mean ± SD). In two cases where normalization was not needed, was 409 μL·h−1 (276 and 543 μL·h−1). Normalization of data was also made in five additional cases where secretion of fluids from the lining of the ear canal was observed. In these cases was 245 ± 142 μL·h−1. No differences were found between results obtained in the three groups. Thus, an overall mean value of of 305 ± 131 μL·h−1 (n = 16) was calculated. An effective coefficient of conductance of CO2 (G2) between the mucosal circulation and the ME gas cavity of the New Zealand White rabbit was estimated to be ≈0.05 μL (h·Pa)−1 and compared to the G2 estimated for humans in a different study.
机译:基于Kania等人先前使用的原理,使用精确的新型检测和记录系统在恒压下测量气体体积变化,研究了新西兰白兔(Oryctolagus cuniculus)中耳的透粘膜CO2交换。等(耳鼻喉学报124:408–410,2004年)。用环境空气冲洗ME腔后,从气体体积变化测量值计算出灌注ME黏膜的血液中CO2()的初始扩散率。在9种情况下,归因于基线偏移的归一化后的计算结果为314±112μL·h -1 (平均值±SD)。在两种不需要归一化的情况下,为409μL·h -1 (276和543μL·h -1 )。在另外五种情况下也对数据进行了归一化,其中观察到耳道内膜分泌了液体。在这些情况下为245±142μL·h -1 。在三组中获得的结果之间没有发现差异。因此,计算得出的总平均值为305±131μL·h -1 (n = 16)。新西兰白兔在粘膜循环和ME气腔之间的有效电导系数(G2)估计为≈0.05μL(h·Pa) -1 并与在另一项研究中为人类估计的G2。

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