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首页> 外文期刊>Hearing Research: An International Journal >Eustachian tube pressure equilibration. Temporal analysis of pressure changes based on direct physiological recordings with an intact tympanic membrane
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Eustachian tube pressure equilibration. Temporal analysis of pressure changes based on direct physiological recordings with an intact tympanic membrane

机译:咽鼓管压力平衡。基于直接生理记录和完整鼓膜的压力变化的时间分析

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摘要

Eustachian tube function is important in pressure regulation of the middle ear. The efficacy or magnitude of pressure equilibration by tube openings should be determined by the gradient between middle ear and ambient pressure, but in theory also the duration of the tube opening may play a role. This study employed direct measurements of middle ear pressure in patients, who after parotidectomy had a catheter inserted into the mastoid with a pressure transducer connected. Thus, monitoring of the middle ear pressure in response to experimentally induced pressure changes could be performed under physiological conditions with an intact tympanic membrane. A set of six experiments was performed in four healthy subjects with different pressure deviations, where the counter-regulation was recorded over 10 min's time frames; a total of 75 events of tube openings were recorded. The transducer had a high accuracy of ±0.1 daPa, and data were sampled at 10 Hz, so that detailed parameters for each tube opening event could be obtained: the pressure change, the pressure gradient, and the duration of the opening were determined. The pressure changes in response to Eustachian tube openings showed significant positive correlation to the pressure gradient and ambient pressure (p < 0.001). However, the duration of the opening time was not related to the pressure gradient (p = 0.16), as well as the pressure change was also not related to the duration of the opening time (p = 0.34). This meant that the magnitude of a pressure equilibration during tube openings was only determined by the pressure gradient and not variations in the duration of the opening time. Additional correlations were investigated including the pressure change rate. In conclusion, under physiological conditions the opening of the Eustachian tube behaves similarly to a reflex mechanism with relative constant duration. Therefore, in order to equilibrate higher pressure gradients, series of Eustachian tube openings are needed, rather than the tube will open during a longer period of time. This article is part of a Special Issue entitled "MEMRO 2012".
机译:咽鼓管功能在中耳压力调节中很重要。管开口压力平衡的功效或大小应由中耳与环境压力之间的梯度确定,但从理论上讲,管开口的持续时间也可能起作用。这项研究对患者的中耳压进行了直接测量,他们在腮腺切除术后将导管插入乳突并连接了压力传感器。因此,可以在具有完整鼓膜的生理条件下对响应于实验引起的压力变化的中耳压力进行监测。在四个具有不同压力偏差的健康受试者中进行了一组六个实验,其中在10分钟的时间范围内记录了反调节。总共记录了75次开管事件。该换能器具有±0.1 daPa的高精度,并且以10 Hz采样数据,因此可以获得有关每个管打开事件的详细参数:确定压力变化,压力梯度和打开持续时间。响应咽鼓管开口的压力变化显示出与压力梯度和环境压力显着正相关(p <0.001)。但是,开启时间的持续时间与压力梯度无关(p = 0.16),并且压力变化也与开启时间的持续时间无关(p = 0.34)。这意味着在管子打开期间压力平衡的大小仅由压力梯度确定,而与打开时间的持续时间没有变化。研究了其他相关性,包括压力变化率。总之,在生理条件下,咽鼓管的开放与持续时间相对恒定的反射机制相似。因此,为了平衡较高的压力梯度,需要一系列的咽鼓管开口,而不是在更长的时间内打开导管。本文是名为“ MEMRO 2012”的特刊的一部分。

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