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Acoustic rhinometry and paranasal cavities: a systematic study in box models.

机译:声学流变法和鼻旁腔:在盒模型中的系统研究。

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OBJECTIVE/HYPOTHESIS: Acoustic rhinometry (AR) is a well-established diagnostic tool in rhinology. The aim of the study was to test the hypothesis that the paranasal sinuses are a main cause for inaccuracy of AR in the posterior part of the nose. STUDY DESIGN: Experimental study to evaluate the influence of simulated paranasal sinus volume and of the contralateral side of the nose on AR measurements in "box models." METHODS: Models were measured with paranasal sinus volume simulated between 0 and 25 mL and with the junction between the models and the paranasal sinuses varying in length and diameter. RESULTS: Moderate but distinct modification of the posterior area-distance curve was found within the models after changing size of the paranasal sinuses and its junction to the cavity. The apparent cross-sectional area (CSA) measured in the posterior cavum decreased with the volume of the paranasal sinuses. This effect was limited by the length and the diameter of the paranasal junction, as well as by the concha. No influence of the contralateral side on AR measurements was seen. CONCLUSIONS: Acoustic rhinometry reveals reproducible measurements up to 4 cm from the nostril that correspond with the actual model CSA. Simulated paranasal sinuses appear to partially contribute to the inaccuracy in the posterior part of the area-distance curve.
机译:目的/假设:声学流变测定法(AR)是流变学中公认的诊断工具。该研究的目的是检验以下假说:鼻旁窦是鼻后部AR不准确的主要原因。研究设计:实验研究,以评估模拟的鼻旁窦容积和鼻子对侧对“盒子模型”中AR测量的影响。方法:用在0至25mL之间模拟的鼻旁窦体积以及在模型和鼻旁窦之间的连接处的长度和直径变化来测量模型。结果:在改变鼻旁窦的大小及其与腔的交界处后,在模型中发现了后面积-距离曲线的适度但明显的改变。在后腔中测量的表观横截面积(CSA)随鼻旁窦的体积而减小。这种作用受鼻旁连接的长度和直径以及外耳的限制。没有看到对侧对AR测量的影响。结论:声学流变法显示距鼻孔4 cm处可重复的测量结果,与实际CSA模型相对应。模拟的鼻旁窦似乎部分导致面积-距离曲线后部的不准确。

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