Borangiu A, Popescu C R, Purcarea V L
"Carol Davila" University of Medicine and Pharmacy, Bucharest, "M.S. Curie" Clinical Hospital.
"Carol Davila" University of Medicine and Pharmacy, Bucharest, "Coltea" Clinical Hospital.
J Med Life. 2014 Oct-Dec;7(4):604-10.
From the three Eustachian tube (ET) functions: middle ear protection, secretion clearance and middle ear ventilation, the ventilatory function is unanimously considered the most important one, because proper hearing is established only when tympanic membrane compliance is normal. This requires equilibrium between the middle ear and ambient gas pressure, which makes the normal functioning of active ET opening of critical importance. There are several methods and tests that can assess such a complex and variable mechanism. Sonotubometry is one such method; despite the fact that it has been continuously improved in the last 20 years, it is not yet systematically used to evaluate the ET ventilatory function, because its measurement pattern, context mapping (patient, clinic data, medication, treatment), validation, reproducibility and value for clinic practice, have not yet been fully consolidated and integrated in a knowledge-based, service-oriented system, that can provide decision support or even diagnostic. The paper reviews the role of tubal sonometry as a non-invasive, physiologic and easy to use method in assessing the ventilatory function and investigates the validity and reproducibility of a measuring pattern and test in a group of children. The paper describes the test pattern used, and the computer-based platform based on: (1) Digital Signal Processing (DSP) for sound acquisition and low-level processing; (2) Artificial Intelligence techniques to extract significant sound features from sonotubograms and learn a manifold context database. Results are reported from test series carried out in healthy children; a similar study between tests is included in the final Discussions section.
中耳保护、分泌物清除和中耳通气,通气功能被一致认为是最重要的,因为只有当鼓膜顺应性正常时才能建立正常听力。这需要中耳与外界气压保持平衡,这使得咽鼓管主动开放的正常功能至关重要。有几种方法和测试可以评估这种复杂多变的机制。声管测量法就是其中一种方法;尽管在过去20年里它不断得到改进,但尚未被系统地用于评估咽鼓管通气功能,因为其测量模式、情境映射(患者、临床数据、药物、治疗)、验证、可重复性以及对临床实践的价值,尚未在一个基于知识、面向服务的系统中得到充分整合,该系统能够提供决策支持甚至诊断。本文综述了声管测量法作为一种无创、生理性且易于使用的方法在评估通气功能中的作用,并研究了一组儿童测量模式和测试的有效性及可重复性。本文描述了所使用的测试模式以及基于以下内容的计算机平台:(1)用于声音采集和低级处理的数字信号处理(DSP);(2)从声管图中提取重要声音特征并学习多方面情境数据库的人工智能技术。报告了在健康儿童中进行的测试系列结果;测试之间的类似研究包含在最后的讨论部分。