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A novel system using the Forced Oscillations Technique for the biomechanical analysis of swallowing

机译:使用强迫振荡技术的新型系统,用于吞咽的生物力学分析

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Physiological studies of swallowing and the diagnosis and treatment of dysphagia are crucially dependent of detailed information of respiratory and feeding events. However, this information has been obtained by indirect and/or expensive methods, as well as by methods demanding exposure to radiation. In this context, the purpose of this study was twofold: (1) describe a new low-cost system for the analysis of the respiratory events during swallowing using the Forced Oscillation Technique and (2) evaluate the performance of this device in the description of physiological events during water swallowing. The device consists of a personal computer adapted to measurement modules able to characterize the soft palate movement, the elevation of the larynx, the duration of deglutition apnoea, and the direction of airflow at the end of the swallow apnoea. These parameters were studied in eight healthy subjects under conditions of saliva swallowing and three doses of water (5,10 and 20 mL). The system allowed a real time description of the respiratory and feeding events, which were in close agreement with physiological principles. Mean results showed an increase of the apnoea time that was not statistically significant. In contrast, a highly significant increase of respiratory impedance during swallowing was observed (p < 0.0001). The described instrument does not use radiation. It shows itself particularly well suited for studies of deglutition physiology, including mechanisms involved in airway protection during swallowing. It can also be potentially useful contributing to easy clinical bedside evaluations and biofeedback procedures for the rehabilitation of paediatric and elderly patients.
机译:吞咽的生理研究以及吞咽困难的诊断和治疗在很大程度上取决于呼吸和进食事件的详细信息。但是,已经通过间接和/或昂贵的方法以及需要暴露于辐射的方法获得了该信息。在这种情况下,本研究的目的是双重的:(1)描述一种新的低成本系统,用于使用强迫振荡技术分析吞咽过程中的呼吸事件;(2)在描述以下内容时评估该设备的性能:吞咽过程中的生理事件。该设备包括一台适合于测量模块的个人计算机,该测量模块能够表征软pa运动,喉部抬高,胶凝性呼吸暂停的持续时间以及吞咽性呼吸暂停结束时的气流方向。在八名健康受试者的唾液吞咽和三剂水(5,10和20 mL)的条件下研究了这些参数。该系统可以实时描述呼吸和进食事件,这与生理原理非常吻合。平均结果显示呼吸暂停时间增加,但无统计学意义。相反,在吞咽过程中观察到呼吸阻抗的显着增加(p <0.0001)。所描述的仪器不使用辐射。它显示了自己特别适合研究脱水生理,包括吞咽期间保护气道的机制。它也可能有助于简化临床床边评估和生物反馈程序,以改善小儿和老年患者的康复。

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