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Balloon sensors for the manometric recording of the pharyngoesophageal tract: an experimental study.

机译:用于咽部测量的气球传感器,咽咽道:实验研究。

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The goal of our study was to investigate manometric balloon sensors of original conception in order to overcome the limitations of perfused and solid-state sensors in the assessment of the pharyngoesophageal motility abnormalities. A standard perfused probe for esophageal manometry was modified by applying fluid-filled floppy balloons 0.5-, 1-, and 2.5-cm long. The balloon sensor probe was tested at the bench with regard to the response to the applied pressures, the frequency-response curve, and the behavior during propagation of the peristaltic waves in an esophageal model. The physical properties of the balloon sensors proved to be adequate for pharyngoesophageal motility studies. The static response of the balloon probe to the applied pressures was linear. For the frequency-response curve, the upper cutoff frequency (A=1/square root of 2) was 23 Hz, resonance frequency was 16 Hz, and resonance amplification was 1.6. No statistically significant differences were observed between balloon sensors of different length with regard to amplitude and duration of recorded peristaltic waves (p>0.05). In conclusion, the balloon probe has the physical and technical characteristics required for the study of swallowing disorders.
机译:我们研究的目标是调查原始概念的测量气球传感器,以克服灌注和固态传感器的局限性在评估咽部运动异常的评估中。通过施加流体填充的软盘0.5-,1-和2.5厘米长,改变了用于食管体测压的标准灌注探针。在对施加的压力,频率响应曲线的响应方面,在稳定性期间的响应,在稳定性波动期间进行响应,在稳定性中的响应中测试气球传感器探针。气球传感器的物理性质被证明是适当用于咽咽的运动性研究。球囊探针对所施加压力的静态响应是线性的。对于频率响应曲线,上部截止频率(A = 1 /平方根为2)为23Hz,共振频率为16Hz,共振放大为1.6。在不同长度的球囊传感器方面没有观察到记录蠕动波的幅度和持续时间(P> 0.05)之间没有观察到统计学上显着的差异。总之,气球探针具有研究吞咽障碍所需的物理和技术特征。

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