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Design and clinical results from a fibre optic manometry catheter foroesophageal motility studies

机译:光纤测压导管进行食管运动性研究的设计和临床结果

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We report the design and operation of an optical fibre manometry catheter for measuring variation in pressure in the oesophagus during peristalsis. Catheters of this kind are used to help diagnose oesophageal disorders by recording the muscular contractions of the oesophageal wall in patients having difficulty swallowing. Traditional oesophageal catheters consist of an array of recording sites enabling pressure measurement from multiple locations along the the oesophagus. However, these catheters tend to be bulky or complex to operate whereas our optical equivalent uses a series of Fibre Bragg Grating (FBG) pressure sensors on a single fibre; significantly reducing complexity and allowing the catheter diameter to be minimised. The data from each FBG was recorded using a solid state spectrometer in which the reflected peaks each covered a number of pixels of the spectrometer. This has enabled the FBG peaks to be tracked in wavelength with sub-nanometre precision resulting in pressure sensitivities of less than lmmHg. Results from a clinical trial carried out on 10 healthy subjects will be presented. For the trial, each subject was simultaneously intubated with the optical catheter and a commercially available solid-state catheter. Back-to-back readings were taken from both devices during a series of controlled water swallows. Ten swallows were recorded with the catheters sensors positioned in proximal, mid, and distal regions of the oesophagus and the data analysed statistically. The fibre optic device accurately picked up the dynamic variations in pressure, and can react at least as fast as the solid state device.
机译:我们报告了用于测量蠕动过程中食管压力变化的光纤测压导管的设计和操作。这种导管通过记录吞咽困难患者的食道壁肌肉收缩来帮助诊断食道疾病。传统的食道导管由一系列记录位点组成,可以从沿食道的多个位置进行压力测量。但是,这些导管操作起来往往笨重或复杂,而我们的光学等效设备在单根光纤上使用了一系列光纤布拉格光栅(FBG)压力传感器。大大降低了复杂性,并使导管直径最小化。使用固态光谱仪记录每个FBG的数据,其中每个反射峰均覆盖光谱仪的多个像素。这使得能够以亚纳米级的精度在波长上跟踪FBG峰,从而导致压力灵敏度小于1mmHg。将介绍针对10位健康受试者的临床试验结果。为了进行试验,每个受试者都同时插入了光学导管和市售的固态导管。在一系列受控吞水期间,从这两个设备获得背对背读数。记录十只吞咽的情况,将导管传感器放置在食道的近端,中间和远端区域,并对数据进行统计分析。光纤设备可以准确地记录压力的动态变化,并且可以至少与固态设备一样快地做出反应。

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