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首页> 外文期刊>Physiological measurement >Catheter-based acoustic interrogation device for real-time monitoring of the dynamics of the lower esophageal sphincter: in vitro and pilot canine studies
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Catheter-based acoustic interrogation device for real-time monitoring of the dynamics of the lower esophageal sphincter: in vitro and pilot canine studies

机译:基于导管的声学询问装置,用于实时监测食管下括约肌的动态:体外和中试犬研究

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This paper presents a novel minimally-invasive catheter-based acoustic interrogation device for real-time monitoring the dynamics of the lower esophageal sphincter (LES). Dysfunction of the LES could result gastrointestinal (GI) diseases, such as gastroesophageal reflux disease (GERD). A micro-oscillator actively emitting sound wave at 16 kHz is located at one side of the LES, and a miniature microphone is located at the other side of the LES to capture the sound generated from the oscillator. Thus, the dynamics of the opening and closing of the LES can be monitored. The device was tested in vitro by utilizing a custom-designed LES simulator, as well as in vivo in a pilot canine model. In the in vitro test, the sound was captured by the microphone and its strength was correlated with the level of LES opening and closing which was controlled by the simulator. The measurements showed statistically significant (p < 0.05) Pearson correlation coefficients (0.905 on the average in quiet environment and 0.736 on the average in noisy environment, DOF = 9). In the in vivo test, the LES was forced open and closed by a transoral endoscope, which was monitored in real-time by a transpyloric endoscope inserted from the duodenum and positioned into the distal stomach. Frame-by-frame video analysis validated the interrelation between the sound strength and the LES opening and closing. The LES dynamics monitored by the proposed device has the potential to become a valuable minimally-invasive technique for understanding LES dysfunction.
机译:本文提出了一种新颖的基于微创导管的声学询问装置,用于实时监测下食管括约肌(LES)的动态。 LES的功能障碍可能导致胃肠道疾病(GI),例如胃食管反流病(GERD)。主动发射16 kHz声波的微振荡器位于LES的一侧,微型麦克风位于LES的另一侧,以捕获振荡器产生的声音。因此,可以监测LES的打开和关闭的动态。通过使用定制设计的LES模拟器对设备进行了体外测试,以及在试验犬模型中进行了体内测试。在体外测试中,声音被麦克风捕获,其强度与由模拟器控制的LES打开和关闭的水平相关。测量结果显示出统计学上显着的(p <0.05)皮尔逊相关系数(安静环境中的平均值为0.905,嘈杂环境中的平均值为0.736,DOF = 9)。在体内测试中,LES被经口内窥镜强行打开和关闭,这由经十二指肠插入并置于远端胃中的经幽门内窥镜实时监测。逐帧视频分析验证了声音强度与LES打开和关闭之间的相互关系。拟议的设备监测的LES动力学有可能成为了解LES功能障碍的有价值的微创技术。

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