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Upper Esophageal Sphincter Opening Segmentation With Convolutional Recurrent Neural Networks in High Resolution Cervical Auscultation

机译:高分辨率宫颈听诊中卷积复制神经网络的上食管括约肌开度分割

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摘要

Upper esophageal sphincter is an important anatomical landmark of the swallowing process commonly observed through the kinematic analysis of radiographic examinations that are vulnerable to subjectivity and clinical feasibility issues. Acting as the doorway of esophagus, upper esophageal sphincter allows the transition of ingested materials from pharyngeal into esophageal stages of swallowing and a reduced duration of opening can lead to penetration/aspiration and/or pharyngeal residue. Therefore, in this study we consider a non-invasive high resolution cervical auscultation-based screening tool to approximate the human ratings of upper esophageal sphincter opening and closure. Swallows were collected from 116 patients and a deep neural network was trained to produce a mask that demarcates the duration of upper esophageal sphincter opening. The proposed method achieved more than 90% accuracy and similar values of sensitivity and specificity when compared to human ratings even when tested over swallows from an independent clinical experiment. Moreover, the predicted opening and closure moments surprisingly fell within an inter-human comparable error of their human rated counterparts which demonstrates the clinical significance of high resolution cervical auscultation in replacing ionizing radiation-based evaluation of swallowing kinematics.
机译:上部食管括约肌是通过易受主观性和临床可行性问题的放射线检查的运动学分析,通常观察到吞咽过程的重要解剖标记。作为食道的门口,上食管括约肌允许从咽部咽部咽部的摄入材料转变为吞咽的食管阶段,并且降低的开口持续时间可以导致渗透/抽吸和/或咽残留物。因此,在本研究中,我们考虑一种非侵入性高分辨率宫颈听诊的筛选工具,以近似上食管括约肌开口和闭合的人称评级。从116名患者中收集吞咽,培训深度神经网络,以产生蒙脱薄膜的面膜,占据上食管括约肌开口的持续时间。与人类评级相比,所提出的方法达到了超过90%的精度和比例的敏感性和特异性,即使在从独立的临床实验中测试过量的燕子。此外,预测的开放和封闭力矩令人惊讶地落入其人为额定对应物的人类间同学误差内,这证明了高分辨率宫颈听诊在替代吞咽运动学的电离辐射评估方面的临床意义。

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