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使用动态320排区域探测器计算机断层扫描技术观察头部旋转时吞咽的动力学。

The dynamics of deglutition during head rotation using dynamic 320-row area detector computed tomography.

作者信息

Kochi Kazutaka, Sei Hirofumi, Tanabe Yuki, Yasuda Kazunori, Kido Teruhito, Yamada Hiroyuki, Taguchi Aki, Hato Naohito

机构信息

Department of Otolaryngology, Head and Neck Surgery Ehime University School of Medicine Toon City Japan.

Department of Otolaryngology, Head and Neck Surgery Ehime Prefectural Central Hospital Matsuyama Ehime Japan.

出版信息

Laryngoscope Investig Otolaryngol. 2023 May 25;8(3):746-753. doi: 10.1002/lio2.1082. eCollection 2023 Jun.

Abstract

OBJECTIVE

We aimed to elucidate the dynamics of deglutition during head rotation by acquiring 320-row area detector computed tomography (320-ADCT) images and analyzing deglutition during head rotation.

METHODS

This study included 11 patients experiencing globus pharyngeus. A 320-ADCT was used to acquire images in two types of viscosity (thin and thick), with the head rotated to the left. We measured the movement time of deglutition-related organs (soft palate, epiglottis, upper esophageal sphincter [UES], and true vocal cords) and pharyngeal volume (bolus ratio at the start of UES opening [Bolus ratio], pharyngeal volume contraction ratio [PVCR], and pharyngeal volume before swallowing [PVBS]). A two-way analysis of variance was performed for statistical analysis, and all items were compared for significant differences in terms of head rotation and viscosity. EZR was used for all statistical analyses (-value <.05).

RESULTS

Head rotation significantly accelerated the onset of epiglottis inversion and UES opening compared with no head rotation. The duration of epiglottis inversion with the thin viscosity fluid was significantly longer. The bolus ratio increased significantly with thick viscosity. There was no significant difference in viscosity and head rotation in terms of PVCR. PVBS increased significantly with head rotation.

CONCLUSION

The significantly earlier start of epiglottis inversion and UES opening due to head rotation could be caused by: (1) swallowing center; (2) pharyngeal volume; and (3) pharyngeal contraction force. Thus, we plan to further analyze swallowing with head rotation by combining swallowing CT with manometry and examine its relationship with pharyngeal contraction force.

LEVEL OF EVIDENCE

3b.

摘要

目的

通过获取320排区域探测器计算机断层扫描(320 - ADCT)图像并分析头部旋转时的吞咽情况,阐明头部旋转过程中吞咽的动态变化。

方法

本研究纳入了11例患有咽异感症的患者。使用320 - ADCT在两种粘度(稀和稠)下获取图像,头部向左旋转。我们测量了吞咽相关器官(软腭、会厌、食管上括约肌[UES]和真声带)的运动时间以及咽部容积(UES开始开放时的食团比例[食团比例]、咽部容积收缩率[PVCR]和吞咽前咽部容积[PVBS])。进行双向方差分析以进行统计分析,并比较所有项目在头部旋转和粘度方面的显著差异。所有统计分析均使用EZR(P值<.05)。

结果

与不进行头部旋转相比,头部旋转显著加速了会厌翻转和UES开放的起始时间。稀粘度液体时会厌翻转的持续时间显著更长。稠粘度时食团比例显著增加。在PVCR方面,粘度和头部旋转无显著差异。PVBS随头部旋转显著增加。

结论

头部旋转导致会厌翻转和UES开放显著提前开始可能是由以下原因引起的:(1)吞咽中枢;(2)咽部容积;(3)咽部收缩力。因此,我们计划通过将吞咽CT与测压法相结合,进一步分析头部旋转时的吞咽情况,并研究其与咽部收缩力的关系。

证据水平

3b。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e03/10278121/280f15c50dcd/LIO2-8-746-g005.jpg

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