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喉气管轮廓:一种评估喉气管狭窄的新方法。

Laryngo-tracheal profile: a new method for assessing laryngo-tracheal stenoses.

作者信息

Kiesler Karl, Gugatschka Markus, Sorantin Erich, Friedrich Gerhard

机构信息

Ear, Nose and Throat University Hospital, Department of Phoniatrics, Speech and Swallowing, Medical University of Graz, Auenbruggerplatz 26-28, 8036, Graz, Austria.

出版信息

Eur Arch Otorhinolaryngol. 2007 Mar;264(3):251-6. doi: 10.1007/s00405-006-0178-8. Epub 2006 Oct 10.

Abstract

We present the clinical application of a new method for objective assessment of both grade and length of laryngo-tracheal stenoses (LTS) on a CT-based skeletonization algorithm, called laryngo-tracheal profile (LTP). Extraction of the laryngo-tracheal tract (LTT)-medial axis was performed after S-CT scanning. Orthogonal to the medial axis, the LTT cross-profile was computed, and the length and degree of LTS were presented as line charts. Clinical application of this newly developed method is demonstrated on three patients who had to undergo preoperative assessment before surgical treatment of tracheal stenoses. LTP provides an objective method of assessment of both the length and degree of tracheal stenoses in precise correlation to defined anatomical landmarks. This method provides important additive information for preoperative evaluation as well as for monitoring of therapeutical success. Current methods used so far are able to evaluate the severity of LTS, but do not provide exact quantitative assessment of complex LTS. Especially in CT-scans of strong curved passages, where an overestimation of the cross-sectional area results by an oblique cut of the tubular structure, LTP may overcome this problem by a simple post processing skeletonization algorithm.

摘要

我们介绍了一种基于CT的骨骼化算法——喉气管轮廓(LTP),用于客观评估喉气管狭窄(LTS)的分级和长度的新方法的临床应用。在螺旋CT扫描后进行喉气管通道(LTT)中轴线的提取。与中轴线正交,计算LTT横断面轮廓,并将LTS的长度和程度以折线图形式呈现。在三名因气管狭窄需接受手术治疗而必须进行术前评估的患者身上展示了这种新开发方法的临床应用。LTP提供了一种客观的评估方法,可精确关联到已定义的解剖标志,评估气管狭窄的长度和程度。该方法为术前评估以及治疗效果监测提供了重要的补充信息。目前使用的方法能够评估LTS的严重程度,但无法对复杂的LTS进行精确的定量评估。特别是在强弯曲通道的CT扫描中,由于管状结构的斜切会导致横截面积高估,LTP可能通过简单的后处理骨骼化算法克服这一问题。

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