支气管镜检查时因出血性气管破裂致阻塞性纤维性气管假膜死亡病例:多模式尸检影像病例报告。

IF 2.3 3区 医学 Q1 MEDICINE, LEGAL
Xin Zhao, Zhiming Chen, Bo Wang, Hongyang Li, Liyao Yang, Hang Mu, Weilong Chen, Chaopeng Yang, Guanglong He, Hongshi Cao
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引用次数: 0

摘要

阻塞性纤维性气管假膜(OFTP)是一种罕见但潜在致命的疾病,其特征是形成一种富含纤维蛋白的膜,阻塞气道。我们报告一例16岁的女孩谁死于窒息,因为大出血导致部分脱落的OFTP和气管壁破裂,在刚性支气管镜检查过程中。通过死后磁共振成像(PMMR)、死后计算机断层扫描(PMCT)和局部颈部尸检证实了OFTP的诊断。本病例强调了短期气管插管后接受支气管镜检查的患者考虑OFTP的重要性。它还强调了OFTP带来的诊断挑战,并展示了多模式尸检成像的法医价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fatal case of obstructive fibrinous tracheal pseudomembrane caused by hemorrhagic tracheal rupture during bronchoscopy: a multimodal post-mortem imaging case report.

Obstructive fibrinous tracheal pseudomembrane (OFTP) is a rare but potentially fatal condition characterized by the formation of a fibrin-rich membrane that occludes the airway. We report a case of a 16-year-old girl who died of asphyxia because of massive hemorrhage resulting from partial detachment of an OFTP and tracheal wall rupture during a rigid bronchoscopy procedure. The diagnosis of OFTP was confirmed through post-mortem magnetic resonance imaging (PMMR), post-mortem computed tomography (PMCT), and regional neck autopsy. This case underscores the importance of considering OFTP in patients undergoing bronchoscopy after short-term endotracheal intubation. It also highlights the diagnostic challenges posed by OFTP and demonstrates the forensic value of multimodal post-mortem imaging.

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来源期刊
CiteScore
5.80
自引率
9.50%
发文量
165
审稿时长
1 months
期刊介绍: The International Journal of Legal Medicine aims to improve the scientific resources used in the elucidation of crime and related forensic applications at a high level of evidential proof. The journal offers review articles tracing development in specific areas, with up-to-date analysis; original articles discussing significant recent research results; case reports describing interesting and exceptional examples; population data; letters to the editors; and technical notes, which appear in a section originally created for rapid publication of data in the dynamic field of DNA analysis.
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