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支气管内光学相干断层扫描用于小气道测量的效度

作者:高翠歌 编译 来源:金宝搏网站登录技巧 日期:2016-05-22
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         支气管内光学相干断层扫描用于小气道测量的效度

Validation of human small airway measurements using endobronchial optical coherence tomography

Yu Chen1, Ming Ding1, Wei-jie Guan1, Wei Wang, Wei-zhan Luo, Chang-hao Zhong, Mei Jiang, Ju-hong Jiang, Ying-ying Gu, Shi-yue Lie, Nan-shan Zhonge

1These authors contributed equally to the study.

Background

 

Small airway remodeling is the cardinal feature underlying chronic airway diseases. There is no modality which identifies small airway pathological changes, which is crucial for early diagnosis, efficacy and prognostic assessment.

Objective

 

To evaluate the usefulness of endobronchial optical coherence tomography (EB-OCT) in assessing small airways morphology in vivo.

Methods

 

Twelve patients with pulmonary nodules scheduled for lung resection underwent spirometry, multi-detector computed tomography (MDCT) and EB-OCT. We measured Dmean (mean luminal diameter), Ai (inner luminal area), Aw (airway wall area) and Aw% [Aw/(Ai + Aw) × 100%] from the 3rd to 5th generation bronchi of RB9 segment by MDCT. Dmean, Ai, Aw and Aw% from the 3rd to 9th generation bronchi of RB9 segment were measured by EB-OCT and histology. Correlations of these parameters, measured by three different methods, were evaluated. We recruited 4 COPD patients to determine if EB-OCT could identify peripheral airway remodeling.

Results

 

The 4 parameters, measured by CT and EB-OCT, correlated significantly [Dmean (r = 0.991), Ai (r = 0.997), Aw (r = 0.997), Aw% (r = 0.991), all P < 0.01]. Significant correlation were found for these parameters, measured by histology and EB-OCT, from the 3rd to 5th generation bronchi [Dmean (r = 0.989), Ai (r = 0.997), Aw (r = 0.999), Aw% (r = 0.988), all P < 0.01], and from the 6th to 9th generation bronchi [Dmean (r = 0.979), Ai (r = 0.997), Aw (r = 0.994) and Aw% (r = 0.988), all P < 0.01]. Significant small airways morphological abnormalities were observed in COPD patients.

Conclusions

 

EB-OCT, a minimally invasive imaging modality with high-resolution, is useful and clinically practical for assessing proximal and distal airways of human compared with CT and histology.

respiratory medicine

November 2015Volume 109, Issue 11, Pages 1446–1453

DOI: http://dx.doi.org/10.1016/j.rmed.2015.09.006 |

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