Two-dimensonal and 3-dimensional optical coherence tomographic imaging of the airway, lung, and pleura

被引:98
作者
Hanna, N
Saltzman, D
Mukai, D
Chen, Z
Sasse, S
Milliken, J
Guo, S
Jung, W
Colt, H
Brenner, M
机构
[1] UC Irvine Med Ctr, Div Pulm & Crit Care, Orange, CA 92868 USA
[2] Univ Calif Irvine, Beckman Laser Inst, Irvine, CA USA
[3] Vet Adm Med Ctr, Long Beach, CA 90822 USA
关键词
D O I
10.1016/j.jtcvs.2004.10.022
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background: Methods for obtainingreal-time in vivo histologic resolution by means of noninvasive endoscopic optical imaging would be a major advance for thoracic surgical diagnostics and treatment. Optical coherence tomography is a rapidly evolving technology based on near-infrared interferometry that might provide these capabilities. The purpose of this study is to investigate the feasibility of real-time 2-and 3-dimensional optical coherence tomographic imaging of airway, pleural, and subpleural lung tissues in normal, inflammatory, and malignant animal models and patients with known or suspected airway malignancy. Methods: Freshly excised lungs and pleural tissue obtained from rabbits with inhalation lung injury and induced empyema, metastatic sarcomas, and pleural sarcomas and from patients with airway disease were imaged by using 2- and 3-dimensional optical coherence tomography with a prototype superluminescent diode optical coherence tomographic system constructed in our laboratory. Lungs and pleural tissue were Subsequently processed for standard hematoxylin and eosin histology for comparison with optical coherence tomography. Results: Optical coherence tomographic imaging achieved all ex vivo resolution of 10 mum and an in vivo resolution of about 30 mum with a depth penetration of 1 to 2 mm with 2- and 3- dimensional reconstruction capabilities. Tumors as small as 500 Am were detectable with optical coherence tomography. The acquired images closely matched histologic images, demonstrating details at the level of mucosal layers, glands, alveoli, and respiratory bronchioles. Conclusions: Optical coherence tomography with near-infrared interferometric methods enables near real-time in vivo near-histologic resolution optical imaging. With further advances, optical coherence tomography has the potential for real-time accurate and early pleural and subpleural diagnostics by using small-diameter flexible fiberoptic endoscopic probes for a wide range of thoracic surgical applications.
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页码:615 / 622
页数:8
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