ID | 117243 |
Author |
Sato, Masaaki
The University of Tokyo
Kobayashi, Masashi
Tokyo Medical and Dental University
Sakamoto, Jin
Shimane Prefectural Central Hospital
Fukai, Ryuta
Shonan Kamakura General Hospital
Takizawa, Hiromitsu
Tokushima University
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Shinohara, Shinji
University of Occupational and Environmental Health
Kojima, Fumitsugu
St Luke’s International Hospital
Sakurada, Akira
Tohoku University
Nakajima, Jun
The University of Tokyo
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Keywords | localization
lung cancer
margin
metastatic lung tumor
segmentectomy
wedge resection
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Content Type |
Journal Article
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Description | Objectives: Virtual-assisted lung mapping 2.0 is a novel preoperative bronchoscopic lung mapping technique combining the multiple dye marks of conventional virtual-assisted lung mapping with intrabronchial microcoils to navigate thoracoscopic deep lung resection. This study's purpose was to evaluate the feasibility of virtual-assisted lung mapping 2.0 in resecting deeply located pulmonary nodules with adequate margins.
Methods: A multicenter, prospective single-arm study was performed from 2019 to 2020 in 8 institutions. The selection criteria were barely identifiable nodules requiring sublobar lung resections, nodules requiring resection lines reaching the inner 2/3 of the pulmonary lobe on computed tomography images in wedge resection, or the nodule center located in the inner 2/3 of the pulmonary lobe in wedge resection or segmentectomy. Resection margins larger than 2 cm or the nodule diameter were considered successful resection. Bronchoscopic placement of multiple dye marks and microcoil(s) was conducted 0 to 2 days before surgery. Results: We analyzed 65 lesions in 64 patients. The diameter and depth of the targeted nodules and the minimum required resection depth reported as median (interquartile range) were 9 (7-13) mm, 11 (5-15) mm, and 30 (25-35) mm, respectively. Among 60 wedge resections and 5 segmentectomies, successful resection was achieved in 64 of 65 resections (98.5%; 95% confidence interval, 91.7-100). Among 75 microcoils placed, 3 showed major displacement after bronchoscopic placement. There were no severe adverse events associated with the virtual-assisted lung mapping procedure. Conclusions: This study demonstrated that virtual-assisted lung mapping 2.0 can facilitate successful resections for deep pulmonary nodules, overcoming the limitations of conventional virtual-assisted lung mapping. |
Journal Title |
The Journal of Thoracic and Cardiovascular Surgery
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ISSN | 00225223
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NCID | AA00708316
AA11543466
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Publisher | The American Association for Thoracic Surgery|Elsevier
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Volume | 164
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Issue | 1
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Start Page | 243
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End Page | 251
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Published Date | 2021-09-17
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Rights | This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
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language |
eng
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Publisher
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departments |
Medical Sciences
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