This is a very safe and beneficial clinical study. We hope to obtain near-real airway anatomical parameters of patients before surgery through airway three-dimensional reconstruction technology, to assist anesthesiologists in matching the most suitable double-lumen bronchial tube size for each patient, thereby reducing the rate of intubation failure and the occurrence of perioperative adverse events to a certain extent.
Inclusion Criteria:
Exclusion Criteria:
3D-printed Reconstruction Automated Matching System Predicts Size of Double-lumen Tube: a Prospective Double-blinded Randomized Controlled Trial
Effect of 3D-printed Reconstruction System in Size of Left DLT
Video Double-Lumen Tube for Secondary Pulmonary Resection
Single-lumen Endotracheal Intubation in ENB-guided Localization and Resection of Pulmonary Nodules
Effect of Small Double-lumen Tube on the Intubation Time of Thoracoscopic Pulmonectomy in Asian Women
Comparisons of Novel Double-lumen Endobronchial Tube for Blind Lung Isolation Technique With Conventional Double-lumen Endobronchial Tube in Patients Undergoing One-lung Ventilation
Placement of the Double-Lumen Tube Without Fiberoptic Bronchoscope Assistance
Measurement of Tracheobronchial Tree Using 3D CT