A prospective randomized comparative study of three guided bronchoscopic approaches for investigating pulmonary nodules: The PRECISION-1 study Journal Article


Authors: Yarmus, L.; Akulian, J.; Wahidi, M.; Chen, A.; Steltz, J. P.; Solomon, S. L.; Yu, D.; Maldonado, F.; Cardenas-Garcia, J.; Molena, D.; Lee, H.; Vachani, A.; on behalf of the Interventional Pulmonary Outcomes Group (IPOG)
Article Title: A prospective randomized comparative study of three guided bronchoscopic approaches for investigating pulmonary nodules: The PRECISION-1 study
Abstract: Background: The capability of bronchoscopy in the diagnosis of peripheral pulmonary nodules (PPNs) remains limited. Despite decades of effort, evidence suggests that the diagnostic accuracy for electromagnetic navigational bronchoscopy (EMN) and radial endobronchial ultrasound (EBUS) approach only 50%. New developments in robotic bronchoscopy (RB) may offer improvements in the assessment of PPNs. Methods: A prospective single-blinded randomized controlled comparative study to assess success in localization and puncture of PPNs, using an ultrathin bronchoscope with radial EBUS (UTB-rEBUS) vs EMN vs RB in a human cadaver model of PPNs < 2 cm, was performed. The primary end point was the ability to successfully localize and puncture the target nodule, verified by cone-beam CT comparing RB and EMN. Secondary end points included needle to target position “miss” distance, and UTB-rEBUS comparisons. Results: Sixty procedures were performed to target 20 PPNs over the study period. Implanted PPNs were distributed across all lobes, with 80% located within the lung periphery. The target PPN mean diameter was 16.5 ± 1.5 mm, with 50% noted to have a CT bronchus sign. The rate of successful PPN localization and puncture was superior when using RB, compared with EMN (80% vs 45%; P =.02). Among unsuccessful needle passes, the median needle to target “miss” distance was significantly different when comparing UTB-rEBUS, EMN, and RB (P =.0014). Conclusions: In a cadaver model, use of RB significantly increased the ability to localize and successfully puncture small PPNs when compared with existing technologies. This study demonstrates the potential of RB to precisely reach, localize, and puncture small nodules in the periphery of the lung. © 2019 American College of Chest Physicians
Keywords: clinical article; controlled study; cancer localization; conference paper; prospective study; randomized controlled trial; lung cancer; cancer size; bronchoscopy; cone beam computed tomography; lung nodule; single blind procedure; peripheral lung lesion; endobronchial ultrasonography; human; priority journal; interventional bronchoscopy; navigational bronchoscopy; robotic bronchoscopy; electromagnetic navigational bronchoscopy
Journal Title: Chest
Volume: 157
Issue: 3
ISSN: 0012-3692
Publisher: American College of Chest Physicians  
Date Published: 2020-03-01
Start Page: 694
End Page: 701
Language: English
DOI: 10.1016/j.chest.2019.10.016
PUBMED: 31678307
PROVIDER: scopus
PMCID: PMC7534032
DOI/URL:
Notes: Conference Paper -- Export Date: 1 April 2020 -- Source: Scopus
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  1. Daniela   Molena
    271 Molena