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COMPLETED
NCT07257549
NA

Real-Time Non-Invasive Localization for Multiple Lung Nodules

Sponsor: The First Affiliated Hospital of Guangzhou Medical University

View on ClinicalTrials.gov

Summary

This study compares real-time non-invasive localization and manual CT-guided needle localization for multiple lung nodules under 20 mm. It primarily aims to evaluate the successful resection rate of pulmonary nodules.

Official title: Effectiveness of Real-time Non-invasive Localization for Multiple Lung Nodules: a Pilot, Prospective, Randomized Clinical Trial

Key Details

Gender

All

Age Range

18 Years - 75 Years

Study Type

INTERVENTIONAL

Enrollment

120

Start Date

2024-07-01

Completion Date

2025-07-01

Last Updated

2026-09-10

Healthy Volunteers

No

Interventions

PROCEDURE

Manual needle localization

Manual needle localization involves the traditional technique of percutaneous localization of pulmonary nodules under CT guidance. The procedure is performed by the physician manually guiding the needle based on real-time CT imaging. The physician adjusts the needle position based on visual cues from the CT scan, which may require multiple attempts for accurate localization. After confirming the needle tip's proximity to the target nodule, indocyanine green (ICG) was injected during deep inspiration to mark the nodule for intraoperative fluorescence imaging. The thoracic surgeon completed resection of the pulmonary nodule based on the area delineated by ICG.

PROCEDURE

Real-time non-invasive localization

The patient underwent a CT scan prior to surgery. The acquired CT image data was saved in DICOM format and subsequently imported into software for three-dimensional reconstruction of the lung lobes, blood vessels, and bronchi. During the procedure, an assistant created a three-dimensional lung model on a separate monitor, aligning it roughly with the orientation of the deflated lung observed via thoracoscopy. The thoracic surgeon then completed resection of the pulmonary nodule guided by the surgeon's three-dimensional lung model.

Locations (1)

The First Affiliated of Guangzhou Medical University

Guangzhou, Guangdong, China