Related Experiment Video
Updated: Aug 9, 2026

Optimized Workflow for Iterative Bleaching Extends Multiplexity Imaging of Highly Autofluorescent Clinical Samples
Published on: July 11, 2025
Fluorescein-enhanced autofluorescence thoracoscopy in patients with primary spontaneous pneumothorax and normal
Marc Noppen1, Tom Dekeukeleire, Shane Hanon
1Interventional Endoscopy Clinic and Respiratory Division, and Anaesthesiology Department, University Hospital, Brussels, Belgium. marc.noppen@az.vub.ac.be
Rationale:
The exact site(s) and pathophysiology of air leakage in patients with primary spontaneous pneumothorax (PSP) are unknown. In one patient with PSP, fluorescein-enhanced autofluorescence thoracoscopy (FEAT) has shown areas of parenchymal abnormality unnoticed during white light thoracoscopy (WLT).
Objectives:
To prospectively perform and compare WLT and FEAT in patients with spontaneous pneumothorax and in normal subjects.
Methods:
One-time FEAT and WLT inspection with systematic mapping of semiquantified lesions in 12 consecutive patients with PSP was compared with one-time FEAT and WLT during sequential bilateral thoracoscopy in 17 control subjects.
Results:
WLT abnormalities (anthracosis, cobblestone malformation, and blebs/bullae) were more prevalent in PSP. FEAT, however, showed high-grade lesions in PSP only, which often were present at areas that were normal, or that only showed anthracosis at WLT. When blebs/bullae were present, bleb-associated FEAT abnormalities were only present in two. Actual fluorescein leakage was seen in two patients with PSP.
Conclusions:
Lungs in patients with PSP show significantly more abnormalities at WLT when compared with normal subjects. High-grade FEAT lesions were exclusively present in PSP, and predominantly at lung zones that appeared normal at white light inspection. These findings suggest that significant parenchymal abnormalities are not limited to lesions visible during WLT, such as blebs and bullae.
More Related Videos
09:28Intravital Widefield Fluorescence Microscopy of Pulmonary Microcirculation in Experimental Acute Lung Injury Using a Vacuum-Stabilized Imaging System
Published on: April 6, 2022
12:54Simultaneous Brightfield, Fluorescence, and Optical Coherence Tomographic Imaging of Contracting Cardiac Trabeculae Ex Vivo
Published on: October 2, 2021