Ventilation Scintigraphy With Radiolabeled Carbon Nanoparticulate Aerosol (Technegas)
Clinical Nuclear Medicine, vol. 48, pp. 8–17
Abstract
ABSTRACT: Invented and first approved for clinical use in Australia 36 years ago, Technegas is the technology that enabled ventilation scintigraphy with 99m Tc-labeled carbon nanoparticles ( 99m Tc-CNP). The US Food and Drug Administration (FDA) has considered this technology for more than 30 years but only now is getting close to approving it. Meanwhile, more than 4.4 million patients benefited from this technology in 64 countries worldwide. The primary application of 99m Tc-CNP ventilation imaging is the diagnostic evaluation for suspicion of pulmonary embolism using ventilation-perfusion quotient (V/Q) imaging. Because of 99m Tc-CNP's long pulmonary residence, tomographic imaging emerged as the preferred V/Q methodology. The FDA-approved ventilation imaging agents are primarily suitable for planar imaging, which is less sensitive. After the FDA approval of Technegas, the US practice will likely shift to tomographic V/Q. The 99m Tc-CNP use is of particular interest in the COVID-19 pandemic because it offers an option of a dry radioaerosol that takes approximately only 3 to 5 tidal breaths, allowing the shortest exposure to and contact with possibly infected patients. Indeed, countries where 99m Tc-CNP was approved for clinical use continued using it throughout the COVID-19 pandemic without known negative viral transmission consequences. Conversely, the ventilation imaging was halted in most US facilities from the beginning of the pandemic. This review is intended to familiarize the US clinical nuclear medicine community with the basic science of 99m Tc-CNP ventilation imaging and its clinical applications, including common artifacts and interpretation criteria for tomographic V/Q imaging for pulmonary embolism.
Authors 4
-
Pierre‐Yves Le Roux corresponding
Inserm · Centre Hospitalier Régional Universitaire de Brest
Affiliation as printed
INSERM (National Institute of Health and Medical Research) and Department of Nuclear Medicine, University Hospital of Brest, CHRU Brest, UMR 1304, GETBO, Brest, France
-
Affiliation as printed
Nuclear Medicine Clinic, Maria Hilf Hospital Inc, Academic Teaching Hospital of RWTH Aachen University, Moenchengladbach, Germany
-
Frédérique Blanc-Béguin corresponding
Inserm · Centre Hospitalier Régional Universitaire de Brest
Affiliation as printed
INSERM (National Institute of Health and Medical Research) and Department of Nuclear Medicine, University Hospital of Brest, CHRU Brest, UMR 1304, GETBO, Brest, France
-
Pennsylvania State University · Penn State Milton S. Hershey Medical Center
Affiliation as printed
Section of Nuclear Medicine, Department of Radiology, Penn State University Hospital, Hershey, PA
Cited by 11 stored of 11
11 results
No patents citing this paper on Lens.org (checked 2026-10-06).
References 89
-
W569291799details pending0citations
-
W1519202779details pending0citations
-
W1822422553details pending0citations
-
W1834276290details pending0citations
-
W1882823383details pending0citations
-
W1897046392details pending0citations
-
W1924581399details pending0citations
-
W1971724470details pending0citations
-
W1978272935details pending0citations
-
W1992419331details pending0citations
-
W1996933866details pending0citations
-
W2001140978details pending0citations
-
W2012161230details pending0citations
-
W2013970434details pending0citations
-
W2014865645details pending0citations
-
W2017975832details pending0citations
-
W2019871393details pending0citations
-
W2020866592details pending0citations
-
W2022243339details pending0citations
-
W2025775280details pending0citations