Solitary Pulmonary Nodule: Morphological Effects on Metabolic Activity Assessment

Journal Title: Molecular Imaging and Radionuclide Therapy - Year 2019, Vol 28, Issue 3

Abstract

Objectives: We aimed to evaluate the effects of morphological characteristics of the solitary pulmonary nodules (SPN) on metabolic activity assessment. To the best of our knowledge, this is the first study to compare the volumetric metabolic activity parameters according to the morphologic parameters of the nodules. Methods: In this retrospective study, 18F-FDG positron emission tomography and computed tomography scans performed between 2011 and 2018 were evaluated by a nuclear and diagnostic radiologist. One hundred thirteen patients with SPNs with biopsy-proven diagnosis were included. SPNs were classified as solid, partially solid (PS), and ground glass opacity (GGO). Results: SPN diameter, SUVmax, metabolic tumor volume (MTV), total lesion glycolysis (TLG), and density were significantly higher in the malignant group. SUVmax, MTV, TLG increased in direct proportion to the diameter. There was no a significant difference between GGO, PS, and solid nodules in terms of SUVmax values. MTV and TLG values increased in parallel with the density of the nodules, but this increase was only significant in the malignant group. There was a significant difference between SPNs <2 cm and SPNs ≥2 cm in terms of MTV, while there was no difference in terms of SUVmax. The cut-off value determined by the ROC curve was found to be 4.39 for SUVmax, 7.33 mL for MTV and 31.88 g for TLG. The cut-off values for SUVmax of solid and subsolid nodules were close to each other, but cut-off values for MTV and TLG were higher in solid nodules. Conclusion: SUVmax, MTV, and TLG are affected by diameter and attenuation. We suggest using different MTV and TLG cut-off values for solid and subsolid nodules, but we suggest using same SUVmax values. MTV can be a more reliable parameter than SUVmax in prediction of malignancy in smaller nodules.

Authors and Affiliations

Mehmet Erdoğan, Şehnaz Evrimler, Hüseyin Aydın, Adnan Karaibrahimoğlu, Sevim Süreyya Şengül

Keywords

Related Articles

Significance of Microalbuminuria in Predicting Silent Myocardial Ischemia in Patients with Type 2 Diabetes Using Myocardial Perfusion Imaging

Objectives: In light of increased risk of cardiovascular events and the poor prognosis of coronary artery disease (CAD) in diabetic versus nondiabetic patients and also with respect to the importance of early diagnosis o...

Guide for Nuclear Medicine Applications During the COVID-19 Outbreak

A viral pneumonia rapidly spread from Wuhan, China to all countries in late 2019. In February 2020, WHO named as Coronavirus Disease 2019 (COVID-19) and declared the pandemic on March 11, 2020. To prevent the spread of C...

Solitary Pulmonary Nodule: Morphological Effects on Metabolic Activity Assessment

Objectives: We aimed to evaluate the effects of morphological characteristics of the solitary pulmonary nodules (SPN) on metabolic activity assessment. To the best of our knowledge, this is the first study to compare the...

Unexpected Detection of Abscessualized Lung Carcinoma on Tc-99m-HMPAO-labeled Leukocytes Scintigraphy Misdiagnosed on Chest Computed Tomography

Technetium-99m (Tc-99m)-hexamethylpropylene amine oxime (HMPAO)-labeled leukocytes scintigraphy is well established for investigating and diagnosing infections in bone and soft tissue, as well as for the detection of occ...

Striking Visualization of Diffuse Congenital Nesidioblastosis on Ga-68 DOTATATE PET/CT

“Nesidioblastosis”, later renamed as “persistent hyperinsulinemic hypoglycemia of infancy” presents as either focal or diffuse neo-differentiation of pancreatic Langerhans islet cells from the ductal epithelium. Differen...

Download PDF file
  • EP ID EP50512
  • DOI 10.4274/mirt.galenos.2019.65707
  • Views 252
  • Downloads 0

How To Cite

Mehmet Erdoğan, Şehnaz Evrimler, Hüseyin Aydın, Adnan Karaibrahimoğlu, Sevim Süreyya Şengül (2019). Solitary Pulmonary Nodule: Morphological Effects on Metabolic Activity Assessment. Molecular Imaging and Radionuclide Therapy, 28(3), -. https://europub.co.uk/articles/-A-50512