Exclusive Pattern between Blood Perfusion and Glucose Metabolism of Lung Cancer in Patient: A Pilot Dual-phase 18F-FDG PET Study
Z Chen, XF Li - 2019 - Soc Nuclear Med
87 Objectives: In mouse modes of human non-small cell lung cancer and colorectal cancer
cells, we have previously reported that 18 F-FDG accumulates in hypoxic cancer cells …
cells, we have previously reported that 18 F-FDG accumulates in hypoxic cancer cells …
Temporal heterogeneity of intratumoral 18F-FDG accumulation in untreated lung cancers in human subjects and mice
571 Objectives The objective of this study was to observe the spatial and temporal
heterogeneity of glucose metabolism in lung cancer. Methods All human studies were …
heterogeneity of glucose metabolism in lung cancer. Methods All human studies were …
Correlation between [18F]FDG PET/CT and volume perfusion CT in primary tumours and mediastinal lymph nodes of non-small-cell lung cancer
AW Sauter, D Spira, M Schulze, C Pfannenberg… - European journal of …, 2013 - Springer
Purpose The aim of this study was to investigate correlations between glucose metabolism
as determined by [18 F] FDG PET/CT and tumour perfusion as quantified by volume …
as determined by [18 F] FDG PET/CT and tumour perfusion as quantified by volume …
Correlation between 18F-FDG uptake on PET and molecular biology in metastatic pulmonary tumors
K Kaira, T Okumura, Y Ohde, T Takahashi… - Journal of Nuclear …, 2011 - Soc Nuclear Med
18F-FDG PET can help in predicting therapeutic response and outcome in patients with
metastatic pulmonary tumors. However, no satisfactory biologic explanation exists for this …
metastatic pulmonary tumors. However, no satisfactory biologic explanation exists for this …
Exploring the human glycometabolism in lung cancer patients using total-body 18F-FDG-PET/CT
Y Wu, X Yang, C Zheng, Y Zhou, M Wang - 2023 - Soc Nuclear Med
P92 Introduction: Metabolism alteration is one of the earmarks of human cancer. An in-depth
understanding of metabolic changes may help to obtain the accurate diagnostics, achieve …
understanding of metabolic changes may help to obtain the accurate diagnostics, achieve …
Effect of cancer patients' oxygen breathing during uptake phase of the study on tumor F18-FDG uptake.
XF Li, GH Kloecker, VR Sharma, G Bhatt, AD Bhatt… - 2012 - ascopubs.org
e21072 Background: We previously reported that in mice, 18F-FDG uptake is higher in
hypoxic cancer cells than well-oxygenated xenografts of human cancer cells. This enhanced …
hypoxic cancer cells than well-oxygenated xenografts of human cancer cells. This enhanced …
Quantification of 18F-FDG Uptake in Non–Small Cell Lung Cancer: A Feasible Prognostic Marker?
AK Buck, G Glatting, SN Reske - Journal of Nuclear Medicine, 2004 - Soc Nuclear Med
(NSCLC) is a heterogeneous group of carcinomas with a similar cellular and molecular
origin but different biologic behaviors and prognoses. Accurate staging is essential for …
origin but different biologic behaviors and prognoses. Accurate staging is essential for …
Multifunctional profiling of non–small cell lung cancer using 18F-FDG PET/CT and volume perfusion CT
AW Sauter, S Winterstein, D Spira… - Journal of Nuclear …, 2012 - Soc Nuclear Med
The aim of this study was to investigate correlations between glucose metabolism registered
by 18F-FDG PET/CT and tumor perfusion quantified by volume perfusion CT and …
by 18F-FDG PET/CT and tumor perfusion quantified by volume perfusion CT and …
[HTML][HTML] Can dynamic imaging, using F-FDG PET/CT and CT perfusion differentiate between benign and malignant pulmonary nodules?
A Marin, JT Murchison, KM Skwarski… - Radiology and …, 2021 - sciendo.com
Background The aim of the study was to derive and compare metabolic parameters relating
to benign and malignant pulmonary nodules using dynamic 2-deoxy-2-[fluorine-18] fluoro-D …
to benign and malignant pulmonary nodules using dynamic 2-deoxy-2-[fluorine-18] fluoro-D …
Short dynamic FDG-PET imaging protocol for patients with lung cancer
T Torizuka, S Nobezawa, S Momiki… - European journal of …, 2000 - Springer
This positron emission tomography (PET) study was designed to compare 2-[fluorine-18]
fluoro-2-deoxy-D-glucose (FDG) kinetic parameters of tumours derived from imaging frames …
fluoro-2-deoxy-D-glucose (FDG) kinetic parameters of tumours derived from imaging frames …
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