Regional Changes in Brain 18 F-FDG Uptake After Prophylactic Cranial Irradiation and Chemotherapy in Small Cell Lung Cancer May Reflect Functional Changes

Chemotherapy followed by prophylactic cranial irradiation (PCI) is associated with increased survival in patients with small cell lung cancer but is associated with fatigue and cognitive impairment. This retrospective study evaluated regional differences in F-FDG uptake by the brain before and after...

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Published in:Journal of nuclear medicine technology Vol. 46; no. 4; pp. 355 - 358
Main Authors: Eshghi, Naghmehossadat, Garland, Linda L, Choudhary, Gagandeep, Hsu, Charles C, Eshghi, Anna, Han, James, Hamilton, Russell J, Krupinski, Elizabeth, Kuo, Phillip H
Format: Journal Article
Language:English
Published: United States 01-12-2018
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Abstract Chemotherapy followed by prophylactic cranial irradiation (PCI) is associated with increased survival in patients with small cell lung cancer but is associated with fatigue and cognitive impairment. This retrospective study evaluated regional differences in F-FDG uptake by the brain before and after PCI. The null hypothesis was that direct toxic effects on the brain from PCI and chemotherapy are symmetric; thus, asymmetric deviations may reflect functional changes due to therapy. Electronic medical records from 2013 to 2016 were reviewed for patients with small cell lung cancer, MRI of brain negative for metastasis, and F-FDG PET/CT scans before and after PCI. As the standard of care, patients received first-line chemotherapy or chemoradiation to the thorax followed by PCI. The F-FDG PET/CT scans nearest the PCI were selected. Sixteen patients met these initial criteria. Commercially available PET software was used to register and subtract the PET scans before and after PCI to obtain difference maps. Occipital and cerebellar regions were excluded from the final statistical analysis given the known high variability and misregistration. The χ test was used to analyze the data. Two patients had F-FDG uptake differences only in the occipital and cerebellar regions. The software registration failed on 1 patient's scans. Therefore, 13 patients were included in the final analysis. Nine of 13 patients demonstrated significant unilateral changes in only 1 region of the brain, and 3 of 13 showed significant changes unilaterally in 2 regions. The χ test revealed a significant unilateral regional difference on a patient level (χ = 6.24, = 0.025). The most commonly affected brain region was the frontal lobe. Significantly more patients had unilateral than bilateral regional differences (both increases and decreases) in F-FDG uptake in the brain before and after PCI. This finding suggests that differences in unilateral distribution are related to functional changes, since direct toxicity alone from PCI and chemotherapy would be symmetric. The frontal region was the most commonly affected, suggesting a potential contributing etiology for cognitive impairment and decreased executive function after therapy.
AbstractList Chemotherapy followed by prophylactic cranial irradiation (PCI) is associated with increased survival in patients with small cell lung cancer but is associated with fatigue and cognitive impairment. This retrospective study evaluated regional differences in F-FDG uptake by the brain before and after PCI. The null hypothesis was that direct toxic effects on the brain from PCI and chemotherapy are symmetric; thus, asymmetric deviations may reflect functional changes due to therapy. Electronic medical records from 2013 to 2016 were reviewed for patients with small cell lung cancer, MRI of brain negative for metastasis, and F-FDG PET/CT scans before and after PCI. As the standard of care, patients received first-line chemotherapy or chemoradiation to the thorax followed by PCI. The F-FDG PET/CT scans nearest the PCI were selected. Sixteen patients met these initial criteria. Commercially available PET software was used to register and subtract the PET scans before and after PCI to obtain difference maps. Occipital and cerebellar regions were excluded from the final statistical analysis given the known high variability and misregistration. The χ test was used to analyze the data. Two patients had F-FDG uptake differences only in the occipital and cerebellar regions. The software registration failed on 1 patient's scans. Therefore, 13 patients were included in the final analysis. Nine of 13 patients demonstrated significant unilateral changes in only 1 region of the brain, and 3 of 13 showed significant changes unilaterally in 2 regions. The χ test revealed a significant unilateral regional difference on a patient level (χ = 6.24, = 0.025). The most commonly affected brain region was the frontal lobe. Significantly more patients had unilateral than bilateral regional differences (both increases and decreases) in F-FDG uptake in the brain before and after PCI. This finding suggests that differences in unilateral distribution are related to functional changes, since direct toxicity alone from PCI and chemotherapy would be symmetric. The frontal region was the most commonly affected, suggesting a potential contributing etiology for cognitive impairment and decreased executive function after therapy.
Author Garland, Linda L
Hamilton, Russell J
Eshghi, Naghmehossadat
Choudhary, Gagandeep
Krupinski, Elizabeth
Hsu, Charles C
Eshghi, Anna
Kuo, Phillip H
Han, James
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Keywords lung cancer
18F-FDG PET/CT
prophylactic cranial irradiation
cognitive impairment
small cell lung cancer
molecular imaging
Language English
License 2018 by the Society of Nuclear Medicine and Molecular Imaging.
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SubjectTerms Aged
Biological Transport - radiation effects
Brain - diagnostic imaging
Brain - metabolism
Brain - physiopathology
Brain - radiation effects
Cranial Irradiation
Female
Fluorodeoxyglucose F18 - metabolism
Humans
Lung Neoplasms - diagnosis
Lung Neoplasms - drug therapy
Lung Neoplasms - metabolism
Lung Neoplasms - physiopathology
Male
Middle Aged
Positron Emission Tomography Computed Tomography
Retrospective Studies
Small Cell Lung Carcinoma - diagnostic imaging
Small Cell Lung Carcinoma - drug therapy
Small Cell Lung Carcinoma - metabolism
Small Cell Lung Carcinoma - physiopathology
Title Regional Changes in Brain 18 F-FDG Uptake After Prophylactic Cranial Irradiation and Chemotherapy in Small Cell Lung Cancer May Reflect Functional Changes
URI https://www.ncbi.nlm.nih.gov/pubmed/30076247
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