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Normal Lung Tissue CT Density Changes after Volumetric-Arc Radiotherapy (VMAT) for Lung Cancer
by
Konkol, Marek
, Bryl, Maciej
, Śniatała, Paweł
, Matuszewski, Krzysztof
, Milecki, Piotr
, Fechner, Marek
in
Cancer therapies
/ Chemotherapy
/ Data analysis
/ Dyspnea
/ Heart
/ Hypertension
/ Lung cancer
/ Medical imaging
/ Patients
/ Planning
/ Precision medicine
/ Radiation therapy
/ Software
/ Thorax
/ Toxicity
2022
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Normal Lung Tissue CT Density Changes after Volumetric-Arc Radiotherapy (VMAT) for Lung Cancer
by
Konkol, Marek
, Bryl, Maciej
, Śniatała, Paweł
, Matuszewski, Krzysztof
, Milecki, Piotr
, Fechner, Marek
in
Cancer therapies
/ Chemotherapy
/ Data analysis
/ Dyspnea
/ Heart
/ Hypertension
/ Lung cancer
/ Medical imaging
/ Patients
/ Planning
/ Precision medicine
/ Radiation therapy
/ Software
/ Thorax
/ Toxicity
2022
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Do you wish to request the book?
Normal Lung Tissue CT Density Changes after Volumetric-Arc Radiotherapy (VMAT) for Lung Cancer
by
Konkol, Marek
, Bryl, Maciej
, Śniatała, Paweł
, Matuszewski, Krzysztof
, Milecki, Piotr
, Fechner, Marek
in
Cancer therapies
/ Chemotherapy
/ Data analysis
/ Dyspnea
/ Heart
/ Hypertension
/ Lung cancer
/ Medical imaging
/ Patients
/ Planning
/ Precision medicine
/ Radiation therapy
/ Software
/ Thorax
/ Toxicity
2022
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Normal Lung Tissue CT Density Changes after Volumetric-Arc Radiotherapy (VMAT) for Lung Cancer
Journal Article
Normal Lung Tissue CT Density Changes after Volumetric-Arc Radiotherapy (VMAT) for Lung Cancer
2022
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Overview
Radiation-induced lung injury remains a significant toxicity in thoracic radiotherapy. Because a precise diagnosis is difficult and commonly used assessment scales are unclear and subjective, there is a need to establish quantitative and sensitive grading methods. The lung tissue density change expressed in Hounsfield units (HUs) derived from CT scans seems a useful numeric surrogate. The study aimed to confirm a dose-response effect on HU value changes (ΔHU), their evolution in time, and the impact of selected clinical and demographic factors. We used dedicated, self-developed software to register and analyze 120 pairs of initial and follow-up CT scans of 47 lung cancer patients treated with dynamic arc radiotherapy. The differences in HU values between CT scans were calculated within discretized dose-bins limited by isodose lines. We have proved the dose-effect relationship, which is well described with a sigmoid model. We found the time evolution of HU changes to suit a typical clinical presentation of radiation-induced toxicity. Some clinical factors were found to correlate with ΔHU degree: planning target volume (PTV), V35 in the lung, patient’s age and a history of arterial hypertension, and initial lung ventilation intensity. Lung density change assessment turned out to be a sensitive and valuable method of grading post-RT lung toxicity.
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