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1.
Chinese Journal of Radiation Oncology ; (6): 481-487, 2023.
Artículo en Chino | WPRIM | ID: wpr-993218

RESUMEN

Radiation pneumonia is a side effect that cannot be ignored in the current radiation therapy for lung cancer. At present, there are studies and reports of the introduction of functional imaging technology into lung cancer radiotherapy plans, in which 4DCT has better application prospects in radiotherapy for lung cancer because of its advantages of simple operation, high spatial resolution and no additional cost, etc. Compared with single-photon emission computed tomography (SPECT)-CT, positron emission tomography (PET)-CT, MRI has a better application prospect in radiotherapy of lung cancer. The use of 4DCT to obtain the patient's lung function status can predict radiation pulmonary toxicity and assist clinicians to deliver prompt interventions. Moreover, it can help carry out radiotherapy for functional lung avoidance, mitigate the damage of normal lung tissues, and alleviate chest toxicity, which may have wider application value in the future. In this article, research progress on functional lung imaging algorithms based on 4DCT and the application of radiation therapy for lung cancer was reviewed.

2.
Journal of International Oncology ; (12): 370-373, 2019.
Artículo en Chino | WPRIM | ID: wpr-751724

RESUMEN

Functional imaging plays an important role in lung cancer radiotherapy.Functional imaging techniques include single photon emission computed tomography,positron emission tomography,magnetic resonance imaging,and computed tomography.Using lung function information provided by these techniques for lung cancer radiotherapy can better protect the normal function of lung tissue,optimize the radiotherapy program,and reduce the incidence of radiation pneumonitis.With the development of perfusion and imaging technology,functional imaging technology is expected to be widely used in the precise radiotherapy of lung cancer in the future.

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