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  3. Non-conventional Ultra-High Dose Rate (FLASH) Microbeam Radiotherapy Provides Superior Normal Tissue Sparing in Rat Lung Compared to Non-conventional Ultra-High Dose Rate (FLASH) Radiotherapy
 

Non-conventional Ultra-High Dose Rate (FLASH) Microbeam Radiotherapy Provides Superior Normal Tissue Sparing in Rat Lung Compared to Non-conventional Ultra-High Dose Rate (FLASH) Radiotherapy

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BORIS DOI
10.48350/160909
Publisher DOI
10.7759/cureus.19317
Description
Conventional radiotherapy is a widely used non-invasive form of treatment for many types of cancer. However, due to a low threshold in the lung for radiation-induced normal tissue damage, it is of less utility in treating lung cancer. For this reason, surgery is the preferred treatment for lung cancer, which has the detriment of being highly invasive. Non-conventional ultra-high dose rate (FLASH) radiotherapy is currently of great interest in the radiotherapy community due to demonstrations of reduced normal tissue toxicity in lung and other anatomy. This study investigates the effects of FLASH microbeam radiotherapy, which in addition to ultra-high dose rate incorporates a spatial segmentation of the radiation field, on the normal lung tissue of rats. With a focus on fibrotic damage, this work demonstrates that FLASH microbeam radiotherapy provides an order of magnitude increase in normal tissue radio-resistance compared to FLASH radiotherapy. This result suggests FLASH microbeam radiotherapy holds promise for much improved non-invasive control of lung cancer.
Date of Publication
2021
Publication Type
Article
Subject(s)
600 - Technology::610 - Medicine & health
Language(s)
en
Contributor(s)
Wright, Michael D.
Romanelli, Pantaleo
Bravin, Alberto
Le Duc, Geraldine
Brauer-Krisch, Elke
Requardt, Herwig
Bartzsch, Stefan
Hlushchuk, Ruslan
Institut für Anatomie, Topographische und Klinische Anatomie
Laissue, Jean
Emeriti, Medizinische Fakultät
Djonov, Valentin Georgievorcid-logo
Institut für Anatomie
Additional Credits
Institut für Anatomie, Topographische und Klinische Anatomie
Emeriti, Medizinische Fakultät
Institut für Anatomie
Series
Cureus
Publisher
Cureus, Inc.
ISSN
2168-8184
Access(Rights)
open.access
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