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  5. DEVELOPMENT OF A LOW-DOSE RADIATION THERAPY DEVICE FOR ACUTE RESPRITORY DISTRESS SYNDROME
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DEVELOPMENT OF A LOW-DOSE RADIATION THERAPY DEVICE FOR ACUTE RESPRITORY DISTRESS SYNDROME

Date Issued
December 1, 2022
Author(s)
Davis, Thomas Heath  
Advisor(s)
Eric D. Lukosi
Additional Advisor(s)
Michael Howard
Lawrence H. Heilbronn
Dustin Osborne
Eric D. Lukosi
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/43404
Abstract

This research focuses on the development of a low dose radiotherapy (LD-RT) device for treatment of acute respiratory distress syndrome (ARDS), a respiratory illness that affects millions of people a year. The use of orthovoltage (200 – 500 keV) X-ray energy provides many advantages over traditional radiotherapy delivery with linear accelerators, such as low cost and greater accessibility. In addition, X-ray tubes have been shown throughout history to provide good treatment outcomes for pneumonia, and research has shown LD-RT to be just as effective with ARDS. This proposal summarizes my efforts in determining the dosimetric properties of a LD-RT system to deliver treatment in a fast and effective manner. My research involves Monte Carlo transport simulations in MCNP to calculate the dose delivery and coverage of a whole lung treatment. In addition, different setup geometries and beam modifications will be explored to optimize the treatment delivery. The development of such a system would greatly expand the treatment options for ARDS type illness at a lower cost and greater accessibility than current radiotherapy options.

Subjects

Medical Physics

Nuclear Engineering

Radiotherapy

Disciplines
Nuclear Engineering
Other Medical Sciences
Degree
Master of Science
Major
Nuclear Engineering
File(s)
Thumbnail Image
Name

LDRT_Thesis_Heath_Davis_formating_changes.pdf

Size

1.4 MB

Format

Adobe PDF

Checksum (MD5)

7fbaf2c1f961021bdb6cac840ee0877f

Thumbnail Image
Name

MASTERS_LDRT_draft.docx

Size

57.78 KB

Format

Microsoft Word XML

Checksum (MD5)

3f94eaf0f9255a81c9ad8c3a594d8c68


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