Radiotherapy Clinical Trial
Official title:
A Study Utilizing 3D Printing in Patients Undergoing External Beam Radiation Therapy
Verified date | January 2018 |
Source | Tulane University |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
Some radiation therapy treatment plans require the use of boluses. Boluses are placed directly on the skin overlying the area to be treated. The radiation beam interacts with the bolus before entering the body and ensures that the correct radiation dose reaches your tumor. The purpose of this study is to determine whether the shortcomings of conventional bolus preparation can be overcome by using a 3D printer. CT scans of the body can be used to create 3D models for boluses. The 3D models can then be printed into plastic boluses using a 3D printer. Preliminary studies have shown that 3D printed boluses conform to body contours better and allow for more precise control over radiation dose. In this study, both a conventional and 3D printed bolus will be made. The Investigators will then simulate treatment with both boluses to determine which bolus will result in more optimal treatment for the participant. The superior bolus will be used in the participant's treatment.
Status | Withdrawn |
Enrollment | 0 |
Est. completion date | August 2017 |
Est. primary completion date | August 2017 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years and older |
Eligibility |
Inclusion Criteria: - 18 years of age - Requires bolus and is schedule for radiation therapy |
Country | Name | City | State |
---|---|---|---|
United States | Tulane University Cancer Center | New Orleans | Louisiana |
Lead Sponsor | Collaborator |
---|---|
Tulane University |
United States,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Optimal radiation dose | Boluses are used in radiation therapy to assure the optimal dose of radiation is applied to the tumor. Conventional boluses may have air gaps between the mold and the participants skin, or deform over time and use, which may make the dose of radiation change and not be at the optimal dose for the tumor. Therefore a 3D printed bolus will be molded based on a participant's CT images to construct a bolus to deliver the optimal dose of radiation to the tumor. Both boluses will be tested through a computer simulation to asses which bolus, conventional or 3D printed, provides the optimal radiation dose. | 1 day |
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