Head and Neck Cancer Clinical Trial
Official title:
On-treatment Adaptation of Head and Neck Cancer Dosimetry Plans Using Novel Cone-beam CT and AI-driven Software
This is a feasibility study investigating the use of a high-performance HyperSight cone beam CT (CBCT) and adaptive planning software for both online and offline radiotherapy treatment planning for head and neck cancer.
Status | Recruiting |
Enrollment | 30 |
Est. completion date | June 30, 2024 |
Est. primary completion date | May 31, 2024 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 19 Years and older |
Eligibility | Inclusion Criteria: 1. Patient age = 19 2. Patient is scheduled for treatment on one of the five TrueBeam platforms at the NS Health QE2 site. 3. Patient is receiving radiation therapy for cancer of the head and neck involving a target in either the ipsilateral or bilateral neck, with a minimum of 21 fractions. Exclusion Criteria: 1. Patient is pregnant or has plans for pregnancy during the period of treatment. 2. Patient is unwilling to consent to participating to the study, or for whom informed consent is not possible. 3. Patient has previously undergone radiation therapy to the oral cavity or sinuses. 4. Patient has had either a bilateral neck dissection and/or laryngectomy. |
Country | Name | City | State |
---|---|---|---|
Canada | Nova Scotia Health (QEII) | Halifax | Nova Scotia |
Lead Sponsor | Collaborator |
---|---|
Varian, a Siemens Healthineers Company |
Canada,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Evaluation of CBCT-based dosimetry calculations | The treatment plan calculated on a subject's fan beam simulation CT will be re-calculated on both the HyperSight CBCT acquired on the day of the subject's simulation CT and on the TrueBeam CBCT used for subject positioning during fraction 1 of treatment delivery. Dose-volume histograms for targets and key organs at risk will be compared between the three dose calculations from each subject. | 1 day | |
Primary | Evaluate potential reduction in time and resources required for offline plan adaptation | The workflow and opportunity for improved efficiency when using HyperSight CBCT images for offline treatment adaptation, will be compared to the standard process of obtaining a separate FBCT for re-planning. The average time required to generate a revised treatment plan will be measured and compared to institutional norms. | 4 weeks | |
Primary | Improvements in radiation dosimetry from using online adaptation | The HyperSight CBCT acquired on the same day as the subject's 21st treatment fraction delivery will be used to simulate an online adaptive radiotherapy session, which will produce a treatment plan that is adapted to the anatomy as it appears on that day. The target dose coverage and doses delivered to key organs at risk in the adaptive plan will be compared to the doses that are delivered to those structures by the subject's initial treatment plan. | 4 weeks | |
Primary | Qualitative assessment of CBCT imaging | Paired HyperSight CBCT and Truebeam CBCT images will be presented to radiation oncologists and radiation therapists, who will rank the images using a Likert scale for the ability to identify significant anatomical structure volume changes that prompt the need for on-treatment replanning. | 4 weeks | |
Secondary | CBCT image quality | The quality of HyperSight CBCT images will be evaluated my measuring contrast-to-noise ratio, resolution, and Hounsfield Unit accuracy. The quality metrics of the HyperSight CBCT images will be compared to those of the fan beam planning CT images and to those of the standard TrueBeam CBCT images. Metal artifact reduction will be compared between images of subjects with dental or other metal implants in the imaging field. | 4 weeks | |
Secondary | Patient experience questionnaire | Subjects will be presented with a questionnaire in which they will be asked to compare their experience of imaging on a fan beam planning CT system to their experience of imaging with the HyperSight CBCT imaging system. | 1 day |
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