Royal North Shore Hospital
Saint Leonards, New South Wales, 2065, Australia
NCT Number: NCT04310891
In radiotherapy, tumour tracking allows us to ensure the radiation beam is accurately targeting the tumour while it moves in a complex and unpredictable way. Most tumour tracking techniques require the implantation of fiducial markers around the tumour. Markerless Tumour Tracking negates the need for implanted markers, enabling accurate and optimal cancer radiotherapy in a non-invasive way.
This study is active but is not currently recruiting participants.
Notify Me18 year–80 year
All sexes
Observational
Saint Leonards, New South Wales, 2065, Australia
We will perform a phase I observational trial investigating the feasibility of the Markerless Tumour Tracking technology. Markerless Tumour Tracking will be integrated with existing treatment machines to provide real-time monitoring of tumour motion during treatment delivery. Eligible patients are implanted with fiducial markers, which act as the ground truth for evaluating the accuracy of Markerless Tumour Tracking. The patients will undergo the current standard of care radiotherapy, with the exception that kilovoltage x-ray images will be acquired continuously during treatment delivery and used to calculate online Markerless Tumour Tracking. Markerless Tumour Tracking determines the mean tumour position calculated over the most recent 15 seconds and displays shifts exceeding 3 mm.
The trial will be a single-institution study recruiting only at RNSH Radiation Oncology Department.
As this trial investigates feasibility, our focus will be on estimating the proportion of treatment time in which the Markerless Tumour Tracking is within acceptable limits.
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Intrafraction Kolovoltage X-ray Imaging using Fiducials
Time frame: 6 months after recruitment
to demonstrate the feasibility of Markerless Tumour Tracking for motion-adaptive lung cancer radiotherapy as assessed by agreement between markerless and marker-based tracking within 3 mm for at least 80% of the beam-on time as assessed in off-line analyses.
Time frame: 6 months after treatment of last fraction
To identify cohort of patients on which markerless Tumour tracking performs well or poorly
Time frame: 6 months after treatment of last fraction
To quantify the accuracy of marker-based tracking by comparison with MV-kV triangulation or visual inspection
Time frame: 6 months after treatment of last fraction
To investigate the magnitude of surrogacy of lung tumour motion, ie the difference between tumour motion and implanted marker motion
Time frame: 6 months after treatment of last fraction
To investigate the correlation between external and internal motion using infrared/optical imaging
Time frame: 6 months after treatment of last fraction
To investigate the suitability and frequency of correcting for tumour baseline shifts based on a variety of tolerance criteria and with different methods
Time frame: 6 months after treatment of last fraction
To investigate the frequency of correcting for tumour baseline shifts based on a variety of tolerance criteria and with different methods
Time frame: 6 months after treatment of last fraction
To investigate the feasibility of predicting treatment outcomes based on patient and imaging information
Time frame: 6 months after treatment of last fraction
Participants will be followed for 2 years to determine patient outcomes, including radiation therapy toxicity, local control (whether the tumour has spread) and survival
Time frame: 6 months after treatment of last fraction
2 year outcomes will be compared to historical outcomes reported from our lung Departmental SBRT database
Time frame: 6 months after treatment of last fraction
To record the number of patients ineligible after marker insertion due to positioning of markers, or due to complications with the implantation procedure
Time frame: 6 months after treatment of last fraction
To investigate the feasibility of extracting radiomic features from CT, CBCT, and kV images to predict tumour volumes, tracking accuracy, treatment response, and patient outcomes.
Time frame: 6 months after treatment of last fraction
To report additional x-ray dose caused by imaging during treatment
Royal North Shore Hospital
Other
Validation of Markerless Image Guidance Using Intrafraction Kolovoltage X-ray Imaging Using Implanted Fiducials: Phase I Observational Study of Lung Cancer Radiotherapy
Acronym: VALKIM
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT06644768
Bronchial Neoplasms, Carcinoma, Bronchogenic
La Jolla, California, United States
View Trial DetailsNCT03693014
Bladder Cancer, Female Urogenital Diseases
Hartford, Connecticut, United States
View Trial DetailsNCT02414269
Adenoma, Breast Cancer
Basking Ridge, New Jersey, United States
View Trial DetailsNCT06698042
Bronchial Neoplasms, Carcinoma, Bronchogenic
Fullerton, California, United States
View Trial Details