St. Jude Children's Research Hospital
Memphis, Tennessee, 38105, United States
NCT Number: NCT02415816
Children with sarcomas are routinely assessed with a variety of imaging techniques that involve the use of ionizing radiation. These include computed tomography (CT), nuclear bone scan, and positron emission tomography-CT (PET-CT). Pediatric sarcoma patients undergo many imaging studies at the time of diagnosis, during therapy and for years following completion of therapy. Because children are in a stage of rapid growth, their tissues and organs are more susceptible to the harmful effects of ionizing radiation than are adults. Furthermore, compared to adults, children have a longer life expectancy and, therefore, a longer period of time in which to develop the adverse sequelae of radiation exposure, such as the development of second malignancies.
Alternative experimental methods of measuring tumor response will be compared to current standard of care measures to determine if the experimental method is equivalent to methods currently being used. Investigators wish to determine if they can reduce patient's exposure to the harmful effects of ionizing radiation by replacing imaging studies that use radiation with whole body diffusion weighted magnetic resonance imaging (DW-MRI) which does not use any radiation. They also want to know if DW-MRI measurements of the tumor can tell how well the tumor is responding to therapy. There have been studies in adults with cancer that have shown that DW-MRI provides useful information about how tumors are responding to therapy. There have only been very small studies of DW-MRI in children with tumors in the body. Therefore, the role of DW-MRI in pediatric sarcoma patients is not yet known and it is still experimental. This study might give us important information that could help us treat other children with bone or soft tissue sarcomas in the future.
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Interventional
Not applicable
Memphis, Tennessee, 38105, United States
Whole body (WB) and primary tumor diffusion weighted imaging (DWI) will be performed at baseline in all subjects. Additional DW-MRIs will be done up to 3 times during treatment at the same time as routine MRI examinations are scheduled. Follow-up primary tumor DWI MRI examinations will be performed at time points determined by the participant's therapeutic treatment protocol. Follow-up primary tumor DWI examinations will be performed until completion of local control (surgical resection or completion of radiation therapy). All examinations will be performed on 1.5T Siemens magnetic resonance (MR) scanners unless there is a clinical indication for 3T imaging.
Because investigators will correlate imaging parameters with patient outcome, participants will be followed until they are discharged to the After Completion of Therapy Clinic or until they have tumor progression or recurrence or develop a second malignancy or death, whichever comes first.
PRIMARY OBJECTIVES:
OTHER PRESPECIFIED OBJECTIVES:
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Diffusion weighted magnetic resonance imaging (DWI MRI) is a method that does not involve radiation and can be used to assess the primary tumor as well as to image the entire patient, from head to toe. Diffusion weighted MRI uses a strong motion probing gradient to detect the movement of water in tissue. Tissues that are composed of tightly packed cells, such as tumors, allow less water movement than tissues with loosely packed cells. As tumors respond to therapy they become necrotic and cells are less tightly packed. This change in water diffusivity can be quantitated using DWI. Therefore, DWI provides a non-invasive, non-ionizing, and quantitative method of assessing tumor response at a cellular level and does not depend on a change in tumor size
Other names: DWI-MRI
Time frame: Baseline, at time of diagnosis (day 0 within about 5 days)
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Proportion of participants whose bone/bone marrow and soft-tissue metastases were detected with whole body DWI MRI
Time frame: Baseline, at time of diagnosis (day 0 within about 5 days) to local control (up to 18 weeks)
The primary tumor DWI ADC (in mm^2/sec) and FDG PET SUVmax (unitless) values at baseline and protocol driven time points up until local control.
Local control is defined as surgical resection or initiation of radiation therapy.
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Time frame: Baseline, at time of diagnosis (day 0 within about 5 days)
The number of metastatic lesions detected and not detected with whole body DWI MRI, PET-CT alone and PET-CT + bone scan by using biopsy or clinical follow-up as the reference standards. Metastatic sites will be reported in groups by region (bone/bone marrow, lymph nodes, lung and soft-tissue) and all groups together.
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Time frame: Baseline, at diagnosis (day 0 within about 5 days)
The proportion of DWI MRI scans , PET-CTs and PET-CT + bone scan that correctly identify bone/bone marrow, nodal, lung and soft-tissue metastases in pediatric sarcoma patients at the time of diagnosis.
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Time frame: Baseline, at diagnosis (day 0 within about 5 days) and at protocol driven time points up to 18 weeks (time of local control).
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Time frame: Baseline, at diagnosis (day 0 within about 5 days) and at protocol driven time points up to 18 weeks (time of local control).
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Time frame: Baseline, at diagnosis (day 0 within about 5 days) and at protocol driven time points up to 18 weeks (time of local control).
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Time frame: Baseline, at diagnosis (day 0 within about 5 days) and at protocol driven time points up to 18 weeks (time of local control).
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Time frame: Baseline, at diagnosis (day 0 within about 5 days) and at protocol driven time points up to 18 weeks (time of local control).
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
Time frame: Baseline, at diagnosis (day 0 within about 5 days) and at protocol driven time points up to 5 years after the end of therapy
Event free survival is defined as the time between end of therapy and tumor progression/recurrence, development of a second malignancy or death, whichever comes first.
Time frame: Baseline, at diagnosis (day 0 within about 5 days) up to 6 years after starting cancer therapy
Overall survival is defined as the percentage of participants still alive at the end of follow-up after starting cancer therapy.
Time frame: Baseline, at diagnosis (day 0 within 7±2 days)
The proportion of WB DWI, T1W and STIR MRIs that correctly identify metastatic disease grouped by site (bone/bone marrow, lymph node, lung and soft-tissue) as well as all sites together.
To allow for blinding, reading of scan images will be delayed at least 2 months and up to 6 months following scan.
St. Jude Children's Research Hospital
Other
Diffusion Weighted Magnetic Resonance Imaging in Pediatric Sarcomas
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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.
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