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| Name | Class |
|---|---|
| Wallace H. Coulter Foundation | OTHER |
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This is an observational study. The purpose is to determine the feasibility of using a novel nano-scintillator fiber-optic dosimeter (nanoFOD) for the real time dosimetric monitoring of brachytherapy treatment. Women with gynecologic cancers treated with brachytherapy as part of their standard therapeutic regimen will represent the study population.
Brachytherapy is a curative treatment for many malignancies, brachytherapy delivers a high radiation dose to a very small and well-specified target within a patient with cancer. Yet there is no current convenient, inexpensive, real time method of confirming the radiation dose delivered. There is no current monitoring or fail-safe device for radiation oncologists and their patients if the radiation dose becomes too high, especially to radiation sensitive organs, or conversely if the target receives too little dose.High dose-rate(HDR) brachytherapy is a highly advanced radiation-based cancer treatment, where a very small radioactive source, Iridium-192, is placed in or near the tumor through a catheter or channel. This provides a high radiation dose to the tumor in 5-15 minutes with a precise location, while minimizing radiation exposure to surrounding tissue and organs. This protocol will determine the feasibility of using a novel nano-material based fiber-optic dosimeter (nanoFOD) device, with dimensions less than 1 mm wide, to measure real-time, pin-point, in-vivo radiation dose given during radiation therapy treatments. The size of the device allows placement through a catheter or channel near areas of interest, or within already placed brachytherapy delivery catheters.
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| Label | Type | Description | Intervention Names |
|---|---|---|---|
| Real time dosimetric monitoring of brachytherapy. | Experimental |
|
| Name | Type | Description | Arm Group Labels | Other Names |
|---|---|---|---|---|
| Novel nano-scintillator fiber-optic dosimeter (nanoFOD) | Device | This is an observational study whose purpose is to determine the feasibility of using a novel nano-scintillator fiber-optic dosimeter (nanoFOD) for the real time dosimetric monitoring of brachytherapy treatment. |
| Measure | Description | Time Frame |
|---|---|---|
| Measure dosimetric accuracy of the device with reference to a commercially available dosimeter. | This will only be possible in a subset of women whose implant geometry will result in a radially symmetric dose cloud (i.e. vaginal cylinder cases) so that both the nanoFOD and the reference dosimeter may be placed in a position expected to have the same, or closely similar dose. | 24 months |
| Measure | Description | Time Frame |
|---|---|---|
| Confirm feasibility of clinical application of the nanoFOD for dosimetric monitoring of brachytherapy with complex geometry implants. | Feasibility in this context will mean ease of clinical use (subjective), lack of device failures, and accordance of the nanoFOD dosimetric reading with the planned dose as calculated by the planning software. | 24 months |
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Inclusion Criteria:
Exclusion Criteria:
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| Name | Affiliation | Role |
|---|---|---|
| Junzo Chino, MD | Duke Health | Principal Investigator |
| Facility | Status | City | State | ZIP | Country | Contacts |
|---|---|---|---|---|---|---|
| Duke Cancer Center | Durham | North Carolina | 27710 | United States |
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| ID | Term |
|---|---|
| D002583 | Uterine Cervical Neoplasms |
| D016889 | Endometrial Neoplasms |
| ID | Term |
|---|---|
| D014594 | Uterine Neoplasms |
| D005833 | Genital Neoplasms, Female |
| D014565 | Urogenital Neoplasms |
| D009371 | Neoplasms by Site |
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|
| D009369 |
| Neoplasms |
| D002577 | Uterine Cervical Diseases |
| D014591 | Uterine Diseases |
| D005831 | Genital Diseases, Female |
| D052776 | Female Urogenital Diseases |
| D005261 | Female Urogenital Diseases and Pregnancy Complications |
| D000091642 | Urogenital Diseases |
| D000091662 | Genital Diseases |