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connectathon:brto-ii [2019/10/08 11:07]
wbosch
connectathon:brto-ii [2021/01/31 19:22]
bcurran
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 ===== IHE Radiation Oncology - BRTO-II Profile Testing ===== ===== IHE Radiation Oncology - BRTO-II Profile Testing =====
-**Revision 1.11 of the BRTO-II Profile (Trial Implementation,​ updated 4/5/19) will be tested at the IHE-RO ​2019 Connectathon.**+**Revision 1.11 of the BRTO-II Profile (Trial Implementation,​ updated 4/5/19) will be tested at the IHE-RO ​2021 Connectathons.**
  
 The BRTO-II Profile supports basic workflow for 3D conformal treatment planning. The BRTO-II Profile supports basic workflow for 3D conformal treatment planning.
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 ^ #   ^ Patient ID       ^ Desciption ​                            ^ Scan  ^ ^ #   ^ Patient ID       ^ Desciption ​                            ^ Scan  ^
-^ 10  | **BRTO19A10**xx  | Multi-series CT test (Contourer only)  | HFS   | +^ 10  | **BRTO21A10**xx  | Multi-series CT test (Contourer only)  | HFS   | 
-^ 11  | **BRTO19A11**xx  | Head/neck patient ​                     | HFS   | +^ 11  | **BRTO21A11**xx  | Head/neck patient ​                     | HFS   | 
-^ 12  | **BRTO19A12**xx  | Prostate patient ​                      | HFS   | +^ 12  | **BRTO21A12**xx  | Prostate patient ​                      | HFS   | 
-^ 20  | **BRTO19A20**xx  | Anal-canal patient (treat FFP)         | HFP   | +^ 20  | **BRTO21A20**xx  | Anal-canal patient (treat FFP)         | HFP   | 
-^ 21  | **BRTO19A21**xx  | Phantom (treat FFS)                    | FFS   | +^ 21  | **BRTO21A21**xx  | Phantom (treat FFS)                    | FFS   | 
-^ 22  | **BRTO19A22**xx  | Phantom (decubitus-left) ​              | HFDL  |+^ 22  | **BRTO21A22**xx  | Phantom (decubitus-left) ​              | HFDL  |
 \\ \\
 ==== BRTO-II Options ==== ==== BRTO-II Options ====
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   - **HFS CT Series Contouring Test** - Create and store contours on each of these datasets. ​ Use each of these datasets for comparison with at least one consumer Actor: ​   - **HFS CT Series Contouring Test** - Create and store contours on each of these datasets. ​ Use each of these datasets for comparison with at least one consumer Actor: ​
-    * **BRTO19A11**xx:  Import [[connectathon:​brto_headandneck|BRTO - Head & Neck]] patient CT series. ​ Create contours. Export RT Structure Set. +    * **BRTO21A11**xx:  Import [[connectathon:​brto_headandneck|BRTO - Head & Neck]] patient CT series. ​ Create contours. Export RT Structure Set. 
-    * **BRTO19A12**xx:  Import [[connectathon:​instructions:​brto_prostate|BRTO - Prostate]] patient CT series. ​ Create contours. Export RT Structure Set. +    * **BRTO21A12**xx:  Import [[connectathon:​instructions:​brto_prostate|BRTO - Prostate]] patient CT series. ​ Create contours. Export RT Structure Set. 
   - **Non-HFS CT Series Contouring Test** - Create and store contours on each of the non-HFS datasets below. ​ Use each of these datasets for comparison with each consumer Actor:   - **Non-HFS CT Series Contouring Test** - Create and store contours on each of the non-HFS datasets below. ​ Use each of these datasets for comparison with each consumer Actor:
-    * **BRTO19A20**xx:  Import HFP Anal canal patient CT series. ​ Create contours. Export RT Structure Set.  +    * **BRTO21A20**xx:  Import HFP Anal canal patient CT series. ​ Create contours. Export RT Structure Set.  
-    * **BRTO19A21**xx:  Import FFS Rando Phantom CT series. ​ Create contours. Export RT Structure Set.+    * **BRTO21A21**xx:  Import FFS Rando Phantom CT series. ​ Create contours. Export RT Structure Set.
   - **CT Resampling Test (OPTIONAL)**   - **CT Resampling Test (OPTIONAL)**
-    * **BRTO19A10**xx:  Multi-series dataset.+    * **BRTO21A10**xx:  Multi-series dataset.
   - **Decubitus Scan Support (OPTIONAL)**   - **Decubitus Scan Support (OPTIONAL)**
-    * **BRTO19A22**xx:  Import Decubitus patient CT series. ​ Create contours (see instructions for Dosimetric Planner below). Export RT Structure Set.+    * **BRTO21A22**xx:  Import Decubitus patient CT series. ​ Create contours (see instructions for Dosimetric Planner below). Export RT Structure Set.
  
  
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   - HFS Dosimetric Plan Test - Create and export a dosimetric plan and dose instance for each of these datasets:   - HFS Dosimetric Plan Test - Create and export a dosimetric plan and dose instance for each of these datasets:
-    * **BRTO19A11**xx:  [[connectathon:​brto_headandneck|BRTO - Head & Neck]] patient. +    * **BRTO21A11**xx:  [[connectathon:​brto_headandneck|BRTO - Head & Neck]] patient. 
-    * **BRTO19A12**xx:  [[connectathon:​instructions:​brto_prostate|BRTO - Prostate]] patient CT series.  ​+    * **BRTO21A12**xx:  [[connectathon:​instructions:​brto_prostate|BRTO - Prostate]] patient CT series.  ​
   - Non-HFS Dosimetric Plan Test  - Create a dosimetric plan for each of these datasets:   - Non-HFS Dosimetric Plan Test  - Create a dosimetric plan for each of these datasets:
-    * **BRTO19A20**xx:  Import HFP Anal-canal patient CT series and RT Structure Set.  Create a dosimetric plan for this dataset in which the patient is treated FFP.  Export the Dosimetric Plan (RT Plan) instance.*  +    * **BRTO21A20**xx:  Import HFP Anal-canal patient CT series and RT Structure Set.  Create a dosimetric plan for this dataset in which the patient is treated FFP.  Export the Dosimetric Plan (RT Plan) instance.*  
-    * **BRTO19A21**xx:  Import FFS Rando Phantom CT series and RT Structure Set.  Create and export a geometric plan for this dataset.+    * **BRTO21A21**xx:  Import FFS Rando Phantom CT series and RT Structure Set.  Create and export a geometric plan for this dataset.
  
 Consumption of plans produced by Dosimetric Planner Actor is tested using a BRTO-II Dose Displayer Actor. Consumption of plans produced by Dosimetric Planner Actor is tested using a BRTO-II Dose Displayer Actor.
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-== BRTO19A11xx ​==+== BRTO21A11xx ​==
 Place the isocenter on the slice at Z=16mm, shown below. ​ Position the isocenter to enclose the target as well as possible with the fields specified in the table below. Place the isocenter on the slice at Z=16mm, shown below. ​ Position the isocenter to enclose the target as well as possible with the fields specified in the table below.
  
-^ Gantry ​angle      | AP       ​| Right Lat                   | +^ Gantry ​Angle      | AP     ​| Right Lat                   | 
-^ Collimator angle  | 0        | 45                          | +^ Collimator angle  | 0      | 45                          | 
-^ Table angle       | 0        | 30                          | +^ Table angle       | 0      | 30                          | 
-^ Field size        | 10 10  | X1=-2, X2=15, Y1=-5, Y2=18  |+^ Field size        |  | X1=-2, X2=3, Y1=-2.5, Y2= |
  
 Export the dosimetric plan and dose to the archive. Export the dosimetric plan and dose to the archive.
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-== BRTO19A12xx ​== +== BRTO21A12xx ​== 
 Use the isocenter defined by the point in one of the gold seeds. Use the isocenter defined by the point in one of the gold seeds.
 Use the field definitions shown below. Use the field definitions shown below.
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-== BRTO19A20xx ​==+== BRTO21A20xx ​==
 Place the isocenter on the slice at Z=174mm, shown below. ​ Position the isocenter to coincide with the ROI labeled "CBCT ISO"​. ​ Use the fields specified in the table below. Place the isocenter on the slice at Z=174mm, shown below. ​ Position the isocenter to coincide with the ROI labeled "CBCT ISO"​. ​ Use the fields specified in the table below.
  
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-== BRTO19A21xx ​==+== BRTO21A21xx ​==
 Place the isocenter on the slice at Z=-208mm, shown below. ​ Position the isocenter at the marker as shown below, with the fields specified in the table below. Place the isocenter on the slice at Z=-208mm, shown below. ​ Position the isocenter at the marker as shown below, with the fields specified in the table below.
  
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-== BRTO19A22xx ​(Optional) ==+== BRTO21A22xx ​(Optional) ==
 Place the isocenter at (116, 0, 166) on the slice at Z=166mm. ​ Draw a GTV approximately 4cm in diameter at this location and contour the right and left femurs. ​ Align the isocenter using the BBs as shown below, with the fields specified in the table below. Place the isocenter at (116, 0, 166) on the slice at Z=166mm. ​ Draw a GTV approximately 4cm in diameter at this location and contour the right and left femurs. ​ Align the isocenter using the BBs as shown below, with the fields specified in the table below.
  
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