FireVoxel Build 189 is released:
1. AutoFocus4D dialog box: corrected a crash defect due to unsupported even handler after removing the SliceMode combo box.
2.Breast lesion registration: updated default registration parameter to accomodate a requirement that a precise (not overinclusive) lesion ROIs would be provided.
3. AutoFocus3D\AutoFocus4D providded separate allowance intervals for each of the axis {x,y,z}.
4. PET-FDG Motion correction: increase speed by x10+ times. This is base on the observation that gross motion is usually due to the "Turning of the head" rather than "Tilting" during exam.
5. "Small" vs. "Large" motion correction options were eliminated and folded into one single Motion Correction
6. PET motion correction: modified default parameters to increase the search range for better registration quality without any speed penalty (compensated by choosing smaller radius in the URAL feature detector).
7. 3D->3D,4D->3D} slice-by-slice registration: implemented option for the current timepoint of source to be used to calculate a single transformation for all timepoints. Integrated this new functionality into the Breast lesion registration workflow.
8. "Layer Control Dialog> Load DICOM layer" : fixed the defect crash defect when "Load DICOM" button is pressed.
9. AutoBuild Test added subtests for: DialogAutoFocus3D, DialogAutoFocus4D, EPI->T1 registration in Breast lesion workflow, for the automatic segmenation of Blood Vessel map, CERENE3D kidney perfusion coregistration.
10. Breast lesion workflow: added functionality and user interface to register PET-3D volumes to T1-3D volumes.
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Wednesday, July 15, 2015
Tuesday, July 14, 2015
Monday, July 13, 2015
Sunday, July 12, 2015
PET-FDG Motion correction: increase speed by x10+ times. This is base on the observation that gross motion is usually due to the "Turning of the head" rather than "Tilting" during exam. New FireVoxel functionality was used that allowed to set separate Max Rotation angle intervals for each axis.
"Small" vs. "Large" motion correction options were eliminated and folded into one single Motion Correction.
"Small" vs. "Large" motion correction options were eliminated and folded into one single Motion Correction.Saturday, July 11, 2015
4D Kidney registration, case nucs05. This is a large rotation (12+ deg) case. Default registration parameters (max rotation) were increased to capture large rotation. New feature of separate Max Rotation angles for each axis has allowed not to increase processing time.
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| Registration on the timepoint of the extreme rotation. Here is the processing result in (.FVX) https://drive.google.com/file/d/0B2lI9iEKOqv6UVFGclppVUEzWEE/view?usp=sharing |
Friday, July 10, 2015
Thursday, July 9, 2015
Wednesday, July 8, 2015
FireVoxel build 188 is released.
1. Developed command line interface and *.exe module to
access all the functionality of the Dynamic Modelling module.
2. DicomOpen dialog box: corrected crash when STUDY item is
selected and attempted to load.
3.DICOM Open dialog box: combined 2 buttons for
loading 4D volumes into a single "Load 4D" button. This
replaces "Load Siblings" and "Load Range 4D" buttons.
4. 3D\4D registration and corresponding dialogs - allow
individual axis of Autofocus to have separate MaxScale values. This would
allow to address registratios with the individual axis distortion (f.e. dr.
Sigmund`s PET-MR registration problem)
5. AutoFocus4D registration: Reduced SliceMode option
to checkbox Mode2D. Moved this option to the MEASURE panel.
6.AutoFocus4D dialog box: encapsulated the dialog
header into the code file and exposed the global function for calling the
dialog.
7.Implemented standalone User-level function "Register
AutoFocus3D slice-by-slice"
8. Register by DICOM tags only: implemented an option
when user is asked to present result as the new layer or create an entirely new
document.
9. Completely removed the 2D mode option from the Register
3D autofocus dialog box, since this function is a standalone at User-level.
10. Register 4D Autofocus, "2D Mode" option is now an attribute of the VA_AF4D structure.
10. Register 4D Autofocus, "2D Mode" option is now an attribute of the VA_AF4D structure.
11. Removed the redundant "Correct orientation"
checkbox from the Register Autofocus 3D dialog box.
12. Workflow breast lesion registration: implemented
a 1-click function to register EPI-4D volume to the T1-3D volume.
Provided both {with ROI clip,no Roi clip} variants.
Tuesday, July 7, 2015
Monday, July 6, 2015
Wednesday, July 1, 2015
Tuesday, June 16, 2015
Monday, June 15, 2015
Friday, June 12, 2015
Thursday, June 11, 2015
Wednesday, June 10, 2015
Upgraded APIs (application programming interface) to the Dynamic Experiment library so that Callback functions for Signal->Concentration and Concentration->Signal are supplied for each model calculation. This would allow each individual model perform fitting of the data in signal units instead of the concentration units.
Sunday, June 7, 2015
Thursday, June 4, 2015
Wednesday, June 3, 2015
Finished initial implementation of consistent Concentration Conversion models through the entire FireVoxel. Concentration conversion is now controlled by 2 dialogs: "Concentration Method" dialog and the "ROI attributes" dialog.
The following dialogs had their User Interface updated:
1) ViewTac dialog
2) RoiStats4D dialog
3) Dynamic Modelling dialog box
4) Layer Control dialog box
The following dialogs had their User Interface updated:
1) ViewTac dialog
2) RoiStats4D dialog
3) Dynamic Modelling dialog box
4) Layer Control dialog box
Saturday, May 30, 2015
Friday, May 29, 2015
New simple redesign of Dynamic Processing dialog:
Note changes
a) Concentration checkbox is removed from the "Input Function panel"
b) Concentration methods would be extended by a trivial "Use the Curve values" method.
c) Tissue concentration button is added.
d) When the model is selected that does not allow concentration conversion (f.e. PET models), the
concentration button(s) will be greyed.
Note changes
a) Concentration checkbox is removed from the "Input Function panel"
b) Concentration methods would be extended by a trivial "Use the Curve values" method.
c) Tissue concentration button is added.
d) When the model is selected that does not allow concentration conversion (f.e. PET models), the
concentration button(s) will be greyed.
Wednesday, May 27, 2015
Tuesday, May 26, 2015
Sunday, May 24, 2015
Thursday, May 21, 2015
CERENE GFR processing: When any of the model calculations are activated, the Concentration Conversion dialog box pops up. By default concentration Method is FWTE. The TR and Flip angle are entered from DICOM header. User needs to enter tissue T1 (sec). AIF (blood) T1 is fixed at the moment and = 1.664 sec.
Monday, May 18, 2015
FireVoxel Build 184 is released.
1. Dialog RoiStats4D: expanded and corrected
functionality so that Raster and Vector ROI could be mixed together. Crash
defect on PET-4D is corrected.
4.Upon FireVoxel start,
program checks if the "Temporary File folder" specified in User
Options configuration file is present. If it is not present, Temporary
file folder is created at default location: ApplicationDirectory:\Temp.
If the above fails, user is advised to reinstall FireVoxel to a different folder or "Run as Administrator" and program terminates.
If the above fails, user is advised to reinstall FireVoxel to a different folder or "Run as Administrator" and program terminates.
6. Dynamic Modelling
functionlity: moved all the interfacing functions from the main GUI application
down to the DLL. This is in preparation to FirevoxelDynamicModellingCurve.exe
command line module.
8. Dialog RoiStats4D: changed the text of the “automatic
retile” checkbox.
Upon FireVoxel start, program checks if the "Temporary File folder" specified in User Options configuration file is present. If it is not present, Temporary file folder is created at default location:
ApplicationDirectory:\Temp.
If the above fails, user is advised to reinstall FireVoxel to a different folder or "Run as Administrator" and program terminates.
ApplicationDirectory:\Temp.
If the above fails, user is advised to reinstall FireVoxel to a different folder or "Run as Administrator" and program terminates.
Wednesday, May 13, 2015
Tuesday, May 12, 2015
Sunday, May 10, 2015
BiCal Non-uniformity correction: resolved an issue when simply applying Bias Field correction to the Air voxels would amplify the noise. New algorithm intelligently corrects transition from Air to tissue so the effective field remains smooth. The non-unifomity correction improvement in the tissue is identical for both variants.
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| Simple Field application makes the noise amplified. |
![]() |
| Intelligent processing of Tissue-to-Air transition |
Saturday, May 9, 2015
Friday, May 8, 2015
Thursday, May 7, 2015
Wednesday, May 6, 2015
Monday, May 4, 2015
Saturday, May 2, 2015
Various concentration models were compared for the GRASP and NUFFT carotid artery curves.
Both curves were provided as *.txt file in FireVoxel TAC format. Upon opening FireVoxel (no document present) user choose "MainMenu>Applications>Convert TAC to Concentration"
After choosing the file name, the ViewTac dialog appears with the original GRASP curve
General Concentration conversion dialog box will appear. User selects the FTWE concentration model.
The core model is: S = M0*sin(alpha)* ((1-exp(-TR/T1(c )) / (1-cos(alpha)*exp(-TR/T1(c ))
Optionally (with T2* checkbox) the T2* effect could be accounted for, with the following formula
S = M0*sin(alpha)* ((1-exp(-TR/T1(c )) / (1-cos(alpha)*exp(-TR/T1( c)))*exp(-TE/T2*(c))
We start with loading the Carotid AIF file obtained from GRASP:
After applying the basic FTWE model we obtain this curve
Next we enable the FTWE with the T2* effect
In the next part of the experiment we load with the NUFFT curve. This AIF was obtained automatically with FireVoxel-IDIF function and the ROI size was about 2000 voxels.
After applying the basic FTWE model we obtain this concentration curve
Next we enable the FTWE with the T2* effect:
Both curves were provided as *.txt file in FireVoxel TAC format. Upon opening FireVoxel (no document present) user choose "MainMenu>Applications>Convert TAC to Concentration"
After choosing the file name, the ViewTac dialog appears with the original GRASP curve
The core model is: S = M0*sin(alpha)* ((1-exp(-TR/T1(c )) / (1-cos(alpha)*exp(-TR/T1(c ))
Optionally (with T2* checkbox) the T2* effect could be accounted for, with the following formula
S = M0*sin(alpha)* ((1-exp(-TR/T1(c )) / (1-cos(alpha)*exp(-TR/T1( c)))*exp(-TE/T2*(c))
We start with loading the Carotid AIF file obtained from GRASP:
![]() |
| original Curve from GRASP |
After applying the basic FTWE model we obtain this curve
![]() |
| GRASP FTWE (Max Concentration 0.2944) |
Next we enable the FTWE with the T2* effect
![]() |
| GRASP FTWE with T2* effect (Max concentration 17.94) |
In the next part of the experiment we load with the NUFFT curve. This AIF was obtained automatically with FireVoxel-IDIF function and the ROI size was about 2000 voxels.
![]() |
| NUFFT original curve |
After applying the basic FTWE model we obtain this concentration curve
![]() |
| FTWE model, max Concentration = 1.71 |
![]() |
| FTWE model with T2* effect, max concentration = 19.9 CONCLUSION: NUFFT with FTWE model seem to provide best result with more realistic concentration values. But further evaluations are required. |
Friday, May 1, 2015
Thursday, April 30, 2015
Wednesday, April 29, 2015
Monday, April 27, 2015
Thursday, April 23, 2015
Breast EPI-to-VIBE registration on slice-by-slice using 5 landmark method.
User sets 5 landmarks on each slice, using existing easy tool (3 sec\breast\slice).
Existing function performs Affine of Polynomial (any power) landmark match and transform.
All tools are existing, just need to interface the "landmark curve" with "landmark registration"
User sets 5 landmarks on each slice, using existing easy tool (3 sec\breast\slice).
Existing function performs Affine of Polynomial (any power) landmark match and transform.
All tools are existing, just need to interface the "landmark curve" with "landmark registration"
Wednesday, April 22, 2015
Tuesday, April 21, 2015
Monday, April 20, 2015
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