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author | Willem Jan Palenstijn <Willem.Jan.Palenstijn@cwi.nl> | 2017-10-10 13:15:53 +0200 |
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committer | Willem Jan Palenstijn <Willem.Jan.Palenstijn@cwi.nl> | 2017-10-11 12:19:34 +0200 |
commit | 90ef1f69d79a0c40414c5932dfa9bd69f363ae80 (patch) | |
tree | 5579258ec62e5cad1ba9a5203357b0bfc1c9a07a /include/astra/FanFlatBeamLineKernelProjector2D.inl | |
parent | bf92d2d8dfacd7125ed48403145dbd4dc6181e4a (diff) | |
download | astra-90ef1f69d79a0c40414c5932dfa9bd69f363ae80.tar.gz astra-90ef1f69d79a0c40414c5932dfa9bd69f363ae80.tar.bz2 astra-90ef1f69d79a0c40414c5932dfa9bd69f363ae80.tar.xz astra-90ef1f69d79a0c40414c5932dfa9bd69f363ae80.zip |
Scale 2D projection results by detector pixel width
The strip and cuda projectors already did this scaling, so this
makes the other behave consistently.
Diffstat (limited to 'include/astra/FanFlatBeamLineKernelProjector2D.inl')
-rw-r--r-- | include/astra/FanFlatBeamLineKernelProjector2D.inl | 6 |
1 files changed, 4 insertions, 2 deletions
diff --git a/include/astra/FanFlatBeamLineKernelProjector2D.inl b/include/astra/FanFlatBeamLineKernelProjector2D.inl index 01f031c..c1e1e94 100644 --- a/include/astra/FanFlatBeamLineKernelProjector2D.inl +++ b/include/astra/FanFlatBeamLineKernelProjector2D.inl @@ -82,6 +82,8 @@ void CFanFlatBeamLineKernelProjector2D::projectBlock_internal(int _iProjFrom, in const SFanProjection * proj = &pVecProjectionGeometry->getProjectionVectors()[iAngle]; + float32 detSize = sqrt(proj->fDetUX * proj->fDetUX + proj->fDetUY * proj->fDetUY); + // loop detectors for (iDetector = _iDetFrom; iDetector < _iDetTo; ++iDetector) { @@ -99,14 +101,14 @@ void CFanFlatBeamLineKernelProjector2D::projectBlock_internal(int _iProjFrom, in bool vertical = fabs(Rx) < fabs(Ry); if (vertical) { RxOverRy = Rx/Ry; - lengthPerRow = pixelLengthX * sqrt(Rx*Rx + Ry*Ry) / abs(Ry); + lengthPerRow = detSize * pixelLengthX * sqrt(Rx*Rx + Ry*Ry) / abs(Ry); deltac = -pixelLengthY * RxOverRy * inv_pixelLengthX; S = 0.5f - 0.5f*fabs(RxOverRy); T = 0.5f + 0.5f*fabs(RxOverRy); invTminSTimesLengthPerRow = lengthPerRow / (T - S); } else { RyOverRx = Ry/Rx; - lengthPerCol = pixelLengthY * sqrt(Rx*Rx + Ry*Ry) / abs(Rx); + lengthPerCol = detSize * pixelLengthY * sqrt(Rx*Rx + Ry*Ry) / abs(Rx); deltar = -pixelLengthX * RyOverRx * inv_pixelLengthY; S = 0.5f - 0.5f*fabs(RyOverRx); T = 0.5f + 0.5f*fabs(RyOverRx); |